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Note: This page contains sample records for the topic "nuclear weapons program" from the National Library of EnergyBeta (NLEBeta).
While these samples are representative of the content of NLEBeta,
they are not comprehensive nor are they the most current set.
We encourage you to perform a real-time search of NLEBeta
to obtain the most current and comprehensive results.


1

Nuclear Explosive and Weapon Surety Program  

Broader source: Directives, Delegations, and Requirements [Office of Management (MA)]

The Order defines the Nuclear Explosive and Weapon Surety (NEWS) Program, which was established to prevent unintended/unauthorized detonation and deliberate unauthorized use of nuclear explosives.

2014-08-05T23:59:59.000Z

2

Nuclear Explosive and Weapon Surety Program - DOE Directives...  

Broader source: All U.S. Department of Energy (DOE) Office Webpages (Extended Search)

D, Nuclear Explosive and Weapon Surety Program by cdornburg Functional areas: Defense Nuclear Facility Safety and Health Requirement, Defense Programs, Nuclear Weapons Programs,...

3

Iraq's secret nuclear weapons program  

SciTech Connect (OSTI)

UN inspectors discovered an electromagnetic isotope separation factory that put Iraq just 18-30 months away from having enough material for a bomb. They also found European centrifuge technology and plans for an implosion device. The inspections of Iraq mandated by the United Nations as a cease-fire condition at the end of the Gulf War in February 1991 have revealed a clandestine nuclear materials production and weapons design program of unexpected size and sophistication. The total value of that program, in terms of equipment and personnel deployed between 1981 and 1991, may be on the order of $5-10 billion. The program employed an estimated 7000 scientist and 20,000 workers. 6 refs., 4 figs.

Davis, J.C. (Lawrence Livermore National Lab., CA (United States)); Kay, D.A. (Uranium Institute, London (United Kingdom))

1992-07-01T23:59:59.000Z

4

Nuclear Explosive and Weapon Surety Program  

Broader source: Directives, Delegations, and Requirements [Office of Management (MA)]

All nuclear explosives and nuclear explosive operations require special safety, security, and use control consideration because of the potentially unacceptable consequences of an accident or unauthorized act; therefore, a Nuclear Explosive and Weapon Surety (NEWS) Program is established to prevent unintended/unauthorized detonation and deliberate unauthorized use of nuclear explosives.

2015-01-26T23:59:59.000Z

5

Laboratory's role in Cold War nuclear weapons testing program...  

Broader source: All U.S. Department of Energy (DOE) Office Webpages (Extended Search)

70th anniversary lecture Laboratory's role in Cold War nuclear weapons testing program focus of next 70th anniversary lecture Lab's role in the development of nuclear weapons...

6

Nuclear Explosive and Weapons Surety Program - DOE Directives...  

Broader source: All U.S. Department of Energy (DOE) Office Webpages (Extended Search)

been linked to this document. Show All Cancels: DOE O 5610.10, Nuclear Explosive and Weapon Surety Program on Apr 29, 1996 Canceled by: DOE O 452.1A, Nuclear Explosive and Weapon...

7

Nuclear proliferation: The diplomatic role of non-weaponized programs  

SciTech Connect (OSTI)

The end of the Cold War has not seen the end of reliance on nuclear weapons for deterrence or diplomacy purposes. The use of nuclear weapons for such purposes is as evident in the threshold states as in the nuclear powers. The nuclear weapon states used their nuclear weapons for deterrence, bargaining, and blackmail, even during the early years of the Cold War when the US was essentially non-Weaponized. In the nuclear non-Weaponized states in Asia a non-Weaponized deterrent relationship is developing between India and Pakistan and North Korea has used its nuclear program to restore diplomatic relations with the international community. The role of nuclear weapons in the post Cold War world is determined by the role of non-Weaponized programs in proliferating states. This paper describes examples in South Asia and the Korean peninsula and show that while an increased reliance on nuclear weapons programs may be a threat to the current non-proliferation regime, the focus on non-Weaponized programs rather than on weapons themselves actually improves international security by reducing the threat of nuclear war.

Reynolds, R.R.

1996-01-01T23:59:59.000Z

8

Enforcement Guidance Supplement 01-01: Nuclear Weapon Program Enforcement  

Broader source: Energy.gov (indexed) [DOE]

Guidance Supplement 01-01: Nuclear Weapon Program Guidance Supplement 01-01: Nuclear Weapon Program Enforcement Issues Enforcement Guidance Supplement 01-01: Nuclear Weapon Program Enforcement Issues Section 1.3 of the Operational Procedures for Enforcement, published in June 1998, provides the opportunity for the Office of Price-Anderson Enforcement (OE) to periodically issue clarifying guidance regarding the processes used in its enforcement activities.This enforcement guidance focuses on the applicability of 10 CFR Part 830 to nuclear weapon programs and several related enforcement issues. Enforcement Guidance Supplement 01-01: Nuclear Weapon Program Enforcement Issues More Documents & Publications Enforcement Guidance Supplement 01-01: Nuclear Weapon Program Enforcement Issues Enforcement Guidance Supplement 00-03: Specific Issues on Applicability of

9

Enforcement Guidance Supplement 01-01: Nuclear Weapon Program Enforcement  

Broader source: Energy.gov (indexed) [DOE]

Enforcement Guidance Supplement 01-01: Nuclear Weapon Program Enforcement Guidance Supplement 01-01: Nuclear Weapon Program Enforcement Issues Enforcement Guidance Supplement 01-01: Nuclear Weapon Program Enforcement Issues Section 1.3 of the Operational Procedures for Enforcement, published in June 1998, provides the opportunity for the Office of Price-Anderson Enforcement (OE) to periodically issue clarifying guidance regarding the processes used in its enforcement activities. This enforcement guidance focuses on the applicability of 10 CFR Part 830 to nuclear weapon programs and several related enforcement issues. Enforcement Guidance Supplement 01-01: Nuclear Weapon Program Enforcement Issues More Documents & Publications Enforcement Guidance Supplement 01-01: Nuclear Weapon Program Enforcement Issues Enforcement Guidance Supplement 00-03: Specific Issues on Applicability of

10

Enforcement Guidance Supplement 01-01: Nuclear Weapon Program Enforcement  

Broader source: Energy.gov (indexed) [DOE]

Guidance Supplement 01-01: Nuclear Weapon Program Guidance Supplement 01-01: Nuclear Weapon Program Enforcement Issues Enforcement Guidance Supplement 01-01: Nuclear Weapon Program Enforcement Issues Section 1.3 of the Operational Procedures for Enforcement, published in June 1998, provides the opportunity for the Office of Price-Anderson Enforcement (OE) to periodically issue clarifying guidance regarding the processes used in its enforcement activities. This enforcement guidance focuses on the applicability of 10 CFR Part 830 to nuclear weapon programs and several related enforcement issues. Enforcement Guidance Supplement 01-01: Nuclear Weapon Program Enforcement Issues More Documents & Publications Enforcement Guidance Supplement 01-01: Nuclear Weapon Program Enforcement Issues Enforcement Guidance Supplement 00-03: Specific Issues on Applicability of

11

Enforcement Guidance Supplement 01-01: Nuclear Weapon Program...  

Broader source: Energy.gov (indexed) [DOE]

This enforcement guidance focuses on the applicability of 10 CFR Part 830 to nuclear weapon programs and several related enforcement issues. Enforcement Guidance Supplement 01-01:...

12

States That End Nuclear Weapons Programs: Implications For Iran.  

E-Print Network [OSTI]

??This thesis seeks to identify factors that cause countries to discontinue their nuclear weapons program using the qualitative case study method. Regime change, regional threats… (more)

Freeman, Shauna Marie

2007-01-01T23:59:59.000Z

13

EGS 01-01: Nuclear Weapon Program Enforcement Issues  

Office of Environmental Management (EM)

OF ENFORCEMENT AND INVESTIGATION SUBJECT: Enforcement Guidance Supplement 01-01: Nuclear Weapon Program Enforcement Issues Section 1.3 of the Operational Procedures for...

14

Enforcement Guidance Supplement 01-01, Nuclear Weapon Program...  

Office of Environmental Management (EM)

OF ENFORCEMENT AND INVESTIGATION SUBJECT: Enforcement Guidance Supplement 01-01: Nuclear Weapon Program Enforcement Issues Section 1.3 of the Operational Procedures for...

15

UN Security Council: Iran violating ban on nuclear weapons programs  

E-Print Network [OSTI]

UN Security Council: Iran violating ban on nuclear weapons programs 7 September 2011 Denouncement weaponization of its nuclear program. The United States, Germany, France and Britain joined forces in exposing of its nuclear activities.' Rice said the installation of a uranium enrichment facility and heavy

16

Sandia Weapon Intern Program visits KCP | National Nuclear Security  

National Nuclear Security Administration (NNSA)

Weapon Intern Program visits KCP | National Nuclear Security Weapon Intern Program visits KCP | National Nuclear Security Administration Our Mission Managing the Stockpile Preventing Proliferation Powering the Nuclear Navy Emergency Response Recapitalizing Our Infrastructure Continuing Management Reform Countering Nuclear Terrorism About Us Our Programs Our History Who We Are Our Leadership Our Locations Budget Our Operations Media Room Congressional Testimony Fact Sheets Newsletters Press Releases Speeches Events Social Media Video Gallery Photo Gallery NNSA Archive Federal Employment Apply for Our Jobs Our Jobs Working at NNSA Blog Home > NNSA Blog > Sandia Weapon Intern Program visits KCP Sandia Weapon Intern Program visits KCP Posted By Office of Public Affairs Participants in Sandia's Weapon Intern Program recently visited and

17

Nuclear Weapons Journal  

Broader source: All U.S. Department of Energy (DOE) Office Webpages (Extended Search)

Nuclear Weapons Journal Nuclear Weapons Journal x The Nuclear Weapons Journal ceased publication after Issue 2, 2009. Below are Nuclear Weapons Journal archived issues. Issue 2,...

18

National Day of Remembrance HSS Honors Former Nuclear Weapons Program  

Broader source: Energy.gov (indexed) [DOE]

National Day of Remembrance HSS Honors Former Nuclear Weapons National Day of Remembrance HSS Honors Former Nuclear Weapons Program Workers National Day of Remembrance HSS Honors Former Nuclear Weapons Program Workers October 28, 2013 - 3:11pm Addthis Color Guard | National Day of Remembrance - October 25, 2013 Color Guard | National Day of Remembrance - October 25, 2013 US Representative Dina Titus (1st Congressional District of Nevada) | National Day of Remembrance - October 25, 2013 US Representative Dina Titus (1st Congressional District of Nevada) | National Day of Remembrance - October 25, 2013 Mr. Al Tseu | National Day of Remembrance - October 25, 2013 Mr. Al Tseu | National Day of Remembrance - October 25, 2013 Mr. Glenn Podonsky, Chief Health Safety and Security Officer | National Day of Remembrance - October 25, 2013

19

Order Module--DOE O 452.1D, NUCLEAR EXPLOSIVE AND WEAPON SURETY PROGRAM,  

Broader source: Energy.gov (indexed) [DOE]

Order Module--DOE O 452.1D, NUCLEAR EXPLOSIVE AND WEAPON SURETY Order Module--DOE O 452.1D, NUCLEAR EXPLOSIVE AND WEAPON SURETY PROGRAM, DOE O 452.2D, NUCLEAR EXPLOSIVE SAFETY Order Module--DOE O 452.1D, NUCLEAR EXPLOSIVE AND WEAPON SURETY PROGRAM, DOE O 452.2D, NUCLEAR EXPLOSIVE SAFETY "To prevent accidents and inadvertent or unauthorized use of U.S. nuclear weapons and nuclear explosives. In conjunction with the Department of Defense (DoD), to protect the public health and safety by providing dual-agency judgment and responsibility for the safety, security, and use control (surety) of nuclear weapons. To establish nuclear explosive surety standards and nuclear weapon design surety requirements. To address surety vulnerabilities during all phases of the nuclear weapon life cycle and to upgrade surety during weapon stockpile refurbishments and/or new weapon

20

Nuclear Explosive and Weapon Surety Program  

Broader source: Directives, Delegations, and Requirements [Office of Management (MA)]

This Order provides requirements and responsibilities to prevent unintended/unauthorized detonation and deliberate unauthorized use of nuclear explosives. Cancels DOE O 452.1. Canceled by DOE O 452.1B.

1997-01-17T23:59:59.000Z

Note: This page contains sample records for the topic "nuclear weapons program" from the National Library of EnergyBeta (NLEBeta).
While these samples are representative of the content of NLEBeta,
they are not comprehensive nor are they the most current set.
We encourage you to perform a real-time search of NLEBeta
to obtain the most current and comprehensive results.


21

Nuclear Explosive and Weapon Surety Program  

Broader source: Directives, Delegations, and Requirements [Office of Management (MA)]

This Order provides requirements and responsibilities to prevent unintended/unauthorized detonation and deliberate unauthorized use of nuclear explosives. Cancels DOE O 452.1A. Canceled by DOE O 452.1C.

2001-08-06T23:59:59.000Z

22

EGS 01-01: Nuclear Weapon Program Enforcement Issues  

Broader source: Energy.gov (indexed) [DOE]

Enforcement Guidance Supplement Enforcement Guidance Supplement EGS:01-01 Appendix E-Operational Procedures for Enforcement Department of Energy Washington, DC 20585 October 15, 2001 MEMORANDUM FOR: DOE PAAA COORDINATORS CONTRACTOR PAAA COORDINATORS FROM: R. KEITH CHRISTOPHER DIRECTOR OFFICE OF ENFORCEMENT AND INVESTIGATION SUBJECT: Enforcement Guidance Supplement 01-01: Nuclear Weapon Program Enforcement Issues Section 1.3 of the Operational Procedures for Enforcement, published in June 1998, provides the opportunity for the Office of Price-Anderson Enforcement (OE) to periodically issue clarifying guidance regarding the processes used in its enforcement activities. This enforcement guidance focuses on the applicability of 10 CFR Part 830 to nuclear weapon programs and several related enforcement issues.

23

Nuclear Explosive and Weapon Surety Program  

Broader source: Directives, Delegations, and Requirements [Office of Management (MA)]

This Order provides requirements and responsibilities to prevent unintended/unauthorized detonation and deliberate unauthorized use of nuclear explosives. Cancels DOE O 452.1C. Admin Chg 1, dated 7-10-13, cancels DOE O 452.1D.

2009-04-14T23:59:59.000Z

24

Nuclear Explosive and Weapon Surety Program - DOE Directives...  

Broader source: All U.S. Department of Energy (DOE) Office Webpages (Extended Search)

and use control consideration because of the potentially unacceptable consequences of an accident or unauthorized act; therefore, a Nuclear Explosive and Weapon Surety (NEWS)...

25

Virtual nuclear weapons  

SciTech Connect (OSTI)

The term virtual nuclear weapons proliferation and arsenals, as opposed to actual weapons and arsenals, has entered in recent years the American lexicon of nuclear strategy, arms control, and nonproliferation. While the term seems to have an intuitive appeal, largely due to its cyberspace imagery, its current use is still vague and loose. The author believes, however, that if the term is clearly delineated, it might offer a promising approach to conceptualizing certain current problems of proliferation. The first use is in a reference to an old problem that has resurfaced recently: the problem of growing availability of weapon-usable nuclear materials in civilian nuclear programs along with materials made `excess` to defense needs by current arms reduction and dismantlement. It is argued that the availability of these vast materials, either by declared nuclear-weapon states or by technologically advanced nonweapon states, makes it possible for those states to rapidly assemble and deploy nuclear weapons. The second use has quite a different set of connotations. It is derived conceptually from the imagery of computer-generated reality. In this use, one thinks of virtual proliferation and arsenals not in terms of the physical hardware required to make the bomb but rather in terms of the knowledge/experience required to design, assemble, and deploy the arsenal. Virtual weapons are a physics reality and cannot be ignored in a world where knowledge, experience, materials, and other requirements to make nuclear weapons are widespread, and where dramatic army reductions and, in some cases, disarmament are realities. These concepts are useful in defining a continuum of virtual capabilities, ranging from those at the low end that derive from general technology diffusion and the existence of nuclear energy programs to those at the high end that involve conscious decisions to develop or maintain militarily significant nuclear-weapon capabilities.

Pilat, J.F.

1997-08-01T23:59:59.000Z

26

NEW - DOE O 452.1E, Nuclear Explosive and Weapon Surety Program  

Broader source: Directives, Delegations, and Requirements [Office of Management (MA)]

All nuclear explosives and nuclear explosive operations require special safety, security, and use control consideration because of the potentially unacceptable consequences of an accident or unauthorized act; therefore, a Nuclear Explosive and Weapon Surety (NEWS) Program is established to prevent unintended/unauthorized detonation and deliberate unauthorized use of nuclear explosives.

27

Robert C. Seamans, Jr. Appointed to Lead Nuclear Weapons Program | National  

Broader source: All U.S. Department of Energy (DOE) Office Webpages (Extended Search)

C. Seamans, Jr. Appointed to Lead Nuclear Weapons Program | National C. Seamans, Jr. Appointed to Lead Nuclear Weapons Program | National Nuclear Security Administration Our Mission Managing the Stockpile Preventing Proliferation Powering the Nuclear Navy Emergency Response Recapitalizing Our Infrastructure Continuing Management Reform Countering Nuclear Terrorism About Us Our Programs Our History Who We Are Our Leadership Our Locations Budget Our Operations Media Room Congressional Testimony Fact Sheets Newsletters Press Releases Speeches Events Social Media Video Gallery Photo Gallery NNSA Archive Federal Employment Apply for Our Jobs Our Jobs Working at NNSA Blog Home > About Us > Our History > NNSA Timeline > Robert C. Seamans, Jr. Appointed to Lead ... Robert C. Seamans, Jr. Appointed to Lead Nuclear Weapons Program January 19, 1975

28

Reconversion of nuclear weapons  

E-Print Network [OSTI]

The nuclear predicament or nuclear option. Synopsis of three lectures : 1- The physical basis of nuclear technology. Physics of fission. Chain reaction in reactors and weapons. Fission fragments. Separration of isotopes. Radiochemistry.2- Nuclear reactors with slow and fast neutrons. Power, size, fuel and waste. Plutonium production. Dose rate, shielding and health hazard. The lessons of Chernobyl3- Nuclear weapons. Types, energy, blast and fallout. Fusion and hydrogen bombs. What to do with nuclear weapons when you cannot use them? Testing. Nonmilittary use. Can we get rid of the nuclear weapon? Nuclear proliferation. Is there a nuclear future?

Kapitza, Sergei P

1993-01-01T23:59:59.000Z

29

Nuclear Weapons  

Science Journals Connector (OSTI)

Each of the enduring warheads in Table 1.6...are being refurbished under the individualized life-extension program (LEP). Their goal is not to make ... be successful, with the exception of the B61 bomb, which is ...

David Hafemeister

2014-01-01T23:59:59.000Z

30

Nuclear Explosive and Weapon Surety Program - DOE Directives...  

Broader source: All U.S. Department of Energy (DOE) Office Webpages (Extended Search)

Surety (NEWS) Program, which was established to prevent unintendedunauthorized detonation and deliberate unauthorized use of nuclear explosives. o452.1E-Draft-8-5-14.pdf --...

31

Stopping the emergence of nuclear weapon states in the Third World: An examination of the Iraq weapons inspection program. Study project  

SciTech Connect (OSTI)

The end of the Gulf War and the implementation of United Nation (UN) resolutions uncovered an Iraqi multi-billion dollar nuclear weapons program. Iraq's ability to pursue this clandestine program for more than a decade, despite periodic inspections, suggest that the myriad of treaties and agreements designed to curb proliferation may be inadequate. Clearly more must be done to deter and counter the spread of these deadly weapon. The UN weapons inspections in Iraq provide insight into possible solutions to the proliferation of nuclear weapons technology in the developing world. This study examines the policy and operational aspects associated with an intrusive United Nations inspection program. In its final analysis, this paper suggests that an effective challenge inspection program is a necessary element in countering the spread of weapons of mass destruction. Further, it suggests that the UN, as the only internationally accepted enforcement organization, be fully engaged in nonproliferation issues and support the challenge inspection program.

Block, D.A.

1993-01-31T23:59:59.000Z

32

The origin of Iraq's nuclear weapons program: Technical reality and Western hypocrisy  

E-Print Network [OSTI]

This report is based on a series of papers written between 1980 and 2005 on the origin of Iraq's nuclear weapons program, which was known to one of the authors in the late 1970s already, as well as to a number of other physicists, who independently tried without success to inform their governments and the public. It is concluded that at no point did the Western governments effectively try to stop Iraq's nuclear weapons program, which suggests that its existence was useful as a foreign policy tool, as is confirmed by its use as a major justification to wage two wars on Iraq.

Erkman, S; Hurni, J P; Klement, S; Erkman, Suren; Gsponer, Andre; Hurni, Jean-Pierre; Klement, Stephan

2005-01-01T23:59:59.000Z

33

Weapons | National Nuclear Security Administration  

National Nuclear Security Administration (NNSA)

Weapons | National Nuclear Security Administration Weapons | National Nuclear Security Administration Our Mission Managing the Stockpile Preventing Proliferation Powering the Nuclear Navy Emergency Response Recapitalizing Our Infrastructure Continuing Management Reform Countering Nuclear Terrorism About Us Our Programs Our History Who We Are Our Leadership Our Locations Budget Our Operations Media Room Congressional Testimony Fact Sheets Newsletters Press Releases Speeches Events Social Media Video Gallery Photo Gallery NNSA Archive Federal Employment Apply for Our Jobs Our Jobs Working at NNSA Blog Weapons Home > Our Mission > Managing the Stockpile > Weapons Weapons The New START Treaty, which was signed in 2010, between the United States and Russian Federation will cap the strategic deployed nuclear arsenals of each country at 1,550 warheads, a nearly 75% reduction compared with the

34

Laboratory's role in Cold War nuclear weapons testing program focus of  

Broader source: All U.S. Department of Energy (DOE) Office Webpages (Extended Search)

70th anniversary lecture 70th anniversary lecture Laboratory's role in Cold War nuclear weapons testing program focus of next 70th anniversary lecture Lab's role in the development of nuclear weapons during the Cold War period will be discussed by Byron Ristvet of the Defense Threat Reduction Agency. September 5, 2013 This photograph captures the expanding fireball of the world's first full-scale hydrogen bomb test, Ivy-Mike, which was conducted Oct. 31, 1952. This photograph captures the expanding fireball of the world's first full-scale hydrogen bomb test, Ivy-Mike, which was conducted Oct. 31, 1952. Contact Steve Sandoval Communications Office (505) 665-9206 Email "Los Alamos National Laboratory's role in conjunction with the Department of Defense in meeting this challenge with new nuclear weapon

35

Enforcement Guidance Supplement 01-01: Nuclear Weapon Program Enforcement Issues  

Broader source: Energy.gov [DOE]

Section 1.3 of the Operational Procedures for Enforcement, published in June 1998, provides the opportunity for the Office of Price-Anderson Enforcement (OE) to periodically issue clarifying guidance regarding the processes used in its enforcement activities. This enforcement guidance focuses on the applicability of 10 CFR Part 830 to nuclear weapon programs and several related enforcement issues.

36

Identification of nuclear weapons  

DOE Patents [OSTI]

A method and apparatus for non-invasively indentifying different types of nuclear weapons is disclosed. A neutron generator is placed against the weapon to generate a stream of neutrons causing fissioning within the weapon. A first detects the generation of the neutrons and produces a signal indicative thereof. A second particle detector located on the opposite side of the weapon detects the fission particles and produces signals indicative thereof. The signals are converted into a detected pattern and a computer compares the detected pattern with known patterns of weapons and indicates which known weapon has a substantially similar pattern. Either a time distribution pattern or noise analysis pattern, or both, is used. Gamma-neutron discrimination and a third particle detector for fission particles adjacent the second particle detector are preferably used. The neutrons are generated by either a decay neutron source or a pulled neutron particle accelerator.

Mihalczo, J.T.; King, W.T.

1987-04-10T23:59:59.000Z

37

Nuclear Explosive and Weapon Surety Program - DOE Directives...  

Broader source: All U.S. Department of Energy (DOE) Office Webpages (Extended Search)

Order provides requirements and responsibilities to prevent unintendedunauthorized detonation and deliberate unauthorized use of nuclear explosives. Cancels DOE O 452.1B....

38

Nuclear Explosive and Weapon Surety Program - DOE Directives...  

Broader source: All U.S. Department of Energy (DOE) Office Webpages (Extended Search)

Order provides requirements and responsibilities to prevent unintendedunauthorized detonation and deliberate unauthorized use of nuclear explosives. Cancels DOE O 452.1. Canceled...

39

Nuclear Explosive and Weapon Surety Program - DOE Directives...  

Broader source: All U.S. Department of Energy (DOE) Office Webpages (Extended Search)

Order provides requirements and responsibilities to prevent unintendedunauthorized detonation and deliberate unauthorized use of nuclear explosives. Cancels DOE O 452.1A....

40

The National Nuclear Security Administration's Weapons Dismantlement...  

Office of Environmental Management (EM)

National Nuclear Security Administration's Weapons Dismantlement and Disposition Program OAS-L-13-06 January 2013 Department of Energy Washington, DC 20585 January 29, 2013...

Note: This page contains sample records for the topic "nuclear weapons program" from the National Library of EnergyBeta (NLEBeta).
While these samples are representative of the content of NLEBeta,
they are not comprehensive nor are they the most current set.
We encourage you to perform a real-time search of NLEBeta
to obtain the most current and comprehensive results.


41

Chapter 27 - Nuclear weapons  

Science Journals Connector (OSTI)

Abstract This chapter faces the realization that the same atoms that can produce life-saving electricity can also be used to construct weapons of mass destruction. Some facilities, such as enrichment and reprocessing, in the nuclear fuel cycle can also serve dual uses when considering proliferation. The original atomic bombs were constructed of highly enriched uranium and high-grade plutonium, but their development led to thermonuclear devices with much larger yields. Thus far, nuclear war has been avoided by policies such as mutual assured destruction and international agreements such as the Non-Proliferation Treaty. The International Atomic Energy Agency (IAEA) is charged with performing worldwide nuclear material safeguards inspections. The legacy of the nuclear weapons arms race has left considerable weapons-grade materials that must be dealt with.

Raymond L. Murray; Keith E. Holbert

2015-01-01T23:59:59.000Z

42

Eisenhower Halts Nuclear Weapons Testing | National Nuclear Security  

National Nuclear Security Administration (NNSA)

Eisenhower Halts Nuclear Weapons Testing | National Nuclear Security Eisenhower Halts Nuclear Weapons Testing | National Nuclear Security Administration Our Mission Managing the Stockpile Preventing Proliferation Powering the Nuclear Navy Emergency Response Recapitalizing Our Infrastructure Continuing Management Reform Countering Nuclear Terrorism About Us Our Programs Our History Who We Are Our Leadership Our Locations Budget Our Operations Media Room Congressional Testimony Fact Sheets Newsletters Press Releases Speeches Events Social Media Video Gallery Photo Gallery NNSA Archive Federal Employment Apply for Our Jobs Our Jobs Working at NNSA Blog Home > About Us > Our History > NNSA Timeline > Eisenhower Halts Nuclear Weapons Testing Eisenhower Halts Nuclear Weapons Testing August 22, 1958 Washington, DC Eisenhower Halts Nuclear Weapons Testing

43

A Sandia nuclear weapon knowledge management program plan for FY 1998--2003. Volume 1: Synopsis  

SciTech Connect (OSTI)

This volume contains a synopsis and briefing charts for a five-year plan which describes a Knowledge Management Program needed to meet Sandia`s responsibility for maintaining safety, security, reliability, and operational effectiveness of the nuclear weapon stockpile. Although the knowledge and expertise required to maintain and upgrade the stockpile continues to be critical to the country`s defense, Sandia`s historical process for developing and advancing future knowledge and expertise needs to be addressed. This plan recommends implementing an aggressive Knowledge Management Program to assure retention and furtherance of Sandia`s expertise, beginning in fiscal year 1998, as an integrated approach to solving the expertise dilemma.

NONE

1998-02-01T23:59:59.000Z

44

National Laboratory's Weapons Program  

Broader source: All U.S. Department of Energy (DOE) Office Webpages (Extended Search)

Charles McMillan to lead Los Alamos National Laboratory's Weapons Program July 28, 2009 Los Alamos, New Mexico, July 28, 2009- Charles McMillan has been appointed the new principal...

45

US nuclear weapons policy  

SciTech Connect (OSTI)

We are closing chapter one'' of the nuclear age. Whatever happens to the Soviet Union and to Europe, some of the major determinants of nuclear policy will not be what they have been for the last forty-five years. Part of the task for US nuclear weapons policy is to adapt its nuclear forces and the oganizations managing them to the present, highly uncertain, but not urgently competitive situation between the US and the Soviet Union. Containment is no longer the appropriate watchword. Stabilization in the face of uncertainty, a more complicated and politically less readily communicable goal, may come closer. A second and more difficult part of the task is to deal with what may be the greatest potential source of danger to come out of the end of the cold war: the breakup of some of the cooperative institutions that managed the nuclear threat and were created by the cold war. These cooperative institutions, principally the North Atlantic Treaty Organization (NATO), the Warsaw Pact, the US-Japan alliance, were not created specifically to manage the nuclear threat, but manage it they did. A third task for nuclear weapons policy is that of dealing with nuclear proliferation under modern conditions when the technologies needed to field effective nuclear weapons systems and their command and control apparatus are ever more widely available, and the leverage over some potential proliferators, which stemmed from superpower military support, is likely to be on the wane. This paper will make some suggestions regarding these tasks, bearing in mind that the unsettled nature of that part of the world most likely to become involved in nuclear weapons decisions today must make any suggestions tentative and the allowance for surprise more than usually important.

May, M.

1990-12-05T23:59:59.000Z

46

Disposal of SNL-designed electronics assemblies associated with the nuclear weapons program: Challenges and progress  

SciTech Connect (OSTI)

One of the common waste streams generated throughout the nuclear weapon complex is ``hardware`` originating from the nuclear weapons program. The activities associated with this hardware at Sandia National Laboratories (SNL) include design and development, environmental testing, reliability and stockpile surveillance testing, and military liaison training. SNL-designed electronic assemblies include radars, arming/fusing/firing systems, power sources, and use-control and safety systems. Waste stream characterization using process knowledge is difficult due to the age of some components and lack of design information oriented towards hazardous constituent identification. Chemical analysis methods such as the Toxicity Characteristic Leaching Procedure (TCLP) are complicated by the inhomogeneous character of these components and the fact that many assemblies have aluminum or stainless steel cases, with the electronics encapsulated in a foam or epoxy matrix. In addition, some components may contain explosives, radioactive materials, toxic substances (PCBs, asbestos), and other regulated or personnel hazards which must be identified prior to handling and disposal. In spite of the above difficulties, we have succeeded in characterizing a limited number of weapon components using a combination of process knowledge and chemical analysis. For these components, we have shown that if the material is regulated as RCRA hazardous waste, it is because the waste exhibits one or more hazardous characteristics; primarily reactivity and/or toxicity (Pb, Cd).

Chambers, W.B.; Chavez, S.L.

1992-03-01T23:59:59.000Z

47

Disposal of SNL-designed electronics assemblies associated with the nuclear weapons program: Challenges and progress  

SciTech Connect (OSTI)

One of the common waste streams generated throughout the nuclear weapon complex is hardware'' originating from the nuclear weapons program. The activities associated with this hardware at Sandia National Laboratories (SNL) include design and development, environmental testing, reliability and stockpile surveillance testing, and military liaison training. SNL-designed electronic assemblies include radars, arming/fusing/firing systems, power sources, and use-control and safety systems. Waste stream characterization using process knowledge is difficult due to the age of some components and lack of design information oriented towards hazardous constituent identification. Chemical analysis methods such as the Toxicity Characteristic Leaching Procedure (TCLP) are complicated by the inhomogeneous character of these components and the fact that many assemblies have aluminum or stainless steel cases, with the electronics encapsulated in a foam or epoxy matrix. In addition, some components may contain explosives, radioactive materials, toxic substances (PCBs, asbestos), and other regulated or personnel hazards which must be identified prior to handling and disposal. In spite of the above difficulties, we have succeeded in characterizing a limited number of weapon components using a combination of process knowledge and chemical analysis. For these components, we have shown that if the material is regulated as RCRA hazardous waste, it is because the waste exhibits one or more hazardous characteristics; primarily reactivity and/or toxicity (Pb, Cd).

Chambers, W.B.; Chavez, S.L.

1992-01-01T23:59:59.000Z

48

Verifying a nuclear weapon`s response to radiation environments  

SciTech Connect (OSTI)

The process described in the paper is being applied as part of the design verification of a replacement component designed for a nuclear weapon currently in the active stockpile. This process is an adaptation of the process successfully used in nuclear weapon development programs. The verification process concentrates on evaluating system response to radiation environments, verifying system performance during and after exposure to radiation environments, and assessing system survivability.

Dean, F.F.; Barrett, W.H.

1998-05-01T23:59:59.000Z

49

Nuclear weapon detection categorization analysis  

SciTech Connect (OSTI)

This statement of work is for the Proof of Concept for nuclear weapon categories utility in Arms control. The focus of the project will be to collect, analyze and correlate Intrinsic Radiation (INRAD) calculation results for the purpose of defining measurable signatures that differentiate categories of nuclear weapons. The project will support START III negotiations by identifying categories of nuclear weapons. The categories could be used to clarify sub-limits on the total number of nuclear weapons.

NONE

1997-12-01T23:59:59.000Z

50

Enforcement Guidance Supplement 01-01, Nuclear Weapon Program Enforcement Issues  

Broader source: Energy.gov (indexed) [DOE]

Enforcement Guidance Supplement Enforcement Guidance Supplement EGS:01-01 Appendix E-Operational Procedures for Enforcement Department of Energy Washington, DC 20585 October 15, 2001 MEMORANDUM FOR: DOE PAAA COORDINATORS CONTRACTOR PAAA COORDINATORS FROM: R. KEITH CHRISTOPHER DIRECTOR OFFICE OF ENFORCEMENT AND INVESTIGATION SUBJECT: Enforcement Guidance Supplement 01-01: Nuclear Weapon Program Enforcement Issues Section 1.3 of the Operational Procedures for Enforcement, published in June 1998, provides the opportunity for the Office of Price-Anderson Enforcement (OE) to periodically issue clarifying guidance regarding the processes used in its enforcement

51

Weapons Program Associate Directors named  

Broader source: All U.S. Department of Energy (DOE) Office Webpages (Extended Search)

Program Associate Directors named Bob Webster has been named Associate Director for Weapon Physics and John Benner has been named Associate Director for Weapon Engineering and...

52

The meteorological monitoring audit, preventative maintenance and quality assurance programs at a former nuclear weapons facility  

SciTech Connect (OSTI)

The purposes of the meteorological monitoring audit, preventative maintenance, and quality assurance programs at the Rocky Flats Environmental Technology Site (Site), are to (1) support Emergency Preparedness (EP) programs at the Site in assessing the transport, dispersion, and deposition of effluents actually or potentially released into the atmosphere by Site operations; and (2) provide information for onsite and offsite projects concerned with the design of environmental monitoring networks for impact assessments, environmental surveillance activities, and remediation activities. The risk from the Site includes chemical and radioactive emissions historically related to nuclear weapons component production activities that are currently associated with storage of large quantities of radionuclides (plutonium) and radioactive waste forms. The meteorological monitoring program provides information for site-specific weather forecasting, which supports Site operations, employee safety, and Emergency Preparedness operations.

Maxwell, D.R. [DynCorp of Colorado, Inc., Golden, CO (United States). Rocky Flats Environmental Technology Site

1995-12-31T23:59:59.000Z

53

Iraqi nuclear weapons development program. Final report, October 1, 1992--September 30, 1993  

SciTech Connect (OSTI)

This is an abstract of the final report focusing on the collection, collation, analysis, and recording of information pertaining to Iraqi nuclear weapons development and on the long term monitoring of Iraq.

Not Available

1993-09-30T23:59:59.000Z

54

Will our nuclear weapons work?  

Broader source: All U.S. Department of Energy (DOE) Office Webpages (Extended Search)

Will our nuclear weapons work? Will our nuclear weapons work? National Security Science magazine Latest Issue:April 2013 All Issues » submit Supercomputers are essential for assessing the health of the U.S. nuclear stockpile Supercomputers provide assurance by simulating nuclear weapons performance March 25, 2013 Graphic of a missile being tested through computer simulation Los Alamos uses supercomputers to make high-resolution 3D simulations that help to assess the health of nuclear weapons like this B-61 bomb. Contact Managing Editor Clay Dillingham Email The nuclear weapons in the U.S. stockpile were designed and built to be replaced with new designs and builds every 10 to 15 years. These weapons have lived beyond their expected lifespans. Supercomputers provide the high-resolution 3D simulations needed for

55

Computational Challenges in Nuclear Weapons Simulation  

SciTech Connect (OSTI)

After a decade of experience, the Stockpile Stewardship Program continues to ensure the safety, security and reliability of the nation's nuclear weapons. The Advanced Simulation and Computing (ASCI) program was established to provide leading edge, high-end simulation capabilities needed to meet the program's assessment and certification requirements. The great challenge of this program lies in developing the tools and resources necessary for the complex, highly coupled, multi-physics calculations required to simulate nuclear weapons. This paper describes the hardware and software environment we have applied to fulfill our nuclear weapons responsibilities. It also presents the characteristics of our algorithms and codes, especially as they relate to supercomputing resource capabilities and requirements. It then addresses impediments to the development and application of nuclear weapon simulation software and hardware and concludes with a summary of observations and recommendations on an approach for working with industry and government agencies to address these impediments.

McMillain, C F; Adams, T F; McCoy, M G; Christensen, R B; Pudliner, B S; Zika, M R; Brantley, P S; Vetter, J S; May, J M

2003-08-29T23:59:59.000Z

56

DOE Order Self Study Modules - DOE O 452.1D, Nuclear Explosive and Weapon Surety Program and  

Broader source: Energy.gov (indexed) [DOE]

CONTINUING TRAINING SELF- CONTINUING TRAINING SELF- STUDY PROGRAM DOE O 452.1D NUCLEAR EXPLOSIVE AND WEAPON SURETY PROGRAM DOE O 452.2D NUCLEAR EXPLOSIVE SAFETY DOE O 452.1D and DOE O 452.2D Familiar Level June 2011 1 DOE O 452.1D NUCLEAR EXPLOSIVE AND WEAPON SURETY PROGRAM DOE O 452.2D NUCLEAR EXPLOSIVE SAFETY FAMILIAR LEVEL OBJECTIVES Given the familiar level of this module and the resources listed below, you will be able to answer the following questions: 1. What are the objectives of implementing U.S. Department of Energy (DOE) O 452.1D? 2. Define the following terms as they apply to this Order: Abnormal environment High explosive detonation 3. What are the objectives of implementing DOE O 452.2D? 4. What are the general requirements of DOE O 452.2D?

57

Managing nuclear materials from retired weapons: An overview of U.S. plans, programs and goals  

SciTech Connect (OSTI)

In September 1993, the Congressional Office of Technology Assessment (OTA) published a report entitled ``Dismantling the Bomb and Managing the Nuclear Materials``. That study evaluated the current activities as well as the future challenges inherent in retiring many thousands of nuclear weapons in the US and Russia; dismantling the warheads; and safely and securely disposing of the constituent materials.The warhead dismantlement process has been underway for a few years in both nations but long-range plans and policies are still in the early stages of development. At present both the plutonium and highly-enriched uranium removed from retired weapons is stored temporarily awaiting decisions about its ultimate fate.

Johnson, P.A. [Office of Technology Assessment, Washington, DC (United States)

1995-12-31T23:59:59.000Z

58

Nuclear weapon system risk assessment  

SciTech Connect (OSTI)

Probabilistic risk assessment (PRA) is a process for evaluating hazardous operations by considering what can go wrong, the likelihood of these undesired events, and the resultant consequences. Techniques used in PRA originated in the 1960s. Although there were early exploratory applications to nuclear weapons and other technologies, the first major application of these techniques was in the Reactor Safety Study, WASH-1400, {sup 1} in which the risks of nuclear power accidents were thoroughly investigated for the first time. Recently, these techniques have begun to be adapted to nuclear weapon system applications. This report discusses this application to nuclear weapon systems.

Carlson, D.D.

1993-11-01T23:59:59.000Z

59

Debunking Six Big Myths about Nuclear Weapons  

Broader source: All U.S. Department of Energy (DOE) Office Webpages (Extended Search)

Debunking Six Big Myths about Nuclear Weapons National Security Science Latest Issue:December 2014 All Issues submit Debunking Six Big Myths about Nuclear Weapons Is it true...

60

Nuclear weapon reliability evaluation methodology  

SciTech Connect (OSTI)

This document provides an overview of those activities that are normally performed by Sandia National Laboratories to provide nuclear weapon reliability evaluations for the Department of Energy. These reliability evaluations are first provided as a prediction of the attainable stockpile reliability of a proposed weapon design. Stockpile reliability assessments are provided for each weapon type as the weapon is fielded and are continuously updated throughout the weapon stockpile life. The reliability predictions and assessments depend heavily on data from both laboratory simulation and actual flight tests. An important part of the methodology are the opportunities for review that occur throughout the entire process that assure a consistent approach and appropriate use of the data for reliability evaluation purposes.

Wright, D.L. [Sandia National Labs., Albuquerque, NM (United States)

1993-06-01T23:59:59.000Z

Note: This page contains sample records for the topic "nuclear weapons program" from the National Library of EnergyBeta (NLEBeta).
While these samples are representative of the content of NLEBeta,
they are not comprehensive nor are they the most current set.
We encourage you to perform a real-time search of NLEBeta
to obtain the most current and comprehensive results.


61

Clinton Extends Moratorium on Nuclear Weapons Testing | National Nuclear  

National Nuclear Security Administration (NNSA)

Clinton Extends Moratorium on Nuclear Weapons Testing | National Nuclear Clinton Extends Moratorium on Nuclear Weapons Testing | National Nuclear Security Administration Our Mission Managing the Stockpile Preventing Proliferation Powering the Nuclear Navy Emergency Response Recapitalizing Our Infrastructure Continuing Management Reform Countering Nuclear Terrorism About Us Our Programs Our History Who We Are Our Leadership Our Locations Budget Our Operations Media Room Congressional Testimony Fact Sheets Newsletters Press Releases Speeches Events Social Media Video Gallery Photo Gallery NNSA Archive Federal Employment Apply for Our Jobs Our Jobs Working at NNSA Blog Home > About Us > Our History > NNSA Timeline > Clinton Extends Moratorium on Nuclear Weapons Testing Clinton Extends Moratorium on Nuclear Weapons Testing July 03, 1993 Washington, DC

62

Nuclear Weapons Life Cycle | National Nuclear Security Administration  

Broader source: All U.S. Department of Energy (DOE) Office Webpages (Extended Search)

Life Cycle | National Nuclear Security Administration Life Cycle | National Nuclear Security Administration Our Mission Managing the Stockpile Preventing Proliferation Powering the Nuclear Navy Emergency Response Recapitalizing Our Infrastructure Continuing Management Reform Countering Nuclear Terrorism About Us Our Programs Our History Who We Are Our Leadership Our Locations Budget Our Operations Media Room Congressional Testimony Fact Sheets Newsletters Press Releases Speeches Events Social Media Video Gallery Photo Gallery NNSA Archive Federal Employment Apply for Our Jobs Our Jobs Working at NNSA Blog Nuclear Weapons Life Cycle Home > Our Mission > Managing the Stockpile > Nuclear Weapons Life Cycle Nuclear Weapons Life Cycle Nuclear weapons are developed, produced, and maintained in the stockpile, and then retired and dismantled. This sequence of events is known as the

63

The gas centrifuge and nuclear weapons proliferation  

SciTech Connect (OSTI)

Uranium enrichment by centrifugation is the basis for the quick and efficient production of nuclear fuel-or nuclear weapons.

Wood, Houston G. [Mechanical and Aerospace Engineering Department, University of Virginia, Charlottesville, Virginia (United States); Glaser, Alexander [Woodrow Wilson School of Public and International Affairs, Program on Science, Technology and Environmental Policy, Princeton University, Princeton, New Jersey (United States); Kemp, R. Scott [Nuclear Science and Engineering Department, Massachusetts Institute of Technology, Cambridge, Massachusetts (United States)

2014-05-09T23:59:59.000Z

64

Security and Use Control of Nuclear Explosives and Nuclear Weapons...  

Broader source: All U.S. Department of Energy (DOE) Office Webpages (Extended Search)

security and use control (UC) elements of DOE O 452.1D, Nuclear Explosive and Weapon Surety (NEWS) Program, to ensure authorized use, when directed by proper authority,...

65

Neutrino Counter Nuclear Weapon  

E-Print Network [OSTI]

Radiations produced by neutrino-antineutrino annihilation at the Z0 pole can be used to heat up the primary stage of a thermonuclear warhead and can in principle detonate the device remotely. Neutrino-antineutrino annihilation can also be used as a tactical assault weapon to target hideouts that are unreachable by conventional means.

Tang, Alfred

2008-01-01T23:59:59.000Z

66

History of US nuclear weapon safety assessment: The early years  

SciTech Connect (OSTI)

From the beginnings of the U.S. nuclear weapons program, military and civilian dual- agency judgment has been fundamental to achieving nuclear weapon and weapon system safety. This interaction was initiated by the Atomic Energy Act of 1946, which created the Atomic Energy Commission (AEC). The principle of using dual-agency judgment has been perpetuated in the design and assessment of the weapon and weapon system acceptance process since that time. This fundamental approach is still used today in all phases of the weapon life. In this paper, an overview of the history and philosophy of the approach is described.

Spray, S.D.

1996-06-01T23:59:59.000Z

67

How to optimally interdict a belligerent project to develop a nuclear weapon .  

E-Print Network [OSTI]

??Despite decades of energetic international control efforts, nuclear weapons technology continues to spread worldwide. To understand how these complex weapons programs can be developed, we… (more)

Skroch, Eric M.

2004-01-01T23:59:59.000Z

68

Request For Records Disposition Authority-Nuclear Weapons | Department...  

Broader source: Energy.gov (indexed) [DOE]

For Records Disposition Authority-Nuclear Weapons This document identifies the nuclear weapon records generated by the Department of Energy's (DOE) Nuclear Weapons Complex Request...

69

Control of Nuclear Weapon Data  

Broader source: Directives, Delegations, and Requirements [Office of Management (MA)]

The directive establishes the policy, process and procedures for control of nuclear weapon data to ensure that dissemination of the information is restricted to individuals with appropriate clearances, approved authorization and valid need-to-know in keeping with the Atomic Energy Act (as amended) stipulation of ensuring common defense and security. Cancels DOE O 5610.2.

2011-07-21T23:59:59.000Z

70

Nuclear Weapons Testing Resumes | National Nuclear Security Administration  

Broader source: All U.S. Department of Energy (DOE) Office Webpages (Extended Search)

Testing Resumes | National Nuclear Security Administration Testing Resumes | National Nuclear Security Administration Our Mission Managing the Stockpile Preventing Proliferation Powering the Nuclear Navy Emergency Response Recapitalizing Our Infrastructure Continuing Management Reform Countering Nuclear Terrorism About Us Our Programs Our History Who We Are Our Leadership Our Locations Budget Our Operations Media Room Congressional Testimony Fact Sheets Newsletters Press Releases Speeches Events Social Media Video Gallery Photo Gallery NNSA Archive Federal Employment Apply for Our Jobs Our Jobs Working at NNSA Blog Home > About Us > Our History > NNSA Timeline > Nuclear Weapons Testing Resumes Nuclear Weapons Testing Resumes September 01, 1961 Washington, DC Nuclear Weapons Testing Resumes The Soviet Union breaks the nuclear test moratorium and the United States

71

What to do with 50,000 nuclear weapons?  

SciTech Connect (OSTI)

While the world celebrates the peaceful disposal of nuclear weapons, energies now focus on their careful disassembly. Recently, the United States` main focus for dismantling has been the safe dispersal and storage of the various nuclear components and their uses for peaceful purposes rather than weapons of destruction. It should be noted that the treaties currently in effect do not require weapons to be dismantled, only that each country withdraw the weapons from the deployed status and remove the means of delivery. The US current program dismantles weapons into their various components. The disassembly of a nuclear weapon involves numerous components. Many of these components can be disposed of or recycled after changing their shape. The nuclear components create the most safety and proliferation concerns. These nuclear components typically consist of three materials: tritium, highly enriched uranium and plutonium. Some of these nuclear components will be placed in a strategic reserve, while other nuclear components will be declared surplus. Both tritium and uranium can be re-used. The tritium is repurified and used for the active weapons stockpile. The uranium can be blended down and used in commercial nuclear power plants. At this time, plutonium disposal is the most vexing challenge. This paper will briefly describe how a nuclear weapons works, the mission of the Pantex Plant which dismantles the weapons, and the research opportunities for use of dismantled nuclear weapon components.

Klein, D.E. [Univ. of Texas, Austin, TX (United States). Coll. of Engineering

1995-12-31T23:59:59.000Z

72

weapons material protection | National Nuclear Security Administration  

National Nuclear Security Administration (NNSA)

weapons material protection | National Nuclear Security Administration Facebook Twitter Youtube Flickr RSS People Mission Managing the Stockpile Preventing Proliferation Powering...

73

Status of nuclear weapons material disposition in Russia  

SciTech Connect (OSTI)

The security of nuclear weapons and fissile material in Russia, the disposition of weapons-usable fissile material in Russia, the Clinton administration`s policies and programs for assisting Russia in improving its security over nuclear weapons and fissile material, and the disposal of Russian weapons-usable fissile materials are discussed in this paper. There are {approximately}30,000 nuclear warheads in the former Soviet Union, {approximately}1000 t of weapon-usable high-enriched uranium (HEU), {approximately} 160 t of separated plutonium in weapons or available for weapons, and {approximately}30 t of separated civil plutonium stored in Russia. Most, if not all, of these inventories are stored under inadequate conditions of physical security and of material control and accounting.

Cochran, T.B.

1994-12-31T23:59:59.000Z

74

SECURITY AND CONTROL OF NUCLEAR EXPLOSIVES AND NUCLEAR WEAPONS  

National Nuclear Security Administration (NNSA)

http://www.nnsa.energy.gov Office of Nuclear Weapon Surety and Quality http://www.nnsa.energy.gov Office of Nuclear Weapon Surety and Quality SUPPLEMENTAL DIRECTIVE Approved: 7-7-11 IMPLEMENTATION AND EVALUATION OF CONTROLS TO PREVENT DELIBERATE UNAUTHORIZED USE NATIONAL NUCLEAR SECURITY ADMINISTRATION Office of Defense Programs NA SD 452.4 NA SD 452.4 1 7-7-11 IMPLEMENTATION AND EVALUATION OF CONTROLS TO PREVENT DELIBERATE UNAUTHORIZED USE 1. PURPOSE. This NNSA Supplemental Directive (SD) supports the requirements of DOE O 452.4B, Security and Use Control of Nuclear Explosives and Nuclear Weapons. Specifically, this SD supports the Order's requirements to implement deliberate unauthorized use (DUU) preventive measures for nuclear explosive operations (NEO) and associated activities and to perform independent evaluations to determine if NEOs

75

Security and Use Control of Nuclear Explosives and Nuclear Weapons  

Broader source: Directives, Delegations, and Requirements [Office of Management (MA)]

This Order establishes requirements to implement the nuclear explosive security and use control elements of DOE O 452.1D, Nuclear Explosive and Weapon Surety (NEWS) Program, to ensure authorized use, when directed by proper authority, and protect against deliberate unauthorized acts/deliberate unauthorized use. Cancels DOE O 452.4A.

2010-01-22T23:59:59.000Z

76

Security and Use Control of Nuclear Explosives and Nuclear Weapons  

Broader source: Directives, Delegations, and Requirements [Office of Management (MA)]

The Order establishes requirements to implement the nuclear explosive security and use control (UC) elements of DOE O 452.1D, Nuclear Explosive and Weapon Surety (NEWS) Program, to ensure authorized use, when directed by proper authority, and protect against deliberate unauthorized acts (DUAs), deliberate unauthorized use (DUU), and denial of authorized use (DAU).

2014-11-19T23:59:59.000Z

77

Nuclear weapons testing  

SciTech Connect (OSTI)

The author examines the history of efforts to ban, or at least constrain, nuclear tests. The issue has been marked by shifts in attitude by the superpowers in recent times. The Reagan Administration sees a comprehensive test ban only as a very long-term goal for the U.S. The Soviets, on the other hand, have been pushing extremely hard lately for a ban on all testing. The author discusses the pros and cons of such a ban by examining the arguments of the U.S. Department of Energy, Nobel Laureate Glenn T. Seaborg, and Associate Director for Defense Systems at Lawrence Livermore National Laboratory George H. Miller. Other issues that are discussed include verification, joint testing, and reliability. He concludes with a discussion of the future of the ban.

Heylin, M.

1988-02-15T23:59:59.000Z

78

Order Module--DOE O 452.1D, NUCLEAR EXPLOSIVE AND WEAPON SURETY PROGRAM, DOE O 452.2D, NUCLEAR EXPLOSIVE SAFETY  

Broader source: Energy.gov [DOE]

"To prevent accidents and inadvertent or unauthorized use of U.S. nuclear weapons and nuclear explosives. In conjunction with the Department of Defense (DoD), to protect the public health and...

79

EIS-0218: Proposed Nuclear Weapons Nonproliferation Policy Concerning...  

Broader source: Energy.gov (indexed) [DOE]

18: Proposed Nuclear Weapons Nonproliferation Policy Concerning Foreign Research Reactor Spent Nuclear Fuel EIS-0218: Proposed Nuclear Weapons Nonproliferation Policy Concerning...

80

Toward a nuclear weapons free world?  

SciTech Connect (OSTI)

Doubts about the wisdom of relying on nuclear weapons are as old as nuclear weapons themselves. But despite this questioning, nuclear weapons came to be seen as the indispensable element of American (indeed Western) security during the Cold War. By the 1970s and 1980s, however, discontent was growing about the intense US-Soviet nuclear arms competition, as it failed to provide any enduring improvement in security; rather, it was seen as creating ever greater risks and dangers. Arms control negotiations and limitations, adopted as a means to regulate the technical competition, may also have relieved some of the political pressures and dangers. But the balance of terror, and the fears of it, continued. The Strategic Defense Initiative (SDI) under President Reagan was a very different approach to escaping from the precarious protection of nuclear weapons, in that it sought a way to continue to defend the US and the West, but without the catastrophic risks of mutual deterrence. As such, SDI connoted unhappiness with the precarious nuclear balance and, for many, with nuclear weapons in general. The disappearance of the Warsaw Pact, the disintegration of the Soviet Union, and the sudden end of the Cold War seemed to offer a unique opportunity to fashion a new, more peaceful world order that might allow for fading away of nuclear weapons. Scholars have foreseen two different paths to a nuclear free world. The first is a fundamental improvement in the relationships between states such that nuclear weapons are no longer needed. The second path is through technological development, e.g., missile defenses which could provide effective protection against nuclear attacks. The paper discusses nuclear weapon policy in the US, views of other nuclear states, the future of nuclear weapons, and issues in a less-nuclear world.

Maaranen, S.A. [Los Alamos National Lab., NM (United States). Center for International Security Affairs

1996-09-01T23:59:59.000Z

Note: This page contains sample records for the topic "nuclear weapons program" from the National Library of EnergyBeta (NLEBeta).
While these samples are representative of the content of NLEBeta,
they are not comprehensive nor are they the most current set.
We encourage you to perform a real-time search of NLEBeta
to obtain the most current and comprehensive results.


81

US?Ukraine stalemate over nuclear weapons  

Science Journals Connector (OSTI)

... Washington. Ukraine's opposition to the complete relinquishment of strategic nuclear weapons located on its soil is ... for the Advancement of Science (AAAS), focused on the disposal of nuclear weapons in Ukraine itself, while a United Nations symposium addressed the wider question of disarmament across the ...

Colin Macilwain

1993-10-14T23:59:59.000Z

82

What do we do with Nuclear Weapons Now?  

E-Print Network [OSTI]

What Do We Do with Nuclear Weapons Now? by Michael M. Maythe Future of U.S. Nuclear Weapons Policy MICHAEL M. MAY wasmajority in nuclear weapons states. Unlike chemical and

May, Michael M

2005-01-01T23:59:59.000Z

83

Fehner and Gosling, Atmospheric Nuclear Weapons Testing, 1951...  

Office of Environmental Management (EM)

Atmospheric Nuclear Weapons Testing, 1951-1963. Battlefield of the Cold War: The Nevada Test Site, Volume I Fehner and Gosling, Atmospheric Nuclear Weapons Testing, 1951-1963....

84

Passing good judgment, part 1: weapons designers with nuclear...  

Broader source: All U.S. Department of Energy (DOE) Office Webpages (Extended Search)

2014 All Issues submit Passing good judgment, part 1: weapons designers with nuclear testing experience The nuclear weapons designers who developed their skills during...

85

Reducing the Nuclear Weapons Stockpile | National Nuclear Security...  

National Nuclear Security Administration (NNSA)

the Nuclear Weapons Stockpile | National Nuclear Security Administration Facebook Twitter Youtube Flickr RSS People Mission Managing the Stockpile Preventing Proliferation Powering...

86

U.S. No Longer Building Any Nuclear Weapons | National Nuclear Security  

National Nuclear Security Administration (NNSA)

No Longer Building Any Nuclear Weapons | National Nuclear Security No Longer Building Any Nuclear Weapons | National Nuclear Security Administration Our Mission Managing the Stockpile Preventing Proliferation Powering the Nuclear Navy Emergency Response Recapitalizing Our Infrastructure Continuing Management Reform Countering Nuclear Terrorism About Us Our Programs Our History Who We Are Our Leadership Our Locations Budget Our Operations Media Room Congressional Testimony Fact Sheets Newsletters Press Releases Speeches Events Social Media Video Gallery Photo Gallery NNSA Archive Federal Employment Apply for Our Jobs Our Jobs Working at NNSA Blog Home > About Us > Our History > NNSA Timeline > U.S. No Longer Building Any Nuclear Weapons U.S. No Longer Building Any Nuclear Weapons May 10, 1992 Washington, DC U.S. No Longer Building Any Nuclear Weapons

87

Operation TEAPOT, 1955 continental nuclear weapons test series. Technical report  

SciTech Connect (OSTI)

This report describes the activities of an estimated 11,000 DOD personnel, both military and civilian, in Operation TEAPOT, the fifth atmospheric nuclear weapons testing series conducted in Nevada from 18 February to 15 May 1955. Activities engaging DOD personnel included Exercise Desert Rock VI observer programs, troop tests, and technical service programs; AEC scientific and diagnostic experiments to evaluate the effects of the nuclear device; DOD operational programs; and air support.

Ponton, J.; Maag, C.; Wilkinson, M.; Shepanek, R.F.

1981-11-23T23:59:59.000Z

88

Managing nuclear weapons in a changing world: Proceedings  

SciTech Connect (OSTI)

The Center for Security and Technology Studies was established at the Lawrence Livermore National Laboratory to support long-range technical studies on issues of importance to US national security. An important goal of the Center is to bring together Laboratory staff and the broader outside community through a program of technical studies, visitors, symposia, seminars, workshops, and publications. With this in mind, the Center and LLNL`s Defense Systems Program sponsored a conference on Managing Nuclear Weapons in a Changing World held on November 17--18,1992. The first day of the meeting focused on nuclear weapons issues in the major geographical areas of the world. On the second day, the conference participants discussed what could be done to manage, control, and account for nuclear weapons in this changing world. Each of the talks and the concluding panel discussion are being indexed as separate documents.

Not Available

1992-12-31T23:59:59.000Z

89

Los Alamos National Laboratory names new head of weapons programs  

Broader source: All U.S. Department of Energy (DOE) Office Webpages (Extended Search)

Laboratory names new head of weapons programs Los Alamos National Laboratory names new head of weapons programs Bret Knapp has been acting in that position since June 2011....

90

The history of nuclear weapon safety devices  

SciTech Connect (OSTI)

The paper presents the history of safety devices used in nuclear weapons from the early days of separables to the latest advancements in MicroElectroMechanical Systems (MEMS). Although the paper focuses on devices, the principles of Enhanced Nuclear Detonation Safety implementation will also be presented.

Plummer, D.W.; Greenwood, W.H.

1998-06-01T23:59:59.000Z

91

Find and neutralize clandestine nuclear weapons  

SciTech Connect (OSTI)

The objective of finding nuclear material at entry portals is to provide a secure perimeter as large as a weapon damage radius so that operations could be conducted within it relatively unencumbered. The objective of wide area search for nuclear material to provide a safe zone of similar dimensions in an area in which it is not possible to maintain a secure perimeter, to provide assurance for civilians living at an area at risk, or to provide rapid, wide area search of regions that could conceal nuclear threats to forces in the field. This rapid, wide-area, and confident detection of nuclear materials is the essential first step in developing the ability to negate terrorist nuclear assemblies or weapons. The ability to detect and negate nuclear materials are necessary to prevent the forced, massive evacuation of urban populations or the disruption of military operations in response to terrorist threats. This paper describes the limitations to current sensors used for nuclear weapon detection and discusses a novel approach to nuclear weapon detection using a combination of directional information (imaging) and gamma ray energy (color) to produce a gamma ray color camera.

Canavan, G.H.

1997-09-01T23:59:59.000Z

92

Nuclear Weapon Surety Interface with the Department of Defense  

Broader source: Directives, Delegations, and Requirements [Office of Management (MA)]

This Order establishes Department of Energy and National Nuclear Security Administration requirements and responsibilities for addressing joint nuclear weapon and nuclear weapon system surety activities in conjunction with the Department of Defense. Cancels DOE O 452.6.

2009-05-14T23:59:59.000Z

93

President Obama Calls for an End to Nuclear Weapons | National Nuclear  

National Nuclear Security Administration (NNSA)

Calls for an End to Nuclear Weapons | National Nuclear Calls for an End to Nuclear Weapons | National Nuclear Security Administration Our Mission Managing the Stockpile Preventing Proliferation Powering the Nuclear Navy Emergency Response Recapitalizing Our Infrastructure Continuing Management Reform Countering Nuclear Terrorism About Us Our Programs Our History Who We Are Our Leadership Our Locations Budget Our Operations Media Room Congressional Testimony Fact Sheets Newsletters Press Releases Speeches Events Social Media Video Gallery Photo Gallery NNSA Archive Federal Employment Apply for Our Jobs Our Jobs Working at NNSA Blog Home > About Us > Our History > NNSA Timeline > President Obama Calls for an End to ... President Obama Calls for an End to Nuclear Weapons April 05, 2009 Prague, Czech Republic President Obama Calls for an End to Nuclear Weapons

94

Security and Control of Nuclear Explosives and Nuclear Weapons  

Broader source: Directives, Delegations, and Requirements [Office of Management (MA)]

This directive establishes requirements and responsibilities to prevent the deliberate unauthorized use of U.S. nuclear explosives and U.S. nuclear weapons. Cancels DOE O 452.4.

2001-12-17T23:59:59.000Z

95

E-Print Network 3.0 - atmospheric nuclear weapon Sample Search...  

Broader source: All U.S. Department of Energy (DOE) Office Webpages (Extended Search)

weapon Search Powered by Explorit Topic List Advanced Search Sample search results for: atmospheric nuclear weapon...

96

E-Print Network 3.0 - atmospheric nuclear weapons Sample Search...  

Broader source: All U.S. Department of Energy (DOE) Office Webpages (Extended Search)

weapons Search Powered by Explorit Topic List Advanced Search Sample search results for: atmospheric nuclear weapons...

97

Management of the Department of Energy Nuclear Weapons Complex  

Broader source: Directives, Delegations, and Requirements [Office of Management (MA)]

The Order defines and affirms the authorities and responsibilities of the National Nuclear Security Administration (NNSA) for the management of the Department of Energy Nuclear Weapons Complex and emphasizes that the management of the United States nuclear weapons stockpile is the DOE's highest priority for the NNSA and the DOE Nuclear Weapons Complex. Cancels DOE O 5600.1.

2005-06-08T23:59:59.000Z

98

A thousand suns : political motivations for nuclear weapons testing .  

E-Print Network [OSTI]

??Nuclear weapon testing is the final step in the nuclear development process, an announcement of ability and strength. The consequences of a nuclear test are… (more)

Raas, Whitney

2006-01-01T23:59:59.000Z

99

U.S. Department of Energy, Defense Programs, activities to support the safe, secure dismantlement of nuclear weapons in the Former Soviet Union  

SciTech Connect (OSTI)

In September 1991 President Bush announced sweeping cuts in the US nuclear weapon stockpile as well as changes in deployment to remove significant numbers of weapons from alert status and to return to the US for storage many weapons formerly based abroad in US sites. In October 1991 President Gorbachev announced similar moves for the Soviet Union. Even though the Gorbachev announcement represented a substantial step forward in reducing tension between the US and the Soviet Union, the US continued to be concerned about the deteriorating situation in the Soviet Union and the prospects for internal stability. As a result, in November 1991 the Administration began talks with the Soviets in a number of areas including field disablement of nuclear weapons to prevent unauthorized use, emergency response in the event of a weapons accident, and command and control of nuclear weapons. The Nunn-Lugar legislation assured assistance to the Soviet Union in the safe, secure dismantlement (SSD) of weapons to implement the Gorbachev commitment and in the development of measures to prevent the proliferation of weapons of mass destruction. The Department of Energy (DOE) is supporting and collaborating with the Department of Defense (DOD) in several areas due to the DOE responsibilities for developing, assembling, and dismantling US warheads and as the custodian of the nuclear materials stockpile. Russia, as the successor state to the Soviet Union, controls the nuclear weapons of the Former Soviet Union. Thus, DOE`s nuclear weapon and nuclear materials expertise are being applied particularly to Russia. However, the DOE is also providing assistance to Belarus and is prepared to assist Ukraine and Kazakhstan as well if agreements can be reached. In this paper, the DOE SSD activities in support of DOD as the US Executive Agent will be discussed. Two areas will not be covered, namely, DOD activities and the purchase of highly enriched uranium.

Turner, J.

1993-12-31T23:59:59.000Z

100

The monitoring and verification of nuclear weapons  

SciTech Connect (OSTI)

This paper partially reviews and updates the potential for monitoring and verification of nuclear weapons, including verification of their destruction. Cooperative monitoring with templates of the gamma-ray spectrum are an important tool, dependent on the use of information barriers.

Garwin, Richard L., E-mail: RLG2@us.ibm.com [IBM Fellow Emeritus, IBM Thomas J. Watson Research Center, P.O. Box 218, Yorktown Heights, NY 10598 (United States)

2014-05-09T23:59:59.000Z

Note: This page contains sample records for the topic "nuclear weapons program" from the National Library of EnergyBeta (NLEBeta).
While these samples are representative of the content of NLEBeta,
they are not comprehensive nor are they the most current set.
We encourage you to perform a real-time search of NLEBeta
to obtain the most current and comprehensive results.


101

Sandia completes major overhaul of key nuclear weapons test facilities...  

National Nuclear Security Administration (NNSA)

completes major overhaul of key nuclear weapons test facilities | National Nuclear Security Administration People Mission Managing the Stockpile Preventing Proliferation Powering...

102

Clinton Extends Moratorium on Nuclear Weapons Testing | National...  

National Nuclear Security Administration (NNSA)

Clinton Extends Moratorium on Nuclear Weapons Testing | National Nuclear Security Administration Facebook Twitter Youtube Flickr RSS People Mission Managing the Stockpile...

103

The IAEA: Neutralizing Iraq's nuclear weapons potential  

SciTech Connect (OSTI)

With support from UNSCOM and staff members from several countries, the IAEA has succeeded in identifying and destroying most of Iraq's nuclear weapons potential. IAEA activities in Iraq have also established a sound basis for long-term monitoring of Iraq. This will involve several procedures and techniques, including the periodic monitoring of Iraq's main bodies of water and unannounced visits of resident inspectors to plants, factories, and research centers.

Zifferero, M.

1993-04-01T23:59:59.000Z

104

The consequences of alternative environmental management goals: A non-linear programming analysis of nuclear weapons legacy clean-up at Oak Ridge National Laboratory  

Science Journals Connector (OSTI)

Prioritization of projects within the U.S. Department of Energy's (DOE) Weapons Complex Clean-up Program, exemplified with data from the Oak Ridge National Laboratory, is quite sensitive to overall goals. Non-...

Donald W. Jones; Kenneth S. Redus…

105

GeoffBrumfiel,Washington Nuclear watchdogs and former weapons  

E-Print Network [OSTI]

GeoffBrumfiel,Washington Nuclear watchdogs and former weapons scientists are taking issue with a proposal to use weapons-grade uranium and plutonium at the US National Ignition Facility.The facility is supposed to help scientists assess the nation's ageing nuclear stockpile without testing the weapons

106

American Economic Association How (Not) to Sell Nuclear Weapons  

E-Print Network [OSTI]

American Economic Association How (Not) to Sell Nuclear Weapons Author(s): Philippe Jehiel, Benny://www.jstor.org #12;How (Not)to Sell NuclearWeapons By PHILIPPEJEHIEL,BENNY MOLDOVANU, AND ENNio STACCHETTI) areinterestedto acquirefis- sionable material, or even complete weapon systems from Ukraine. Russia and the United

Franz, Sven Oliver

107

The US nuclear weapon infrastructure and a stable global nuclear weapon regime  

SciTech Connect (OSTI)

US nuclear weapons capabilities -- extant force structure and nuclear weapons infrastructure as well as declared policy -- influence other nations' nuclear weapons postures, at least to some extent. This influence can be desirable or undesirable, and is, of course, a mixture of both. How strong the influence is, and its nature, are complicated, controversial, and -- in our view -- not well understood but often overstated. Divergent views about this influence and how it might shape the future global nuclear weapons regime seem to us to be the most serious impediment to reaching a national consensus on US weapons policy, force structure and supporting infrastructure. We believe that a paradigm shift to capability-based deterrence and dissuasion is not only consistent with the realities of the world and how it has changed, but also a desirable way for nuclear weapon postures and infrastructures to evolve. The US and other nuclear states could not get to zero nor even reduce nuclear arms and the nuclear profile much further without learning to manage latent capability. This paper has defined three principles for designing NW infrastructure both at the 'next plateau' and 'near zero.' The US can be a leader in reducing weapons and infrastructure and in creating an international regime in which capability gradually substitutes for weapons in being and is transparent. The current 'strategy' of not having policy or a Congressionally-approved plan for transforming the weapons complex is not leadership. If we can conform the US infrastructure to the next plateau and architect it in such a way that it is aligned with further arms reductions, it will have these benefits: The extant stockpile can be reduced in size, while the smaller stockpile still deters attack on the US and Allies. The capabilities of the infrastructure will dissuade emergence of new challenges/threats; if they emerge, nevertheless, the US will be able to deal with them in time. We will begin to transform the way other major powers view their nuclear capability. Finally, and though of less cosmic importance, it will save money in the long run.

Immele, John D [Los Alamos National Laboratory; Wagner, Richard L [Los Alamos National Laboratory

2009-01-01T23:59:59.000Z

108

Principal Associate Director - Weapons Programs  

Broader source: All U.S. Department of Energy (DOE) Office Webpages (Extended Search)

encompasses the activities necessary to assure the stockpile without underground nuclear testing. This mission includes physics and engineering design, small-scale...

109

Nuclear Weapon Surety Interface with the Department of Defense  

Broader source: Directives, Delegations, and Requirements [Office of Management (MA)]

The Order prescribes how the Department of Energy participates with the Department of Defense (DoD) to ensure the surety (safety, security and control) of military nuclear weapon systems deployed around the world. The Order establishes National Nuclear Security Administration requirements and responsibilities for addressing joint nuclear weapon and nuclear weapon system surety activities in conjunction with the DoD. Cancels DOE O 5610.13. Canceled by DOE O 452.6A.

2006-10-19T23:59:59.000Z

110

hspthe harvard sussex program on chemical and biological weapons (CBW)  

E-Print Network [OSTI]

hspthe harvard sussex program on chemical and biological weapons (CBW) Resource Guide of the use of chemical weapons Never to develop, produce, otherwise acquire, stockpile or retain chemical weapons Never to assist, encourage or induce, in any way, anyone to engag To destroy chemical weapons

Sussex, University of

111

Securing NNSA's Nuclear Weapons Complex in a Post-9/11 World | National  

Broader source: All U.S. Department of Energy (DOE) Office Webpages (Extended Search)

Securing NNSA's Nuclear Weapons Complex in a Post-9/11 World | National Securing NNSA's Nuclear Weapons Complex in a Post-9/11 World | National Nuclear Security Administration Our Mission Managing the Stockpile Preventing Proliferation Powering the Nuclear Navy Emergency Response Recapitalizing Our Infrastructure Continuing Management Reform Countering Nuclear Terrorism About Us Our Programs Our History Who We Are Our Leadership Our Locations Budget Our Operations Media Room Congressional Testimony Fact Sheets Newsletters Press Releases Speeches Events Social Media Video Gallery Photo Gallery NNSA Archive Federal Employment Apply for Our Jobs Our Jobs Working at NNSA Blog Home > Media Room > Fact Sheets > Securing NNSA's Nuclear Weapons Complex in a ... Fact Sheet Securing NNSA's Nuclear Weapons Complex in a Post-9/11 World Jan 2, 2009 The National Nuclear Security Administration (NNSA) has several missions

112

Nuclear energy in a nuclear weapon free world  

SciTech Connect (OSTI)

The prospect of a nuclear renaissance has revived a decades old debate over the proliferation and terrorism risks of the use of nuclear power. This debate in the last few years has taken on an added dimension with renewed attention to disarmament. Increasingly, concerns that proliferation risks may reduce the prospects for realizing the vision of a nuclear-weapon-free world are being voiced.

Pilat, Joseph [Los Alamos National Laboratory

2009-01-01T23:59:59.000Z

113

EIS-0218: Proposed Nuclear Weapons Nonproliferation Policy Concerning  

Broader source: Energy.gov (indexed) [DOE]

18: Proposed Nuclear Weapons Nonproliferation Policy 18: Proposed Nuclear Weapons Nonproliferation Policy Concerning Foreign Research Reactor Spent Nuclear Fuel EIS-0218: Proposed Nuclear Weapons Nonproliferation Policy Concerning Foreign Research Reactor Spent Nuclear Fuel SUMMARY This study analyzes the potential environmental impacts of adopting a policy to manage foreign research reactor spent nuclear fuel containing uranium enriched in the United States. In particular, the study examines the comparative impacts of several alternative approaches to managing the spent fuel. The analysis demonstrates that the impacts on the environmental, workers and the general public of implementing any of the alternative management approaches would be small and within applicable Federal and state regulator limits. PUBLIC COMMENT OPPORTUNITIES

114

Constraining potential nuclear-weapons proliferation from civilian reactors  

SciTech Connect (OSTI)

Cessation of the Cold War and renewed international attention to the proliferation of weapons of mass destruction are leading to national policies aimed at restraining nuclear-weapons proliferation that could occur through the nuclear-fuel cycle. Argonne, which has unique experience, technology, and capabilities, is one of the US national laboratories contributing to this nonproliferation effort.

Travelli, A.; Gaines, L.L.; Minkov, V.; Olson, A.P.; Snelgrove, J.

1993-11-01T23:59:59.000Z

115

Y-12, the Cold War, and nuclear weapons dismantlement ? Or:...  

Broader source: All U.S. Department of Energy (DOE) Office Webpages (Extended Search)

a huge mission for Y-12 bringing about substantial growth and continued to do so until nuclear testing ended in 1992. The United States tested nuclear weapons from July 16, 1945...

116

2002-2003 Engineering Accomplishments: Unconventional Nuclear Weapons Detection  

SciTech Connect (OSTI)

The Defense Threat Reduction Agency, DTRA, is a federal agency charged with safeguarding the nation from weapons of mass destruction, in particular nuclear weapons such as crude devices, and radiological dispersal devices (RDD), also known as dirty bombs. Both of which could be delivered using unconventional means such as by transporting them by a car or boat. Two years ago DTRA partnered with NNSA to evaluate commercially available technologies that could be deployed quickly to defend against threats posed by unconventional nuclear weapons under a program called the Unconventional Nuclear Warfare Defense (UNWD) Program. Lawrence Livermore National Laboratory (LLNL) was one of several National laboratories that participated in this program, which consisted in developing, deploying, and demonstrating detection systems suitable for military base protection. Two key contributions to this program by the LLNL team were the development of two Radiation Detection Buoys (RDB) deployed at Naval Base in Kings Bay in Georgia, and the Detection and Tracking System (DTS) demonstrated at Fort Leonard Wood Missouri, headquarters for the Total Force's Maneuver Support Center (MANSCEN). The RDB's were designed to detect the potential transportation of an unconventional nuclear or radiological weapon by a boat. The RDB's consisted of two commercial marine buoys instrumented with several types of detectors sensitive to gamma rays and neutrons, two key modes of energy emitted by radioactive materials. The engineering team selected a standard marine buoy as the overall system platform for this deployment since buoys are already designed to sustain the harsh marine environment, and also for their covertness, since once deployed, they look just like any other buoy on the water. Since this was the first time such a system was ever deployed, the team choose to instrument the buoys with a suite of different types of detectors with the goal to learn which detectors would be best suited for future deployments of this kind. This goal has now being achieved, and through a combination of computer modeling and experimental data, the team has gain the necessary knowledge to better understand the capabilities and limitations of RDB's, and the tradeoffs involve in the selection of the different detectors. The two LLNL RDB's are currently operational at Kings Bay, and the team is looking forward to another opportunity to design the next generation RDB's.

Hernandez, J E; Valentine, J

2004-04-09T23:59:59.000Z

117

Nuclear-weapon-free zones: Coming of age  

SciTech Connect (OSTI)

Nuclear-weapon-free-zone agreements present a potentially effective option to supplement international efforts to prevent the proliferation of nuclear weapons and roll back proliferation where it has already occurred. NWFZs can also be used to create mutually binding obligations that go beyond the current obligations under the NPT, without risking the potentially disastrous consequences of an amendment debate at the 1995 NPT Review and Extension Conference. The negotiations leading toward regional agreements could also contribute significantly toward reducing tensions and building confidence. In pursuing its national goal of preventing nuclear proliferation, the US should give greater priority and support to nuclear-weapon-free-zones.

Wolfsthal, J.B.

1993-03-01T23:59:59.000Z

118

The future of the Non-Proliferation Treaty and U.S. nuclear weapons policy .  

E-Print Network [OSTI]

??This thesis addresses the viability of the Treaty on the Non-Proliferation of Nuclear Weapons – NPT for short – in light of U.S. nuclear weapons… (more)

Claussen, Bjørn Ragnar

2008-01-01T23:59:59.000Z

119

Notice of Intent to Revise DOE O 452.1D, Nuclear Explosive and Weapon Surety Program  

Broader source: Directives, Delegations, and Requirements [Office of Management (MA)]

NNSA is proposing revisions for the suite of directives in order to (1) revise requirements to improve NES processes and (2) align the directives with the requirements of DOE Order 251.1C, Departmental Directives Program.

2014-06-05T23:59:59.000Z

120

Stability of nuclear forces versus weapons of mass destruction  

SciTech Connect (OSTI)

The model derived for nuclear missile exchanges is used to describe the interaction between two forces, of which one has nuclear weapons and the other has weapons of mass destruction (WMD). The model equations are solved analytically for exchanges, costs, and stability indices by analytically minimizing the cost of first strikes. The analysis is restricted to theater operations, as WMD are inferior to nuclear weapons in strategic counter force operations, but quite adequate for theater operations against exposed forces. The analysis treats only in-theater forces as companion papers show that ex-theater forces, which enter as survivable forces, cancel out of the theater balances treated here. Optimal nuclear weapon and WMD allocations are proportional to the opponent`s carriers and inversely proportional to one`s own weapons. Thus, as WMD increase, WMD allocations to nuclear forces fall, reflecting a shift from damage limiting to inflicting damage with surviving forces. Nuclear weapon kill probabilities degrade rapidly against dispersed forces. As they fall, their allocation to WMD falls sharply as they become ineffective and are reallocated to value. Thus, damage limiting is primarily effective for undispersed forces, which produces an incentive for the nuclear side to use his weapons while they are still effective.

Canavan, G.H.

1997-12-01T23:59:59.000Z

Note: This page contains sample records for the topic "nuclear weapons program" from the National Library of EnergyBeta (NLEBeta).
While these samples are representative of the content of NLEBeta,
they are not comprehensive nor are they the most current set.
We encourage you to perform a real-time search of NLEBeta
to obtain the most current and comprehensive results.


121

Transparency in nuclear arms: Toward a nuclear weapons register  

SciTech Connect (OSTI)

In his press conference to present a {open_quotes}10-point non-proliferation initiative{close_quotes} last December, German Foreign Minister Klaus Kinkel included a proposal calling for an international register for nuclear weapons, analogous to the UN Conventional Arms Register. When German diplomats explained the initiative to their allies in London, Paris and Washington, they were sharply rebuffed. Apparently the three nuclear-weapon states were strongly opposed to the idea and therefore discouraged Germany from pursuing it further in the Conference on Disarmament (CD) in Geneva, where the ad hoc group on transparency in armaments would be an appropriate forum for further discussion. Faced with these cold responses, German diplomats shelved the idea for the time being and concentrated on initiatives that promised better chances for agreement, such as the comprehensive test ban (CTB) treaty currently under discussion, a fissile material cutoff agreement and an international plutonium management regime.

Mueller, H. [Peace Research Institute, Frankfurt (Germany)

1994-10-01T23:59:59.000Z

122

Fourth Generation Nuclear Weapons: Military effectiveness and collateral effects  

E-Print Network [OSTI]

The paper begins with a general introduction and update to Fourth Generation Nuclear Weapons (FGNW), and then addresses some particularly important military aspects on which there has been only limited public discussion so far. These aspects concern the unique military characteristics of FGNWs which make them radically different from both nuclear weapons based on previous-generation nuclear-explosives and from conventional weapons based on chemical-explosives: yields in the 1 to 100 tons range, greatly enhanced coupling to targets, possibility to drive powerful shaped charged jets and forged fragments, enhanced prompt radiation effects, reduced collateral damage and residual radioactivity, etc.

Gsponer, A

2005-01-01T23:59:59.000Z

123

A nuclear-weapon-free world: Desirable? Feasible?  

SciTech Connect (OSTI)

The authors seeks answers to two key questions: Is an nuclear-weapons-free-world (NWFW) desirable, and is it feasible? Organized into six parts, the book begins with a historical review of attempts to abolish nuclear weapons. Five subsequent parts address the desirability of an NWFW, its feasibility, alternative routes to this goal, and intermediate steps to this end. The authors deals with many obstacles and difficulties facing those who wish to progress from today`s world of 50,000 or more nuclear weapons to one where none exist and strong international verification assures that no rogue state will resurrect these dread devices.

Rotblat, J.; Steinberger, J.; Udgaonkar, B. [eds.

1993-12-31T23:59:59.000Z

124

Tiny device can detect hidden nuclear weapons, materials  

Broader source: All U.S. Department of Energy (DOE) Office Webpages (Extended Search)

Tiny Tiny device can detect hidden nuclear weapons, materials Director's Welcome Organization Achievements Highlights Fact Sheets, Brochures & Other Documents Multimedia Library About Nuclear Energy Nuclear Reactors Designed by Argonne Argonne's Nuclear Science and Technology Legacy Opportunities within NE Division Visit Argonne Work with Argonne Contact us For Employees Site Map Help Join us on Facebook Follow us on Twitter NE on Flickr Celebrating the 70th Anniversary of Chicago Pile 1 (CP-1) Argonne OutLoud on Nuclear Energy Argonne Energy Showcase 2012 Highlights Bookmark and Share Tiny device can detect hidden nuclear weapons, materials This tiny wafer can detect hidden nuclear weapons and materials NUCLEAR DETECTOR -- This small wafer could become the key component in

125

Briefing, Classification of Nuclear Weapons-Related Information- June 2014  

Broader source: Energy.gov [DOE]

This brief will familiarize individuals from agencies outside of DOE who may come in contact with RD and FRD with the procedures for identifying, classifying, marking, handling, and declassifying documents containing Nuclear Weapons-Related Information.

126

The role of nuclear weapons in the year 2000  

SciTech Connect (OSTI)

This publication presents the proceedings for the workshop, The Role of Nuclear Weapons in the Year 2000, held on October 22--24, 1990. The workshop participants considered the changing nature of deterrence and of our strategic relationship with the Soviet Union, the impact of nuclear proliferation on regional conflicts, and ways that the nuclear forces might be restructured to reflect new political circumstances.

Not Available

1990-01-01T23:59:59.000Z

127

National Certification Methodology for the Nuclear Weapons Stockpile  

SciTech Connect (OSTI)

Lawrence Livermore and Los Alamos National Laboratories have developed a common framework and key elements of a national certification methodology called Quantification of Margins and Uncertainties (QMU). A spectrum from senior managers to weapons designers has been engaged in this activity at the two laboratories for on the order of a year to codify this methodology in an overarching and integrated paper. Following is the certification paper that has evolved. In the process of writing this paper, an important outcome has been the realization that a joint Livermore/Los Alamos workshop on QMU, focusing on clearly identifying and quantifying differences between approaches between the two labs plus developing an even stronger technical foundation on methodology, will be valuable. Later in FY03, such a joint laboratory workshop will be held. One of the outcomes of this workshop will be a new version of this certification paper. A comprehensive approach to certification must include specification of problem scope, development of system baseline models, formulation of standards of performance assessment, and effective procedures for peer review and documentation. This document concentrates on the assessment and peer review aspects of the problem. In addressing these points, a central role is played by a 'watch list' for weapons derived from credible failure modes and performance gate analyses. The watch list must reflect our best assessment of factors that are critical to weapons performance. High fidelity experiments and calculations as well as full exploitation of archival test data are essential to this process. Peer review, advisory groups and red teams play an important role in confirming the validity of the watch list. The framework for certification developed by the Laboratories has many basic features in common, but some significant differences in the detailed technical implementation of the overall methodology remain. Joint certification workshops held in June and December of 2001 and continued in 2002 have proven useful in developing the methodology, and future workshops should prove useful in further refining this framework. Each laboratory developed an approach to certification with some differences in detailed implementation. The general methodology introduces specific quantitative indicators for assessing confidence in our nuclear weapon stockpile. The quantitative indicators are based upon performance margins for key operating characteristics and components of the system, and these are compared to uncertainties in these factors. These criteria can be summarized in a quantitative metric (for each such characteristic) expressed as: (i.e., confidence in warhead performance depends upon CR significantly exceeding unity for all these characteristics). These Confidence Ratios are proposed as a basis for guiding technical and programmatic decisions on stockpile actions. This methodology already has been deployed in certifying weapons undergoing current life extension programs or component remanufacture. The overall approach is an adaptation of standard engineering practice and lends itself to rigorous, quantitative, and explicit criteria for judging the robustness of weapon system and component performance at a detailed level. There are, of course, a number of approaches for assessing these Confidence Ratios. The general certification methodology was publicly presented for the first time to a meeting of Strategic Command SAG in January 2002 and met with general approval. At that meeting, the Laboratories committed to further refine and develop the methodology through the implementation process. This paper reflects the refinement and additional development to date. There will be even further refinement at a joint laboratory workshop later in FY03. A common certification methodology enables us to engage in peer reviews and evaluate nuclear weapon systems on the basis of explicit and objective metrics. The clarity provided by such metrics enables each laboratory and our common customers to understand the meaning and logic

Goodwin, B T; Juzaitis, R J

2006-08-07T23:59:59.000Z

128

Charles McMillan to lead Los Alamos National Laboratory's Weapons Program  

Broader source: All U.S. Department of Energy (DOE) Office Webpages (Extended Search)

McMillan to Lead Weapons Program McMillan to Lead Weapons Program Charles McMillan to lead Los Alamos National Laboratory's Weapons Program He will provide oversight and direction for the nuclear weapons program at Los Alamos to accomplish the Laboratory's core mission. July 28, 2009 Los Alamos National Laboratory sits on top of a once-remote mesa in northern New Mexico with the Jemez mountains as a backdrop to research and innovation covering multi-disciplines from bioscience, sustainable energy sources, to plasma physics and new materials. Los Alamos National Laboratory sits on top of a once-remote mesa in northern New Mexico with the Jemez mountains as a backdrop to research and innovation covering multi-disciplines from bioscience, sustainable energy sources, to plasma physics and new materials.

129

The politics of verification: Limiting the testing of nuclear weapons  

SciTech Connect (OSTI)

From 1982 to 1990, the United States and the Soviet Union renegotiated verification arrangements for two unratified arms control agreements that had nevertheless been observed since 1977: the Threshold Test Ban Treaty and the Peaceful Nuclear Explosions Treaty. The negotiations yielded new verification procedures, changed attitudes regarding Soviet compliance, and established useful precedents for further restrictions on nuclear testing. The negotiations also demonstrated how technical arguments can be misused to promote a particular political agenda-in this case, the continued testing of nuclear weapons. By misrepresenting the uncertainties in US monitoring procedures, and then falsely characterizing these uncertainties as a fatal flaw of seismic verification techniques, opponents of a nuclear test ban clouded the sensitive issue of verification enough to delay progress towards a complete ban on nuclear weapons testing. The primary obstacle to further restrictions on nuclear testing was not the feasibility of adequate verification, but rather the unwillingness of several US administrations to address the real question of whether the United States and other nuclear weapon states should, in the interest of global nuclear nonproliferation, end the development of new nuclear weapons designs that require confirmation by underground nuclear tests. 51 refs., 6 figs.

Vink, G.E. van der (IRIS Consortion on Seismology, Arlington, VA (United States)); Paine, C.E. (Natural Reources Defense Council, Washington, DC (United States))

1993-01-01T23:59:59.000Z

130

Solid Phase Microextraction for the Analysis of Nuclear Weapons  

SciTech Connect (OSTI)

This document is a compendium of answers to commonly asked questions about solid phase microextraction as it relates to the analysis of nuclear weapons. We have also included a glossary of terms associated with this analytical method as well as pertinent weapons engineering terminology. Microextraction is a new collection technique being developed to nonintrusively sample chemicals from weapon headspace gases for subsequent analysis. The chemicals that are being targeted outgas from the high explosives and other organic materials used in the weapon assembly. This technique is therefore a valuable tool to: (1) remotely detect and assess the aging of Lawrence Livermore National Laboratory (LLNL) and, in some cases, Sandia National Laboratory (SNL) organic materials; and (2) identify potential compatibility issues (i.e., materials interactions) that should be more carefully monitored during surveillance tear-downs. Microextraction is particularly attractive because of the practical constraints inherent to the weapon surveillance procedure. To remain transparent to other core surveillance activities and fall within nuclear safety guidelines, headspace analysis of the weapons requires a procedure that: (1) maintains ambient temperature conditions; (2) allows practical collection times of less than 20 min; (3) maintains the integrity of the weapon gas volume; (4) provides reproducible and quantitative results; and (5) can identify all possible targets.

Chambers, D M

2001-06-01T23:59:59.000Z

131

The future of nuclear weapons: Proliferation in South Asia  

SciTech Connect (OSTI)

The signing of the Intermediate-Range Nuclear Forces (INF) Treaty in December 1987, followed by the dramatic changes in East-West relations since 1989 and the more recent Soviet-American strategic arms limitation agreement, have greatly eased public concerns about the danger of nuclear war. The context has also changed for the Nonaligned Movement, which had made nuclear disarmament and condemnation of the concept of nuclear deterrence the primary themes of its multilateral disarmament diplomacy. More important would be the interrelationship among the states possessing nuclear weapons (Russia, Ukraine, Belarus, and Kazakhstan). In any case, there is little risk of a revival of nuclear competition. Both France and China have decided to sign the Treaty on the Nonproliferation of Nuclear Weapons (NPT); they are the only two nuclear-weapon states that have stayed outside the regime. Meanwhile, Brazil and Argentina have moved further down the nonproliferation road by engaging in confidence-building measures and moving closer to joining the Latin American nuclear-weapons-free zone established under the Treaty of Tlatelolco in 1967. South Africa has also agreed to embrace the NPT as well as a nuclear-weapons-free zone regime for the entire African continent, while North Korea has agreed to sign a safeguard agreement with the International Atomic Energy Agency (IAEA), thereby allowing in principle international inspection of its nuclear facilities. In the third world regions, the dangers of nuclear proliferation and competitive nuclear buildup are most pronounced in South Asia, a region where a variety of complicating problems exist: acute threat perceptions, historical emity, religious and sectarian animosity, ethnic antagonism, territorial disputes, ambitions for regional dominance, and domestic political instability. This chapter will focus primarily on South Asia, although references will also be made to other regions, where relevant. 17 refs.

Kamal, N. [Institute of Strategic Studies, Islamabada (Pakistan)

1992-12-31T23:59:59.000Z

132

The unique signal concept for detonation safety in nuclear weapons  

SciTech Connect (OSTI)

The purpose of a unique signal (UQS) in a nuclear weapon system is to provide an unambiguous communication of intent to detonate from the UQS information input source device to a stronglink safety device in the weapon in a manner that is highly unlikely to be duplicated or simulated in normal environments and in a broad range of ill-defined abnormal environments. This report presents safety considerations for the design and implementation of UQSs in the context of the overall safety system.

Spray, S.D.; Cooper, J.A.

1993-06-01T23:59:59.000Z

133

DRAFT - DOE O 452.2C, Security and Use Control of Nuclear Explosives and Nuclear Weapons  

Broader source: Directives, Delegations, and Requirements [Office of Management (MA)]

The Order establishes requirements to implement the nuclear explosive security and use control (UC) elements of DOE O 452.1D, Nuclear Explosive and Weapon Surety (NEWS) Program, to ensure authorized use, when directed by proper authority, and protect against deliberate unauthorized acts (DUAs), deliberate unauthorized use (DUU), and denial of authorized use (DAU).

134

Gamma-ray identification of nuclear weapon materials  

SciTech Connect (OSTI)

There has been an accelerating national interest in countering nuclear smuggling. This has caused a corresponding expansion of interest in the use of gamma-ray spectrometers for checkpoint monitoring, nuclear search, and within networks of nuclear and collateral sensors. All of these are fieldable instruments--ranging from large, fixed portal monitors to hand-held and remote monitoring equipment. For operational reasons, detectors with widely varying energy resolution and detection efficiency will be employed. In many instances, such instruments must be sensitive to weak signals, always capable of recognizing the gamma-ray signatures from nuclear weapons materials (NWM), often largely insensitive to spectral alteration by radiation transport through intervening materials, capable of real-time implementation, and able to discriminate against signals from commonly encountered legitimate gamma-ray sources, such as radiopharmaceuticals. Several decades of experience in classified programs have shown that all of these properties are not easily achieved and successful approaches were of limited scope--such as the detection of plutonium only. This project was originally planned as a two-year LDRD-ER. Since funding for 1997 was not sustained, this is a report of the first year's progress.

Gosnell, T. B., LLNL; Hall, J. M.; Jam, C. L.; Knapp, D. A.; Koenig, Z. M.; Luke, S. J.; Pohl, B. A.; Schach von Wittenau, A.; Wolford, J. K.

1997-02-03T23:59:59.000Z

135

Fixed denial system for access control of nuclear weapons  

SciTech Connect (OSTI)

The Fixed Denial System (FDS) is a simple, low cost, vertical, underground silo used to store individual nuclear weapons within secured areas of present storage sites. The normal storage position of each weapon is at or near the top of the shaft, allowing rapid operational weapon access and removal. In response to a threat, the weapon within a storage canister can be dropped to the bottom of the shaft where it is automatically locked in place. Once the alert condition is resolved and control of the site reestablished, the weapon canister is unlocked with a coded signal and retrieved. This system offers a high degree of hardening and access denial that is characteristic of Vertical Underground Storage (VUGS) systems. An aboveground test apparatus was constructed to demonstrate the feasibility of using a pneumatic air cushion, which is generated by the free-fall of the weapon container, to control impact velocity and descent time. Stockpile weapons that might be stored in the FDS include the W33, W48, W79, and the W54 ADM.

Willan, V.O.; Gustafson, E.C.

1981-12-01T23:59:59.000Z

136

Nuclear dependence| The Russian Federation's future reliance on nuclear weapons for national security.  

E-Print Network [OSTI]

?? The Russian Federation's reliance on nuclear weapons for national security will steadily increase over time. Based on current evidence and historical data, the Russian… (more)

Lukszo, Adam J.

2011-01-01T23:59:59.000Z

137

NIF system-design requirements for nuclear-weapons physics experiments  

SciTech Connect (OSTI)

One of the objectives of the National Ignition Facility (NIF) is to provide an aboveground experimental capability for conducting weapons-physics experiments, for maintaining nuclear competence. To achieve the high-energy-density regimes needed for a science-based stockpile stewardship program, NIF must produce conditions similar to those in nuclear weapon explosions. This imposes fundamental facility design requirements on NIF. This document summarizes those requirements for opacity, radiation-flow, equation-of-state, non-LTE and x-ray laser, hydrodynamic, and capsule-implosion experiments.

Perry, T.S. [ed.] [Lawrence Livermore National Lab., CA (United States); Wilde, B.H. [ed.] [Los Alamos National Lab., NM (United States)

1995-04-01T23:59:59.000Z

138

The Association between Cancers and Low Level Radiation: an evaluation of the epidemiological evidence at the Hanford Nuclear Weapons Facility  

E-Print Network [OSTI]

and Rocky Flats Nuclear Weapons Plant. Rad Res 1989;120:19-at the Hanford Nuclear Weapons Facility MASTER DISTRIBUTIONAT T H E HANFORD NUCLEAR WEAPONS FACILITY JULIE BRITTON

Britton, Julie

2010-01-01T23:59:59.000Z

139

E-Print Network 3.0 - america nuclear weapons Sample Search Results  

Broader source: All U.S. Department of Energy (DOE) Office Webpages (Extended Search)

nuclear weapons Search Powered by Explorit Topic List Advanced Search Sample search results for: america nuclear weapons Page: << < 1 2 3 4 5 > >> 1 First strike Sixty years ago,...

140

Development of glass vitrification at SRL as a waste treatment technique for nuclear weapon components  

SciTech Connect (OSTI)

This report discusses the development of vitrification for the waste treatment of nuclear weapons components at the Savannah River Site. Preliminary testing of surrogate nuclear weapon electronic waste shows that glass vitrification is a viable, robust treatment method.

Coleman, J.T.; Bickford, D.F.

1991-01-01T23:59:59.000Z

Note: This page contains sample records for the topic "nuclear weapons program" from the National Library of EnergyBeta (NLEBeta).
While these samples are representative of the content of NLEBeta,
they are not comprehensive nor are they the most current set.
We encourage you to perform a real-time search of NLEBeta
to obtain the most current and comprehensive results.


141

The B61-based "Robust Nuclear Earth Penetrator:" Clever retrofit or headway towards fourth-generation nuclear weapons?  

E-Print Network [OSTI]

It is scientifically and technically possible to build an earth penetrating device that could bury a B61-7 warhead 30 meters into concrete, or 150 meters into earth, before detonating it. The device (based on knowledge and technology that is available since 50 years) would however by large and cumbersome. Better penetrator materials, components able to withstand larger stresses, higher impact velocities, and/or high-explosive driven penetration aids, can only marginally improve the device. It is conclude that the robust nuclear earth penetrator (RNEP) program may be as much motivated by the development of new technology directly applicable to next generation nuclear weapons, and by the political necessity to periodically reasses the role and utility of nuclear weapons, then by the perceived military need of a weapon able to destroy deeply buried targets.

Gsponer, A

2005-01-01T23:59:59.000Z

142

Reassessing U.S. nuclear weapons policy Harold Brown[1] and John Deutch[2  

E-Print Network [OSTI]

1 Reassessing U.S. nuclear weapons policy Harold Brown[1] and John Deutch[2] The end of the Cold policy objectives and risks compromising the value that nuclear weapons continue to make through. A declaratory U.S. policy of moving to eliminate nuclear weapons in a distant future will have no direct effect

Deutch, John

143

Waste component recycle, treatment, and disposal integrated demonstration (WeDID) nuclear weapon dismantlement activities  

SciTech Connect (OSTI)

One of the drivers in the dismantlement and disposal of nuclear weapon components is Envirorunental Protection Agency (EPA) guidelines. The primary regulatory driver for these components is the Resource Conservation Recovery Act (RCRA). Nuclear weapon components are heterogeneous and contain a number of hazardous materials including heavy metals, PCB`S, selfcontained explosives, radioactive materials, gas-filled tubes, etc. The Waste Component Recycle, Treatment, Disposal and Integrated Demonstration (WeDID) is a Department of Energy (DOE) Environmental Restoration and Waste Management (ERWM) sponsored program. It also supports DOE Defense Program (DP) dismantlement activities. The goal of WeDID is to demonstrate the end-to-end disposal process for Sandia National Laboratories designed nuclear weapon components. One of the primary objectives of WeDID is to develop and demonstrate advanced system treatment technologies that will allow DOE to continue dismantlement and disposal unhindered even as environmental regulations become more stringent. WeDID is also demonstrating waste minimization techniques by recycling a significant weight percentage of the bulk/precious metals found in weapon components and by destroying the organic materials typically found in these components. WeDID is concentrating on demonstrating technologies that are regulatory compliant, are cost effective, technologically robust, and are near-term to ensure the support of DOE dismantlement time lines. The waste minimization technologies being demonstrated by WeDID are cross cutting and should be able to support a number of ERWM programs.

Wheelis, W.T.

1993-04-12T23:59:59.000Z

144

Waste component recycle, treatment, and disposal integrated demonstration (WeDID) nuclear weapon dismantlement activities  

SciTech Connect (OSTI)

One of the drivers in the dismantlement and disposal of nuclear weapon components is Envirorunental Protection Agency (EPA) guidelines. The primary regulatory driver for these components is the Resource Conservation Recovery Act (RCRA). Nuclear weapon components are heterogeneous and contain a number of hazardous materials including heavy metals, PCB'S, selfcontained explosives, radioactive materials, gas-filled tubes, etc. The Waste Component Recycle, Treatment, Disposal and Integrated Demonstration (WeDID) is a Department of Energy (DOE) Environmental Restoration and Waste Management (ERWM) sponsored program. It also supports DOE Defense Program (DP) dismantlement activities. The goal of WeDID is to demonstrate the end-to-end disposal process for Sandia National Laboratories designed nuclear weapon components. One of the primary objectives of WeDID is to develop and demonstrate advanced system treatment technologies that will allow DOE to continue dismantlement and disposal unhindered even as environmental regulations become more stringent. WeDID is also demonstrating waste minimization techniques by recycling a significant weight percentage of the bulk/precious metals found in weapon components and by destroying the organic materials typically found in these components. WeDID is concentrating on demonstrating technologies that are regulatory compliant, are cost effective, technologically robust, and are near-term to ensure the support of DOE dismantlement time lines. The waste minimization technologies being demonstrated by WeDID are cross cutting and should be able to support a number of ERWM programs.

Wheelis, W.T.

1993-04-12T23:59:59.000Z

145

Out of (South) Africa: Pretoria`s nuclear weapons experience. Final report  

SciTech Connect (OSTI)

The primary focus of this paper is the impact of key South African leaders on the successful developments and subsequent rollbacks of South Africa`s nuclear weapons capability. It highlights the key milestones in the development of South Africa`s nuclear weapon capability. It also relates how different groups within South Africa (scientists, politicians, military and technocrats) interacted to successfully produce South Africa`s nuclear deterrent. It emphasizes the pivotal influence of the senior political leadership to pursue nuclear rollback given the disadvantages of its nuclear means to achieve vital national interests. The conclusions drawn from flu`s effort are the South African nuclear program was an extreme response to its own identity Crisis. Nuclear weapons became a means to achieving a long term end of a closer affiliation with the West. A South Africa yearning to be identified as a Western nation and receive guarantees of its security rationalized the need for a nuclear deterrent. The deterrent was intended to draw in Western support to counter a feared total onslaught by Communist forces in the region. Two decades later, that same South Africa relinquished its nuclear deterrent and reformed its domestic policies to secure improved economic and political integration with the West.

Horton, R.E.

1998-04-01T23:59:59.000Z

146

Los Alamos National Laboratory names new head of weapons programs  

Broader source: All U.S. Department of Energy (DOE) Office Webpages (Extended Search)

Laboratory names new head of weapons programs Laboratory names new head of weapons programs Los Alamos National Laboratory names new head of weapons programs Bret Knapp has been acting in that position since June 2011. December 1, 2011 Los Alamos National Laboratory sits on top of a once-remote mesa in northern New Mexico with the Jemez mountains as a backdrop to research and innovation covering multi-disciplines from bioscience, sustainable energy sources, to plasma physics and new materials. Los Alamos National Laboratory sits on top of a once-remote mesa in northern New Mexico with the Jemez mountains as a backdrop to research and innovation covering multi-disciplines from bioscience, sustainable energy sources, to plasma physics and new materials. Contact Kevin Roark Communications Office (505) 665-9202

147

Source terms for plutonium aerosolization from nuclear weapon accidents  

SciTech Connect (OSTI)

The source term literature was reviewed to estimate aerosolized and respirable release fractions for accidents involving plutonium in high-explosive (HE) detonation and in fuel fires. For HE detonation, all estimates are based on the total amount of Pu. For fuel fires, all estimates are based on the amount of Pu oxidized. I based my estimates for HE detonation primarily upon the results from the Roller Coaster experiment. For hydrocarbon fuel fire oxidation of plutonium, I based lower bound values on laboratory experiments which represent accident scenarios with very little turbulence and updraft of a fire. Expected values for aerosolization were obtained from the Vixen A field tests, which represent a realistic case for modest turbulence and updraft, and for respirable fractions from some laboratory experiments involving large samples of Pu. Upper bound estimates for credible accidents are based on experiments involving combustion of molten plutonium droplets. In May of 1991 the DOE Pilot Safety Study Program established a group of experts to estimate the fractions of plutonium which would be aerosolized and respirable for certain nuclear weapon accident scenarios.

Stephens, D.R.

1995-07-01T23:59:59.000Z

148

Nuclear weapons in Ukraine: Hollow threat, wasting asset  

SciTech Connect (OSTI)

When Ukrainian Prime Minister Leonid Kuchma declared on June 3 at a closed session of the Ukrainian parliament (Rada) that it should ratify START I and the May 1992 Lisbon Protocol, but temporarily retain some of the nuclear weapons on Ukrainian territory, concern increased over Kiev`s delay in carrying out its commitments to become a non-nuclear-weapon state. These continuing delays threaten an arms control process codified in START I and START II with far broader security implications. The delays and constant mixed signals from Kiev can be explained two ways, but a closer examination of each of the alternative security options Ukrainians are discussing shows they are built on false premises and would ultimately be counterproductive to genuine Ukrainian security.

Kincade, W.H.

1993-07-01T23:59:59.000Z

149

Long range planning at former nuclear weapon plants  

SciTech Connect (OSTI)

This paper discusses the approach to planning the cleanup of former nuclear weapon manufacturing plants. The limit of backward planning is the knowledge horizon. Extension of backward planning beyond this horizon is futile. Forward planning is the customary method for planning missions extending beyond that horizon. Planning the future of former plant sites is a political activity by political decision makers. Scientists, professional planners, and public interest groups have an advisory role in this activity.

Vrouwes, J.H. [EG & G Rocky Flats, Inc., Golden, CO (United States)

1994-12-31T23:59:59.000Z

150

Use of commercial manipulator to handle a nuclear weapon component  

SciTech Connect (OSTI)

Pacific Northwest Laboratory (PNL) has developed a manipulator workcell to load and unload nuclear weapon pit assemblies from a cart. To develop this workcell, PNL procured a commercially available manipulator, equipped it with force-sensing and vision equipment, and developed manipulator control software. Manipulator workcell development demonstrated that commercially available manipulator systems can successfully perform this task if the appropriate manipulator is selected and the manipulator workcell tooling and software are carefully designed.

Baker, C.P.

1994-08-01T23:59:59.000Z

151

An Approximate Dynamic Programming Approach to Financial Execution for Weapon System Programs .  

E-Print Network [OSTI]

??During each twelve month fiscal year (FY) cycle weapon system programs across the Department of Defense (DoD) are expected to execute their allocated budgets in… (more)

Morman, Erich

2013-01-01T23:59:59.000Z

152

Linking Legacies: Connecting the Cold War Nuclear Weapons Production Processes to Their Environmental Consequences  

Broader source: Energy.gov [DOE]

This report described each step in the cycle of nuclear weapons production and defined for the first time a planned disposition path for all waste streams generated prior to 1992 as a result of weapons production.

153

AIM-98-3464 RECEIVED THE HISTORY OF NUCLEAR WEAPON SAFETY DEVICES  

Office of Scientific and Technical Information (OSTI)

the thermal weaklink. The dual magnetic stronglink was fielded in the last weapon to enter the nuclear weapon stockpile. See Figure 6. Figure 6. MC383 1 Dual Stronglink Review...

154

Towards a tactical nuclear weapons treaty? Is There a Role of IAEA Tools of Safeguards?  

SciTech Connect (OSTI)

In recent years, there is growing interest in formal negotiations on non-strategic or tactical nuclear weapons. With the negotiations of New START, there has been much speculation that a tactical nuclear weapons treaty should be included in the follow on to New START. This paper examines the current policy environment related to tactical weapons and some of the issues surrounding the definition of tactical nuclear weapons. We then map out the steps that would need to be taken in order to begin discussions on a tactical nuclear weapons treaty. These steps will review the potential role of the IAEA in verification of a tactical nuclear weapons treaty. Specifically, does IAEA involvement in various arms control treaties serve as a useful roadmap on how to overcome some of the issues pertaining to a tactical nuclear weapons treaty?

Saunders, Emily C. [Los Alamos National Laboratory; Rowberry, Ariana N. [Los Alamos National Laboratory; Fearey, Bryan L. [Los Alamos National Laboratory

2012-07-12T23:59:59.000Z

155

Charles McMillan to lead Los Alamos National Laboratory's Weapons...  

Broader source: All U.S. Department of Energy (DOE) Office Webpages (Extended Search)

McMillan to Lead Weapons Program Charles McMillan to lead Los Alamos National Laboratory's Weapons Program He will provide oversight and direction for the nuclear weapons program...

156

Radioactive ''hot spots'' from nuclear weapons test fallout  

SciTech Connect (OSTI)

In a paper presented on January 8, 1985, at the Health Physics Society Midyear Symposium, Franke and Alvarez claimed that radioactivity observed on the Savannah River Plant site on March 14, 1955, was the result of a reactor accident. The source of the observed radioactivity was, in fact, rainwater containing radioactive products from a nuclear weapon test made two days earlier in Nevada. The weapon test TEAPOT HORNET was shown to be the source of the contamination at the time, and this has been corroborated in two recent papers. The aim of this review is to show that the highly-localized radioactive fallout on the Savannah River Plant site was not unique but part of a widespread phenomenon occurring all over the United States in the 1950s and early 1960s. 18 references, 2 figures, 2 tables.

Sanders, S.M.

1985-02-11T23:59:59.000Z

157

A hazard separation system for dismantlement of nuclear weapon components  

SciTech Connect (OSTI)

Over the next decade, the US Department of Energy (DOE) must retire and dismantle many nuclear weapon systems. In support of this effort, Sandia National Laboratories (SNL) has developed the Hazard Separation System (HSS). The HSS combines abrasive waterjet cutting technology and real-time radiography. Using the HSS, operators determine the exact location of interior, hazardous sub-components and remove them through precision cutting. The system minimizes waste and maximizes the recovery of recyclable materials. During 1994, the HSS was completed and demonstrated. Weapon components processed during the demonstration period included arming, fusing, and firing units; preflight control units; neutron generator subassemblies; and x-units. Hazards removed included radioactive krytron tubes and gap tubes, thermal batteries, neutron generator tubes, and oil-filled capacitors. Currently, the HSS is being operated at SNL in a research and development mode to facilitate the transfer of the technology to other DOE facilities for support of their dismantlement operations.

Lutz, J.D.; Purvis, S.T.; Hospelhorn, R.L.; Thompson, K.R.

1995-04-01T23:59:59.000Z

158

Nuclear Weapons Testing Resumes | National Nuclear Security Administra...  

National Nuclear Security Administration (NNSA)

Testing Resumes | National Nuclear Security Administration People Mission Managing the Stockpile Preventing Proliferation Powering the Nuclear Navy Emergency Response...

159

The Treaty for the Prohibition of Nuclear Weapons in Latin America and the Caribbean  

SciTech Connect (OSTI)

The Treaty for the Prohibition of Nuclear Weapons in Latin America and the Caribbean, known as the Treaty of Tlatelolco, seeks to establish a nuclear-weapon-free zone (NWFZ) that will extend from the US-Mexican border to Antarctica`s territorial boundaries, including large areas of open ocean. Under the treaty, signatory states pledge not to test, use, produce, manufacture or acquire nuclear weapons; to use nuclear materials and facilities {open_quotes}exclusively for peaceful purposes;{close_quotes} and not to permit the stationing or development of nuclear weapons on their territories.

NONE

1994-03-01T23:59:59.000Z

160

LANL | Physics | Nuclear Weapons and Global Security Data Analysis  

Broader source: All U.S. Department of Energy (DOE) Office Webpages (Extended Search)

Nuclear Weapons and Global Security Data Analysis Nuclear Weapons and Global Security Data Analysis Physics Division applies advanced imaging techniques to many applications, from brain imaging to neutron imaging in inertial fusion to threat detection from airborne cameras. A particular strength is the quantitative analysis of penetrating radiography using techniques such as the Bayesian Inference Engine (BIE). An example from the Nuclear Event Analysis Team shows a test object (Figure 1) that is subsequently radiographed using the Dual-Axis Radiography Hydrodynamic Test (DARHT) facility. Figures 2 and 3 show the radiograph and the inferred density of the object using the BIE, which can be compared to the known object to determine accurate error estimation. Test object Figure 1. The test object consists of a 1 cm-radius cavity void surrounded by a 4.5 cm radius surrogate fissile material of tungsten, tantalum, or depleted uranium. This sphere is surrounded by a 6.5 cm-radius copper sphere. At is thickest point, the tantalum test object has an areal density of 180 g/cm2, equivalent to 9" of steel.

Note: This page contains sample records for the topic "nuclear weapons program" from the National Library of EnergyBeta (NLEBeta).
While these samples are representative of the content of NLEBeta,
they are not comprehensive nor are they the most current set.
We encourage you to perform a real-time search of NLEBeta
to obtain the most current and comprehensive results.


161

Regime Security Theory: Why Do States With No Clear Strategic Security Concerns Obtain Nuclear Weapons? .  

E-Print Network [OSTI]

??Current realist explanations of why states decide to develop nuclear weapons cannot account for the behavior of states that lack a clear strategic threat. An… (more)

Beasley, Matthew

2009-01-01T23:59:59.000Z

162

Abolishing the taboo: President Eisenhower and the permissible use of nuclear weapons for national security.  

E-Print Network [OSTI]

??As president, Dwight Eisenhower believed that nuclear weapons, both fission and fusion, were permissible and desirable assets to help protect U.S. national security against the… (more)

Jones, Brian Madison

2008-01-01T23:59:59.000Z

163

COLLOQUIUM: Risks of Nuclear Weapons Use in an Era of Proliferation...  

Broader source: All U.S. Department of Energy (DOE) Office Webpages (Extended Search)

Risks of Nuclear Weapons Use in an Era of Proliferation, Cyber Warfare and Terrorism Dr. Bruce G. Blair Princeton University The United States and eight other countries...

164

Strategic culture and non-nuclear weapon outcomes: the cases of Australia, South Africa and Sweden .  

E-Print Network [OSTI]

??This thesis uses a "strategic culture" approach to gain insights into non-nuclear weapon outcomes in Australia, South Africa and Sweden. Strategic culture refers to the… (more)

Poore, S.E.

2000-01-01T23:59:59.000Z

165

U.S. Nuclear Weapons Strategy Delivered to Congress | Department of Energy  

Broader source: Energy.gov (indexed) [DOE]

Nuclear Weapons Strategy Delivered to Congress Nuclear Weapons Strategy Delivered to Congress U.S. Nuclear Weapons Strategy Delivered to Congress July 24, 2007 - 2:55pm Addthis WASHINGTON, DC -U.S. Secretary of Energy Samuel W. Bodman joined the U.S. Secretaries of Defense and State in sending to Congress the Bush Administration's nuclear weapons strategy. This document not only describes the history of nuclear deterrence during the Cold War, but reinforces how deterrence applies to present and future security threats, and what a nuclear stockpile of the 21st century will need to look like in order to meet those threats. The strategy emphasizes President Bush's goal of maintaining a credible nuclear deterrent with the lowest possible number of nuclear weapons. It is consistent with the Moscow Treaty that sets U.S. and Russian

166

U.S. Nuclear Weapons Strategy Delivered to Congress | Department of Energy  

Broader source: Energy.gov (indexed) [DOE]

U.S. Nuclear Weapons Strategy Delivered to Congress U.S. Nuclear Weapons Strategy Delivered to Congress U.S. Nuclear Weapons Strategy Delivered to Congress July 24, 2007 - 2:55pm Addthis WASHINGTON, DC -U.S. Secretary of Energy Samuel W. Bodman joined the U.S. Secretaries of Defense and State in sending to Congress the Bush Administration's nuclear weapons strategy. This document not only describes the history of nuclear deterrence during the Cold War, but reinforces how deterrence applies to present and future security threats, and what a nuclear stockpile of the 21st century will need to look like in order to meet those threats. The strategy emphasizes President Bush's goal of maintaining a credible nuclear deterrent with the lowest possible number of nuclear weapons. It is consistent with the Moscow Treaty that sets U.S. and Russian

167

Steps toward a Middle East free of nuclear weapons  

SciTech Connect (OSTI)

In the aftermath of the Gulf War, all eyes are focused on the dangers of proliferation in the Middle East. President Bush, in his postwar address to Congress, called for immediate action to control the proliferation of weapons of mass destruction and the missiles used to deliver them, warning that it would be tragic if the nations of the Middle East and Persian Gulf were now, in the wake of war, to embark on a new arms race. Secretary of State James Baker has recently returned from a tour of the region, and consultations on proliferation were reportedly high on his agenda. At the same time, the fierce political antagonisms and unbridled military competitions that have long characterized the Middle East leave many skeptical as to what can realistically be done. While all states in the region - including Israel - have publicly supported the idea of establishing a nuclear-weapon-free zone (NWFZ) in the Middle East, doubt over the feasibility of the proposal runs high. Why on earth, it is asked, would Israelis give up the protection of their nuclear monopoly What assurances from their Arab adversaries or from the US could possibly replace this ultimate deterrent

Leonard, J.

1991-04-01T23:59:59.000Z

168

U.S. Removes Nine Metric Tons of Plutonium From Nuclear Weapons Stockpile |  

Broader source: Energy.gov (indexed) [DOE]

Removes Nine Metric Tons of Plutonium From Nuclear Weapons Removes Nine Metric Tons of Plutonium From Nuclear Weapons Stockpile U.S. Removes Nine Metric Tons of Plutonium From Nuclear Weapons Stockpile September 17, 2007 - 2:41pm Addthis Declaration Reinforces U.S. Commitment to Nonproliferation VIENNA, AUSTRIA - Secretary of Energy Samuel W. Bodman today announced that the Department of Energy's National Nuclear Security Administration (NNSA) will remove nine metric tons of plutonium from further use as fissile material in U.S. nuclear weapons, signifying the Bush Administration's ongoing commitment to nonproliferation. Nine metric tons of plutonium is enough material to make over 1,000 nuclear weapons. The Secretary made today's announcement while speaking before the International Atomic Energy Agency's annual general conference.

169

U.S. Removes Nine Metric Tons of Plutonium From Nuclear Weapons Stockpile |  

Broader source: Energy.gov (indexed) [DOE]

U.S. Removes Nine Metric Tons of Plutonium From Nuclear Weapons U.S. Removes Nine Metric Tons of Plutonium From Nuclear Weapons Stockpile U.S. Removes Nine Metric Tons of Plutonium From Nuclear Weapons Stockpile September 17, 2007 - 2:41pm Addthis Declaration Reinforces U.S. Commitment to Nonproliferation VIENNA, AUSTRIA - Secretary of Energy Samuel W. Bodman today announced that the Department of Energy's National Nuclear Security Administration (NNSA) will remove nine metric tons of plutonium from further use as fissile material in U.S. nuclear weapons, signifying the Bush Administration's ongoing commitment to nonproliferation. Nine metric tons of plutonium is enough material to make over 1,000 nuclear weapons. The Secretary made today's announcement while speaking before the International Atomic Energy Agency's annual general conference.

170

Plutonium Disposition Program | National Nuclear Security Administration  

National Nuclear Security Administration (NNSA)

Plutonium Disposition Program Plutonium Disposition Program Home > About Us > Our Programs > Nonproliferation > Fissile Materials Disposition > Plutonium Disposition Program Plutonium Disposition Program The U.S.-Russia Plutonium Management and Disposition Agreement (PMDA), which entered into force on July 13, 2011, commits each country to dispose of at least 34 metric tons (MT) of weapon-grade plutonium withdrawn from their respective nuclear weapon programs. The U.S. remains firmly committed to its PMDA obligation to dispose of excess weapons plutonium. U.S. Plutonium Disposition The current U.S. plan to dispose of 34 MT of weapon-grade plutonium is to fabricate it into Mixed Oxide (MOX) fuel and irradiate it in existing light water reactors. This approach requires construction of new facilities

171

Plus c`est la meme chose: The future of nuclear weapons in Europe  

SciTech Connect (OSTI)

Since the end of the Cold War, the United States perhaps more than any other nuclear weapon state has deeply questioned the future role of nuclear weapons, both in a strategic sense and in Europe. It is probably the United States that has raised the most questions about the continuing need for and efficacy of nuclear weapons, and has expressed the greatest concerns about the negative consequences of continuing nuclear weapons deployment. In the US, this period of questioning has now come to a pause, if not a conclusion. In late 1994 the United States decided to continue to pursue reductions in numbers of nuclear weapons as well as other changes designed to reduce the dangers associated with the possession of nuclear weapons. But at the same time the US concluded that some number of nuclear forces would continue to be needed for national security for the foreseeable future. These necessary nuclear forces include a continuing but greatly reduced stockpile of nuclear bombs deployed in Europe under NATO`s New Strategic Concept. If further changes to the US position on nuclear weapons in Europe are to occur, it is likely to be after many years, and only in the context of dramatic additional improvements in the political and geo-political climate in and around Europe. The future role of nuclear weapons in Europe, as discussed in this report, depends in part on past and future decisions by the United States. but it must also be noted that other states that deploy nuclear weapons in Europe--Britain, France, and Russia, as well as the NATO alliance--have shown little inclination to discontinue their deployment of such weapons, whatever the United States might choose to do in the future.

Maaranen, S.A.

1996-07-01T23:59:59.000Z

172

Abdus Salam: A Reappraisal. Part II Salam's Part in the Pakistani Nuclear Weapon Programme  

E-Print Network [OSTI]

Salam's biographies claim that he was opposed to Pakistan's nuclear weapon programme. This is somewhat strange given that he was the senior Science Advisor to the Pakistan government for at least some of the period between 1972 when the programme was initiated and 1998 when a successful nuclear weapon test was carried out. I look at the evidence for his participation in the programme.

Dombey, Norman

2011-01-01T23:59:59.000Z

173

Abdus Salam: A Reappraisal. Part II Salam's Part in the Pakistani Nuclear Weapon Programme  

E-Print Network [OSTI]

Salam's biographies claim that he was opposed to Pakistan's nuclear weapon programme. This is somewhat strange given that he was the senior Science Advisor to the Pakistan government for at least some of the period between 1972 when the programme was initiated and 1998 when a successful nuclear weapon test was carried out. I look at the evidence for his participation in the programme.

Norman Dombey

2011-12-10T23:59:59.000Z

174

Assurance and assessment techniques for nuclear weapon related software  

SciTech Connect (OSTI)

Sandia National Laboratories has the qualification evaluation responsibility for the design of certain components intended for use in nuclear weapons. Specific techniques in assurance and assessment have been developed to provide the quality evidence that the software has been properly qualified for use. Qualification Evaluation is a process for assessing the suitability of either a process used to develop or manufacture the product, or the product itself The qualification process uses a team approach to evaluating a product or process, chaired by a Quality Assurance professional, with other members representing the design organization, the systems organization, and the production agency. Suitable for use implies that adequate and appropriate definition and documentation has been produced and formally released, adequate verification and validation activities have taken place to ensure proper operation, and the software product meets all requirements, explicitly or otherwise.

Blackledge, M.A. [Sandia National Labs., Albuquerque, NM (United States). Quality Engineering Department

1993-12-31T23:59:59.000Z

175

Assurance and assessment techniques for nuclear weapon related software  

SciTech Connect (OSTI)

Sandia National Laboratories has the qualification evaluation responsibility for the design of certain components intended for use in nuclear weapons. Specific techniques in assurance and assessment have been developed to provide the quality evidence that the software has been properly qualified for use. Qualification Evaluation is a process for assessing the suitability of either a process used to develop or manufacture the product, or the product itself. The qualification process uses a team approach to evaluating a product or process, chaired by a Quality Assurance professional, with other members representing the design organization, the systems organization, and the production agency. Suitable for use implies that adequate and appropriate definition and documentation has been produced and formally released, adequate verification and validation activities have taken place to ensure proper operation, and the software product meets all requirements, explicitly or otherwise.

Blackledge, M.A.

1993-07-01T23:59:59.000Z

176

Assurance and assessment techniques for nuclear weapon related software  

SciTech Connect (OSTI)

Sandia National Laboratories has the qualification evaluation responsibility for the design of certain components intended for use in nuclear weapons. Specific techniques in assurance and assessment have been developed to provide the quality evidence that the software has been properly qualified for use. Qualification Evaluation is a process for assessing the suitability of either a process used to develop or manufacture the product, or the product itself. The qualification process uses a team approach to evaluating a product or process, chaired by a Quality Assurance professional, with other members representing the design organization, the systems organization, and the production agency. Suitable for use implies that adequate and appropriate definition and documentation has been produced and formally released, adequate verification and validation activities have taken place to ensure proper operation, and the software product meets all requirements, explicitly or otherwise.

Blackledge, M.A.

1993-01-01T23:59:59.000Z

177

A quantitative assessment of nuclear weapons proliferation risk utilizing probabilistic methods  

E-Print Network [OSTI]

A comparative quantitative assessment is made of the nuclear weapons proliferation risk between various nuclear reactor/fuel cycle concepts using a probabilistic method. The work presented details quantified proliferation ...

Sentell, Dennis Shannon, 1971-

2002-01-01T23:59:59.000Z

178

The doctrine of the nuclear-weapon states and the future of non-proliferation  

SciTech Connect (OSTI)

Less than a year remains before the critical conference in April 1995 to review and extend the nuclear Non-Proliferation Treaty (NPT), the main international barrier to the proliferation of nuclear weapons. This is a critical moment for the United States. With the end of the Cold War, the likelihood of nuclear war with the states of the former Soviet Union has been radically reduced, but there is greatly increased concern over the potential threats from states or sub-state groups seeking to develop or acquire nuclear weapons and other weapons of mass destruction.

Panofsky, W.K.H.; Bunn, G.

1994-07-01T23:59:59.000Z

179

Nuclear fuel reprocessing and the problems of safeguarding against the spread of nuclear weapons  

SciTech Connect (OSTI)

In 1977, the executive branch reversed its long-standing support for nuclear fuel reprocessing, primarily because of the rick of spreading nuclear weapons. GAO reviewed safeguards technology designed to reduce such risks in Federal reprocessing facilities and found that concerns are warranted. Material in sufficient quantities to construct a nuclear weapon could be diverted and go undetected for a long time. Effective international control and safeguards over the production, storage, and use of separated plutonium are lacking. The United States should increase its efforts to: develop and ensure the use of effective safeguards for reprocessing facilities; and establish, in conjunction with major nuclear fuel users, suppliers, and reprocessors, an international system to control the storage and use of excess plutonium.

Staats, E.B.

1980-03-18T23:59:59.000Z

180

Office of Weapons Material Protection | National Nuclear Security...  

National Nuclear Security Administration (NNSA)

that gradually transfers responsibility for maintaining the security systems to Russia. Related Topics material protection MPC&A SLD second line of defense weapons material...

Note: This page contains sample records for the topic "nuclear weapons program" from the National Library of EnergyBeta (NLEBeta).
While these samples are representative of the content of NLEBeta,
they are not comprehensive nor are they the most current set.
We encourage you to perform a real-time search of NLEBeta
to obtain the most current and comprehensive results.


181

Progress toward mutual reciprocal inspections of fissile materials from dismantled nuclear weapons  

SciTech Connect (OSTI)

In March 1994, the United States and the Russian Federation announced their intention to conduct mutual reciprocal inspections (MRI) to confirm inventories of fissile materials from dismantled nuclear weapons. Subsequent interactions between the two countries have established the basis for an MRI regime, covering instrumentation, candidate sites for MRI, and protection of information deemed sensitive by the countries. This paper discusses progress made toward MRI, stressing measurement technologies and observables, as well as prospects for MRI implementation. An analysis is presented of observables that might be exploited to provide assurance that the material being measured could have come from a dismantled weapon rather than other sources. Instrumentation to exploit these observables will also be discussed, as will joint US/Russian efforts to demonstrate such instrumentation. Progress toward a so-called ``program of cooperation`` between the two countries in protecting each other`s sensitive information will be reviewed. All of these steps are essential components of an eventual comprehensive regime for controlling fissile materials from weapons.

Johnson, M.W. [Los Alamos National Lab., NM (United States); Gosnell, T.B. [Lawrence Livermore National Lab., CA (United States)

1995-08-01T23:59:59.000Z

182

Final text of the African nuclear-weapon-free zone treaty  

SciTech Connect (OSTI)

In early 1996, African leaders will travel to Cairo, Egypt, to sign the African nuclear-weapon-free zone treaty, capping African countries` 35-year effort to ban all such weapons on the continent. Informally called the Pelindaba Treaty (ironically, the site of the South African nuclear research center where some of Pretoria`s nuclear weapons work was conducted), the accord will prohibit the development, manufacture, acquisition or possession of any nuclear explosive device as well as the dumping of radioactive material within the zone. Once it enters into force-after the 28th state deposits its instrument of ratification-Africa will become the world`s fourth nuclear-weapon-free zone. The treaty`s final text is printed provided.

NONE

1996-01-01T23:59:59.000Z

183

Los Alamos neutron science center nuclear weapons stewardship and unique national scientific capabilities  

SciTech Connect (OSTI)

This presentation gives an overview of the Los Alamos Neutron Science Center (LANSCE) and its contributions to science and the nuclear weapons program. LANSCE is made of multiple experimental facilities (the Lujan Center, the Weapons Neutron Research facility (WNR), the Ultra-Cold Neutron facility (UCN), the proton Radiography facility (pRad) and the Isotope Production Facility (IPF)) served by the its kilometer long linear accelerator. Several research areas are supported, including materials and bioscience, nuclear science, materials dynamics, irradiation response and medical isotope production. LANSCE is a national user facility that supports researchers worldwide. The LANSCE Risk Mitigation program is currently in progress to update critical accelerator equipment to help extend the lifetime of LANSCE as a key user facility. The Associate Directorate of Business Sciences (ADBS) plays an important role in the continued success of LANSCE. This includes key procurement support, human resource support, technical writing support, and training support. LANSCE is also the foundation of the future signature facility MARIE (Matter-Radiation Interactions in Extremes).

Schoenberg, Kurt F [Los Alamos National Laboratory

2010-12-15T23:59:59.000Z

184

Nuclear Nonproliferation Programs | ORNL  

Broader source: All U.S. Department of Energy (DOE) Office Webpages (Extended Search)

Nuclear Nonproliferation Programs SHARE Nuclear Nonproliferation Programs image Oak Ridge National Laboratory covers the entire spectrum of nuclear nonproliferation work, from...

185

A system for the detection of concealed nuclear weapons and fissile material aboard cargo cotainerships  

E-Print Network [OSTI]

A new approach to the detection of concealed nuclear weapons and fissile material aboard cargo containerships is proposed. The ship-based approach removes the constraints of current thinking by addressing the threat of ...

Gallagher, Shawn P., S.M. Massachusetts Institute of Technology

2005-01-01T23:59:59.000Z

186

The Myth of Strategic Superiority: Us Nuclear Weapons and Limited Conflicts, 1945-1954.  

E-Print Network [OSTI]

??The nuclear age provided U.S. soldiers and statesmen with unprecedented challenges. the U.S. military had to incorporate a weapon into strategic calculations without knowing whether… (more)

Morse, Eric

2012-01-01T23:59:59.000Z

187

Total Quality Management and nuclear weapons: A historian`s perspective  

SciTech Connect (OSTI)

Total Quality Management (TQM) has become a significant management theme at Los Alamos National Laboratory. This paper discusses the historical roots of TQM at Los Alamos and how TQM has been used in the development of nuclear weapons.

Meade, R.A.

1993-11-01T23:59:59.000Z

188

The nuclear-weapon states and article VI of the NPT  

SciTech Connect (OSTI)

The Non-Proliferation Treaty rests on a basic bargain between the five declared nuclear-weapon states - the United States, Russia, Britain, France and China and 167 states that do not possess nuclear weapons. In addition, to the arms control and disarmaments commitments in Article VI, the parties pledge in the treaty`s pramble their determination to seek a comprehensive test ban (CTB) and express the understanding that in connection with the treaty on general and complete disarmament the parties should seek the cessation of manufacture of nuclear weapons, the liquidation of all their existing stock piles, and the elimination from national arsenals of nuclear weapons and means of their delivery. The author discusses the status of these agreements and the extent to which they have been fulfilled.

Mendelsohn, J.; Lockwood, D.

1995-03-01T23:59:59.000Z

189

Surface water transport and distribution of uranium in contaminated sediments near a nuclear weapons processing facility  

E-Print Network [OSTI]

The extent of remobilization of uranium from contaminated soils adjacent to a nuclear weapons processing facility during episodic rain events was investigated. In addition, information on the solid phase associations of U in floodplain and suspended...

Batson, Vicky Lynn

1994-01-01T23:59:59.000Z

190

Civilian Nuclear Programs  

Broader source: All U.S. Department of Energy (DOE) Office Webpages (Extended Search)

Civilian Nuclear Programs Civilian Nuclear Programs Civilian Nuclear Programs Los Alamos is committed to using its advanced nuclear expertise and unique facilities to meet the civilian nuclear national security demands of the future. CONTACT US Program Director Bruce Robinson (505) 667-1910 Email Los Alamos partners extensively with other laboratories, universities, industry, and the international nuclear community to address real-world technical challenges The Civilian Nuclear Programs Office is the focal point for nuclear energy research and development and next-generation repository science at Los Alamos National Laboratory. The Civilian Nuclear Programs Office manages projects funded by the Department of Energy's offices of Nuclear Energy Environmental Management Nuclear Regulatory Commission

191

Plutonium Disposition Program | National Nuclear Security Administration  

Broader source: All U.S. Department of Energy (DOE) Office Webpages (Extended Search)

Home > Media Room > Fact Sheets > Plutonium Disposition Program Home > Media Room > Fact Sheets > Plutonium Disposition Program Fact Sheet Plutonium Disposition Program Jun 26, 2013 SUPPORTING NUCLEAR NONPROLIFERATION Weapon-grade plutonium and highly enriched uranium (HEU) are the critical ingredients for making a nuclear weapon. With the end of the Cold War, hundreds of tons of these materials were determined to be surplus to U.S. and Russian defense needs. Denying access to plutonium and HEU is the best way to prevent nuclear proliferation to rogue states and terrorist organizations. The most certain method to prevent these materials from falling into the wrong hands is to dispose of them. During the April 2010 Nuclear Security Summit, Secretary of State Hillary Rodham Clinton and Russian Foreign Minister Sergey Lavrov signed a protocol

192

Life Extension Programs | National Nuclear Security Administration  

National Nuclear Security Administration (NNSA)

Life Extension Programs | National Nuclear Security Administration Life Extension Programs | National Nuclear Security Administration Our Mission Managing the Stockpile Preventing Proliferation Powering the Nuclear Navy Emergency Response Recapitalizing Our Infrastructure Continuing Management Reform Countering Nuclear Terrorism About Us Our Programs Our History Who We Are Our Leadership Our Locations Budget Our Operations Media Room Congressional Testimony Fact Sheets Newsletters Press Releases Speeches Events Social Media Video Gallery Photo Gallery NNSA Archive Federal Employment Apply for Our Jobs Our Jobs Working at NNSA Blog Life Extension Programs Home > Our Mission > Managing the Stockpile > Life Extension Programs Life Extension Programs The term "life extension program (LEP)" means a program to repair/replace components of nuclear weapons to ensure the ability to meet

193

Life Extension Programs | National Nuclear Security Administration  

Broader source: All U.S. Department of Energy (DOE) Office Webpages (Extended Search)

Extension Programs | National Nuclear Security Administration Extension Programs | National Nuclear Security Administration Our Mission Managing the Stockpile Preventing Proliferation Powering the Nuclear Navy Emergency Response Recapitalizing Our Infrastructure Continuing Management Reform Countering Nuclear Terrorism About Us Our Programs Our History Who We Are Our Leadership Our Locations Budget Our Operations Media Room Congressional Testimony Fact Sheets Newsletters Press Releases Speeches Events Social Media Video Gallery Photo Gallery NNSA Archive Federal Employment Apply for Our Jobs Our Jobs Working at NNSA Blog Life Extension Programs Home > Our Mission > Managing the Stockpile > Life Extension Programs Life Extension Programs The term "life extension program (LEP)" means a program to repair/replace components of nuclear weapons to ensure the ability to meet

194

Notice of Intent to Revise DOE O 452.4B, Security and Control of Nuclear Explosives and Nuclear Weapons, dated 1-11-2010  

Broader source: Directives, Delegations, and Requirements [Office of Management (MA)]

Recent events have revealed that there are organizations that are seeking to insert malicious software and/or components into the nuclear weapon supply chain that can alter the functionality of the weapon and possible cause DAU.

2014-09-18T23:59:59.000Z

195

Restructuring the DOE Laboratory Complex to Advance Clean Energy, Environmental Sustainability, and a Global Future without Nuclear Weapons  

Broader source: Energy.gov [DOE]

Restructuring the DOE Laboratory Complex to Advance Clean Energy, Environmental Sustainability, and a Global Future without Nuclear Weapons - December Commission meeting

196

Status of Iran's nuclear program and negotiations  

SciTech Connect (OSTI)

Iran's nuclear program poses immense challenges to international security. Its gas centrifuge program has grown dramatically in the last several years, bringing Iran close to a point where it could produce highly enriched uranium in secret or declared gas centrifuge plants before its breakout would be discovered and stopped. To reduce the risk posed by Iran's nuclear program, the P5+1 have negotiated with Iran short term limits on the most dangerous aspects of its nuclear programs and is negotiating long-term arrangements that can provide assurance that Iran will not build nuclear weapons. These long-term arrangements need to include a far more limited and transparent Iranian nuclear program. In advance of arriving at a long-term arrangement, the IAEA will need to resolve its concerns about the alleged past and possibly on-going military dimensions of Iran's nuclear program.

Albright, David [President, Institute for Science and International Security (ISIS), 236 Massachusetts Avenue, NE 305, Washington, DC 20002 (United States)

2014-05-09T23:59:59.000Z

197

Defense Programs | National Nuclear Security Administration  

Broader source: All U.S. Department of Energy (DOE) Office Webpages (Extended Search)

Programs | National Nuclear Security Administration Programs | National Nuclear Security Administration Our Mission Managing the Stockpile Preventing Proliferation Powering the Nuclear Navy Emergency Response Recapitalizing Our Infrastructure Continuing Management Reform Countering Nuclear Terrorism About Us Our Programs Our History Who We Are Our Leadership Our Locations Budget Our Operations Media Room Congressional Testimony Fact Sheets Newsletters Press Releases Speeches Events Social Media Video Gallery Photo Gallery NNSA Archive Federal Employment Apply for Our Jobs Our Jobs Working at NNSA Blog Defense Programs Home > About Us > Our Programs > Defense Programs Defense Programs One of the primary missions of NNSA is to maintain and enhance the safety, security and reliability of the U.S. nuclear weapons stockpile. NNSA,

198

Nuclear weapons: Emergency preparedness planning for accidents can be better coordinated  

SciTech Connect (OSTI)

Nuclear weapons will be carried on some of the ships the Navy plans to add to existing and new U.S. homeports. Coordination and planning with states and localities for public safety in the event of a nuclear weapon accident varies by service. The Navy and Army generally have not coordinated this planning as they have for other types of disasters because they believe to do so would compromise national security. The Air Force coordinates its emergency planning for all types of disasters. DOD believes that while it is possible for Navy homeports to coordinate preparedness plans on an unclassified basis it is not possible to do so at nuclear weapons storage sites because of security constraints.

Not Available

1987-01-01T23:59:59.000Z

199

Techniques to evaluate the importance of common cause degradation on reliability and safety of nuclear weapons.  

SciTech Connect (OSTI)

As the nuclear weapon stockpile ages, there is increased concern about common degradation ultimately leading to common cause failure of multiple weapons that could significantly impact reliability or safety. Current acceptable limits for the reliability and safety of a weapon are based on upper limits on the probability of failure of an individual item, assuming that failures among items are independent. We expanded the current acceptable limits to apply to situations with common cause failure. Then, we developed a simple screening process to quickly assess the importance of observed common degradation for both reliability and safety to determine if further action is necessary. The screening process conservatively assumes that common degradation is common cause failure. For a population with between 100 and 5000 items we applied the screening process and conclude the following. In general, for a reliability requirement specified in the Military Characteristics (MCs) for a specific weapon system, common degradation is of concern if more than 100(1-x)% of the weapons are susceptible to common degradation, where x is the required reliability expressed as a fraction. Common degradation is of concern for the safety of a weapon subsystem if more than 0.1% of the population is susceptible to common degradation. Common degradation is of concern for the safety of a weapon component or overall weapon system if two or more components/weapons in the population are susceptible to degradation. Finally, we developed a technique for detailed evaluation of common degradation leading to common cause failure for situations that are determined to be of concern using the screening process. The detailed evaluation requires that best estimates of common cause and independent failure probabilities be produced. Using these techniques, observed common degradation can be evaluated for effects on reliability and safety.

Darby, John L.

2011-05-01T23:59:59.000Z

200

Why Model-Based Engineering and Manufacturing Makes Sense for the Plants and Laboratories of the Nuclear Weapon Complex  

SciTech Connect (OSTI)

The purpose of this White Paper is to outline the benefits we expect to receive from Model-Based Engineering and Manufacturing (MBE/M) for the design, analysis, fabrication, and assembly of nuclear weapons for upcoming Life Extension Programs (LEPs). Industry experiences with model-based approaches and the NNSA/DP investments and experiences, discussed in this paper, indicate that model-based methods can achieve reliable refurbished weapons for the stockpile with less cost and time. In this the paper, we list both general and specific benefits of MBE/M for the upcoming LEPs and the metrics for determining the success of model-based approaches. We also present some outstanding issues and challenges to deploying and achieving long-term benefit from the MBE/M. In conclusion, we argue that successful completion of the upcoming LEPs--with very aggressive schedule and funding restrictions--will depend on electronic model-based methods. We ask for a strong commitment from LEP managers throughout the Nuclear Weapons Complex to support deployment and use of MBE/M systems to meet their program needs.

Franklin, K W; Howell, L N; Lewis, D G; Neugebauer, C A; O'Brien, D W; Schilling, S A

2001-05-15T23:59:59.000Z

Note: This page contains sample records for the topic "nuclear weapons program" from the National Library of EnergyBeta (NLEBeta).
While these samples are representative of the content of NLEBeta,
they are not comprehensive nor are they the most current set.
We encourage you to perform a real-time search of NLEBeta
to obtain the most current and comprehensive results.


201

BUILDING A CHEMICAL LASER WEAPON  

Science Journals Connector (OSTI)

BUILDING A CHEMICAL LASER WEAPON ... Under fire, Airborne Laser program director confronts challenges of revolutionary weapons system ...

WILLIAM G. SCHULZ

2004-12-20T23:59:59.000Z

202

Stopping the spread of nuclear weapons. The Heritage lectures; No. 506  

SciTech Connect (OSTI)

This lecture is on the proliferation of nuclear arms. More precisely, it will be on how best to prevent the proliferation of nuclear arms. For as much as the policy community may disagree about the proper policies for preventing nuclear proliferation, the author thinks all share the goal of preventing proliferation. The best prescription for preventing all sorts of proliferation - biological, chemical, missile, and space technology, as well as nuclear is for the U.S. government to pursue a balanced non-proliferation policy. Such a balanced policy requires bringing four distinct approaches to addressing the proliferation problem together in a coherent fashion. These distinct approaches are: (1) deterring the use of the weapon in question, (2) defending against the use of the weapon in question, (3) destroying preemptively the weapon in question, and (4) controlling the spread of the weapon in question directly through arms control. In the authors view, a balanced and effective nonproliferation policy should not shun or slight any of these approaches. All make a unique contribution toward the whole and serve to reinforce one another in limiting the effects of proliferation and ultimately discouraging proliferation itself. This does not mean, however, that there is no requirement to make trade-offs among the four. Indeed, the real trick is assuring that there is an appropriate division of labor among the four. The author explains this general policy in terms of the specific challenges posed by the proliferation of nuclear arms.

Spring, B.

1994-12-31T23:59:59.000Z

203

Safety issues in robotic handling of nuclear weapon parts  

SciTech Connect (OSTI)

Robotic systems are being developed by the Intelligent Systems and Robotics Center at Sandia National Laboratories to perform automated handling tasks with radioactive weapon parts. These systems will reduce the occupational radiation exposure to workers by automating operations that are currently performed manually. The robotic systems at Sandia incorporate several levels of mechanical, electrical, and software safety for handling hazardous materials. For example, tooling used by the robot to handle radioactive parts has been designed with mechanical features that allow the robot to release its payload only at designated locations in the robotic workspace. In addition, software processes check for expected and unexpected situations throughout the operations. Incorporation of features such as these provides multiple levels of safety for handling hazardous or valuable payloads with automated intelligent systems.

Drotning, W.; Wapman, W.; Fahrenholtz, J.

1993-12-31T23:59:59.000Z

204

Materials characterization capabilities at DOE Nuclear Weapons Laboratories and Production Plants  

SciTech Connect (OSTI)

The materials characterization and analytical chemistry capabilities at the 11 DOE Nuclear Weapons Laboratories or Production Plants have been surveyed and compared. In general, all laboratories have similar capabilities and equipment. Facilities or capabilities that are unique or that exist at only a few laboratories are described in detail.

Pyper, J.W.

1984-06-01T23:59:59.000Z

205

Use of Lasers to Study the Impact of Fractionation and Condensation on the Toxicity of Nuclear Weapon Fallout  

SciTech Connect (OSTI)

An experimental concept has been developed to collect data to aid in the refinement of simulation programs designed to predict the fallout effects arising from surface and shallowly buried nuclear weapon detonations. These experiments, called the Condensation Debris Experiments (CDE), are intended to study the condensation/fractionation of material that is liberated following an initial deposition of laser energy onto a small, characterized target. The CDE effort also encompasses target development and material studies as well as supporting computational efforts studying radiation hydrodynamics, computational fluid dynamics, and relevant neutron activation processes (not discussed here).

Vidnovic III, T; Bradley, K S; Debonnel, C S; Dipeso, G; Fournier, K; Karpenko, V P; Tobin, M

2005-04-01T23:59:59.000Z

206

Utility of tactical nuclear weapons following 1990 Conventional Forces Europe reduction agreement. Final report  

SciTech Connect (OSTI)

Not so long ago, the world was changing rapidly, the Cold War faded. At least one arms agreement, the Intermediate Nuclear Forces (INF) Treaty, which reduced the U.S. Pershing II and the Russian SS-21's missiles in the European theater, was in place. Then the euphoria evaporated. The Kremlin hardliners regained power and balked at signing a Conventional Forces Europe (CFE) agreement - a treaty which only a year ago would have reduced to approximate parity the size of United States and Soviet Forces in Europe. Was America ready for this new Soviet challenge. Thankfully the answer is still yes. The United States continues to maintain its Nuclear Triad -- land, sea and air deliverable nuclear weapons system's. On the European battlefield the U.S. maintains the ability to deliver tactical nuclear weapons to overcome the Russian Army's numerical advantage and remain responsive to the ground commander. All of this should give Kremlin hardliners (strict communist power brokers, primarily in the military and KGB) reason to pause. Given the reemergence of hostile Soviet leaders, this paper addresses the future need for land based Theater Army delivered tactical nuclear weapons in the European Theater and within Regional Theaters. It also, analyzes regional powers, indicating how they might influence nuclear strategy in a world where the Soviet Union may well be moving away from us again.

Keating, A.J.

1991-04-29T23:59:59.000Z

207

Plutonium gamma-ray measurements for mutual reciprocal inspections of dismantled nuclear weapons  

SciTech Connect (OSTI)

The O`Leary-Mikhailov agreement of March 1994 stated that the U.S. and the Russian Federation would engage in mutual reciprocal inspections (MRI) of fissile materials removed from dismantled nuclear weapons. It was decided to begin with the plutonium (Pu) removed from dismantled weapons and held in storage containers. Later discussions between U.S. and Russian technical experts led to the conclusion that, to achieve the O`Leary-Mikhailov objectives, Pu MRI would need to determine that the material in the containers has properties consistent with a nuclear-weapon component. Such a property is a {sup 240}Pu/{sup 239}Pu ratio consistent with weapons-grade material. One of the candidate inspection techniques under consideration for Pu MRI is to use a narrow region (630-670 keV) of the plutonium gamma-ray spectrum, taken with a high-purity germanium detector, to determine that it is weapons-grade plutonium as well as to estimate the minimum mass necessary to produce the observed gamma-ray intensity. We developed software (the Pu600 code) for instrument control and analysis especially for this purpose. In November 1994, U.S. and Russian scientists met at the Lawrence Livermore National Laboratory for joint experiments to evaluate candidate Pu MRI inspection techniques. In one of these experiments, gamma-ray intensities were measured from three unclassified weapons-grade plutonium source standards and one reactor-grade standard (21% {sup 240}pu). Using our software, we determined the {sup 240}Pu/{sup 239}Pu ratio of these standards to accuracies within {+-}10%, which is adequate for Pu MRI. The minimum mass estimates varied, as expected, directly with the exposed surface area of the standards.

Koenig, Z.M.; Carlson, J.B.; Clark, D.; Gosnell, T.B.

1995-07-01T23:59:59.000Z

208

Nuclear Materials Management Program at the NNSS  

SciTech Connect (OSTI)

The Nevada National Security Site (NNSS), formerly the Nevada Test Site, was established in 1951 mainly for weapons testing; because special nuclear materials (SNM) were expended during the tests, a nuclear material management program was not required. That changed in December 2004 with the receipt of Category I SNM for purposes other than weapons testing. At that time, Material Control and Accountability and Nuclear Material Management were a joint laboratory (Los Alamos and Lawrence Livermore) effort with nuclear material management being performed at the laboratories. That changed in March 2006 when the U.S. Department of Energy, National Nuclear Security Administration Nevada Site Office appointed sole responsibility to the Management and Operations (M&O) contractor, National Security Technologies, LLC (NSTec). Since 2006 the basic nuclear material management work was completed by a combination of M&O employees and subcontractors, but a true Nuclear Material Management (NMM) Program was not determined to be necessary until recently. With expanding missions and more nuclear material (NM) coming to the NNSS, it became imperative to have an organization to manage these materials; therefore, an NMM Manager was officially appointed by NSTec in 2012. In June 2011 a Gap Analysis and white paper was completed by a subcontractor; this presentation will include highlights from those documents along with our plans to resolve the “gaps” and stand up a functional and compliant NMM Program at the NNSS.

,

2012-06-08T23:59:59.000Z

209

DOE's Nuclear Weapons Complex: Challenges to Safety, Security, and Taxpayer Stewardship  

Broader source: Energy.gov (indexed) [DOE]

Oversight and Investigations Oversight and Investigations Committee on Energy and Commerce U.S. House of Representatives "DOE's Nuclear Weapons Complex: Challenges to Safety, Security, and Taxpayer Stewardship" FOR RELEASE ON DELIVERY 10:00 AM September 12, 2012 1 Mr. Chairman and Members of the Subcommittee, I am pleased to be here at your request to testify on matters relating to the Department of Energy's oversight of the nuclear weapons complex. 1 The National Nuclear Security Administration (NNSA) was established under the National Defense Authorization Act of 2000 as a separately organized agency within the Department of Energy. This action was intended to allow NNSA to concentrate on its defense-related mission, free from other Departmental operations. Its creation was, in large measure, a reaction to highly

210

Interim storage of dismantled nuclear weapon components at the U.S. Department of Energy Pantex Plant  

SciTech Connect (OSTI)

Following the events of 1989 and the subsequent cessation of production of new nuclear weapons by the US, the mission of the Department of Energy (DOE) Nuclear Weapons Complex has shifted from production to dismantlement of retired weapons. The sole site in the US for accomplishing the dismantlement mission is the DOE Pantex Plant near Amarillo, Texas. Pending a national decision on the ultimate storage and disposition of nuclear components form the dismantled weapons, the storage magazines within the Pantex Plant are serving as the interim storage site for pits--the weapon plutonium-bearing component. The DOE has stipulated that Pantex will provide storage for up to 12,000 pits pending a Record of Decision on a comprehensive site-wide Environmental Impact Statement in November 1996.

Guidice, S.J.; Inlow, R.O. [USDOE Albuquerque Operations Office, NM (United States)

1995-12-31T23:59:59.000Z

211

Assessing State Nuclear Weapons Proliferation: Using Bayesian Network Analysis of Social Factors  

SciTech Connect (OSTI)

A Bayesian network (BN) model of social factors can support proliferation assessments by estimating the likelihood that a state will pursue a nuclear weapon. Social factors including political, economic, nuclear capability, security, and national identity and psychology factors may play as important a role in whether a State pursues nuclear weapons as more physical factors. This paper will show how using Bayesian reasoning on a generic case of a would-be proliferator State can be used to combine evidence that supports proliferation assessment. Theories and analysis by political scientists can be leveraged in a quantitative and transparent way to indicate proliferation risk. BN models facilitate diagnosis and inference in a probabilistic environment by using a network of nodes and acyclic directed arcs between the nodes whose connections, or absence of, indicate probabilistic relevance, or independence. We propose a BN model that would use information from both traditional safeguards and the strengthened safeguards associated with the Additional Protocol to indicate countries with a high risk of proliferating nuclear weapons. This model could be used in a variety of applications such a prioritization tool and as a component of state safeguards evaluations. This paper will discuss the benefits of BN reasoning, the development of Pacific Northwest National Laboratory’s (PNNL) BN state proliferation model and how it could be employed as an analytical tool.

Coles, Garill A.; Brothers, Alan J.; Olson, Jarrod; Whitney, Paul D.

2010-04-16T23:59:59.000Z

212

Record of Decision for the Final EIS on Proposed Nuclear Weapons Nonproliferation Policy Concerning Foreign Research Reactor Spent Nuclear Fuel  

Broader source: Energy.gov (indexed) [DOE]

5091 5091 Friday May 17, 1996 Part IV Department of Energy Record of Decision for the Final Environmental Impact Statement on a Proposed Nuclear Weapons Nonproliferation Policy Concerning Foreign Research Reactor Spent Nuclear Fuel; Notice 25092 Federal Register / Vol. 61, No. 97 / Friday, May 17, 1996 / Notices DEPARTMENT OF ENERGY Record of Decision for the Final Environmental Impact Statement on a Proposed Nuclear Weapons Nonproliferation Policy Concerning Foreign Research Reactor Spent Nuclear Fuel AGENCY: Department of Energy. ACTION: Record of decision. SUMMARY: DOE, in consultation with the Department of State, has decided to implement a new foreign research reactor spent fuel acceptance policy as specified in the Preferred Alternative contained in the Final Environmental Impact Statement on a Proposed

213

A compilation of nuclear weapons test detonation data for U.S. Pacific ocean tests  

SciTech Connect (OSTI)

Prior to December 1993, the explosive yields of 44 of 66 nuclear tests conducted by the United States in the Marshall Islands were still classified. Following a request from the Government of the Republic of the Marshall Islands to the U.S. Department of Energy to release this information, the Secretary of Energy declassified and released to the public the explosive yields of the Pacific nuclear tests. This paper presents a synopsis of information on nuclear test detonations in the Marshall Islands and other locations in the mid-Pacific including dates, explosive yields, locations, weapon placement, and summary statistics. 10 refs., 1 fig., 2 tabs.

Simon, S.L. [Radiation Effects Research, Washington, DC (United States); Robison, W.L. [Lawrence Livermore National Lab., CA (United States)

1997-07-01T23:59:59.000Z

214

Disposition of plutonium from dismantled nuclear weapons: Fission options and comparisons  

SciTech Connect (OSTI)

Over the next decade, the United States expects to recover about 50 Mg of excess weapon plutonium and the Republic of Russia expects to recover a similar amount. Ensuring that these large quantities of high-grade material are not reused in nuclear weapons has drawn considerable attention. In response to this problem, the US Department of Energy (DOE) chartered the Plutonium Disposition Task Force (PDTF), in the summer of 1992, to assess a range of practical means for disposition of excess US plutonium. This report summarizes and compares the Fission Options'' provided to the Fission Working Group Review Committee (the committee) of the PDTF. The review by the committee was based on preliminary information received as of December 4, 1992, and as such the results summarized in this report should also be considered preliminary. The committee concluded that irradiation of excess weapon plutonium in fission reactors in conjunction with the generation of electricity and storing the spent fuel is a fast, cost-effective, and environmentally acceptable method of addressing the safeguards (diversion) issue. When applied appropriately, this method is consistent with current nonproliferation policy. The principal effect of implementing the fission options is at most a moderate addition of plutonium to that existing in commercial spent fuel. The amount of plutonium in commercial spent fuel by the year 2000 is estimated to be 300 Mg. The addition of 50 Mg of excess weapon plutonium, in this context, is not a determining factor, moreover, several of the fission options achieve substantial annihilation of plutonium.

Omberg, R.P. (Westinghouse Hanford Co., Richland, WA (United States)); Walter, C.E. (Lawrence Livermore National Lab., CA (United States))

1993-02-05T23:59:59.000Z

215

Disposition of plutonium from dismantled nuclear weapons: Fission options and comparisons  

SciTech Connect (OSTI)

Over the next decade, the United States expects to recover about 50 Mg of excess weapon plutonium and the Republic of Russia expects to recover a similar amount. Ensuring that these large quantities of high-grade material are not reused in nuclear weapons has drawn considerable attention. In response to this problem, the US Department of Energy (DOE) chartered the Plutonium Disposition Task Force (PDTF), in the summer of 1992, to assess a range of practical means for disposition of excess US plutonium. This report summarizes and compares the ``Fission Options`` provided to the Fission Working Group Review Committee (the committee) of the PDTF. The review by the committee was based on preliminary information received as of December 4, 1992, and as such the results summarized in this report should also be considered preliminary. The committee concluded that irradiation of excess weapon plutonium in fission reactors in conjunction with the generation of electricity and storing the spent fuel is a fast, cost-effective, and environmentally acceptable method of addressing the safeguards (diversion) issue. When applied appropriately, this method is consistent with current nonproliferation policy. The principal effect of implementing the fission options is at most a moderate addition of plutonium to that existing in commercial spent fuel. The amount of plutonium in commercial spent fuel by the year 2000 is estimated to be 300 Mg. The addition of 50 Mg of excess weapon plutonium, in this context, is not a determining factor, moreover, several of the fission options achieve substantial annihilation of plutonium.

Omberg, R.P. [Westinghouse Hanford Co., Richland, WA (United States); Walter, C.E. [Lawrence Livermore National Lab., CA (United States)

1993-02-05T23:59:59.000Z

216

Nuclear Physics Program  

Broader source: All U.S. Department of Energy (DOE) Office Webpages (Extended Search)

Office Data Acquisition Group Detector & Imaging Group Electronics Group User Liaison Nuclear Physics Program HALL A Hall A wide shot of detectors Scientists from across the...

217

Nuclear Data Program - Nuclear Engineering Division (Argonne)  

Broader source: All U.S. Department of Energy (DOE) Office Webpages (Extended Search)

Data Program Data Program Nuclear Data Program Overview Current Projects & Recent Activities Collaborating Organizations Publications Nuclear Data Measurements (NDM) Reports Experimental Nuclear Data Resources Contact ND Program Related Resources Other Major Programs Work with Argonne Contact us For Employees Site Map Help Join us on Facebook Follow us on Twitter NE Division on Flickr Nuclear Data Program We contribute to the development of comprehensive nuclear reactions and nuclear structure databases, including nuclear data measurement, analysis, modeling and evaluation methodologies, that are implemented in basic science research and advanced nuclear technologies. Bookmark and Share Recent Events Nuclear Structure 2012 Conference Argonne National Laboratory hosted the

218

Weapons Activities/ Inertial Confinement Fusion Ignition  

E-Print Network [OSTI]

, and reliability of the Nation's nuclear weapons without nuclear testing. The program provides this capability models that are used to assess and certify the stockpile without nuclear testing. The National Ignition that approach the high-energy density (HED) environments found in a nuclear explosion. Virtually all

219

CERCLA Preliminary Assessment of DOE'S Nevada Operations Office Nuclear Weapons Testing  

Office of Legacy Management (LM)

tudies/B ackground tudies/B ackground Book 1 CERCLA Preliminary Assessment of DOE'S Nevada Operations Office Nuclear Weapons Testing Areas Vol. 11, April 1988 DISCLAIMER Portions of this document may be illegible in electronic image products. Images are produced from the best available original document. CERCLA PRELIMINARY ASSESSMENT OF DOE'S NEVADA OPERATIONS OFFICE WCILEAR WEAPONS T E S r n G AREAS Prepared by Water Resources Center Desert Research Institute University of Nevada System ,Prepared for U . S . Department of Energy Nevada Operations Office Las Vegas, Nevada under contract DE-AC08-85NV10384 A p r i l 1988 CONTENTS VOLUME I I. INTRODUCTION 1.1 11. NEVADA TEST SITE TESTING AREAS 2.1 Frenchman Flat (Area 5) 2.1.1 2.2 Yucca Flat (Areas 1, 2, 3, 4, 6, 7, 8, 9, 10, 11, and 15)

220

Strategies for the disposition of high explosives resulting from dismantlement of nuclear weapons  

SciTech Connect (OSTI)

Many thousands of pounds of high quality main-charge explosives will result as surplus from the dismantlement of returns from the US nuclear weapons stockpile. The method most often employed for dealing with this surplus explosive is destruction by open burning. However, open burning as a means of treating excess explosives is losing favor because of environmental concerns associated with such an uncontrolled thermal destruction process. Thus, alternative processes for treatment of excess explosives from weapon dismantlement is discussed. These alternatives include: reformulation, crystalline component recovery, chemical conversion of the crystalline component to higher value products which may have civilian or military applications and, when necessary, treatment as waste in an environmentally benign fashion.

Pruneda, C.; Humphrey, J.

1993-03-01T23:59:59.000Z

Note: This page contains sample records for the topic "nuclear weapons program" from the National Library of EnergyBeta (NLEBeta).
While these samples are representative of the content of NLEBeta,
they are not comprehensive nor are they the most current set.
We encourage you to perform a real-time search of NLEBeta
to obtain the most current and comprehensive results.


221

Nuclear Nonproliferation Program Offices | National Nuclear Security  

Broader source: All U.S. Department of Energy (DOE) Office Webpages (Extended Search)

Nonproliferation Program Offices | National Nuclear Security Nonproliferation Program Offices | National Nuclear Security Administration Our Mission Managing the Stockpile Preventing Proliferation Powering the Nuclear Navy Emergency Response Recapitalizing Our Infrastructure Continuing Management Reform Countering Nuclear Terrorism About Us Our Programs Our History Who We Are Our Leadership Our Locations Budget Our Operations Media Room Congressional Testimony Fact Sheets Newsletters Press Releases Speeches Events Social Media Video Gallery Photo Gallery NNSA Archive Federal Employment Apply for Our Jobs Our Jobs Working at NNSA Blog Nuclear Nonproliferation Program Offices Home > About Us > Our Programs > Nonproliferation > Nuclear Nonproliferation Program Offices Nuclear Nonproliferation Program Offices One of the gravest threats the United States and the international

222

Nuclear Nonproliferation Program Offices | National Nuclear Security  

National Nuclear Security Administration (NNSA)

Nonproliferation Program Offices | National Nuclear Security Nonproliferation Program Offices | National Nuclear Security Administration Our Mission Managing the Stockpile Preventing Proliferation Powering the Nuclear Navy Emergency Response Recapitalizing Our Infrastructure Continuing Management Reform Countering Nuclear Terrorism About Us Our Programs Our History Who We Are Our Leadership Our Locations Budget Our Operations Media Room Congressional Testimony Fact Sheets Newsletters Press Releases Speeches Events Social Media Video Gallery Photo Gallery NNSA Archive Federal Employment Apply for Our Jobs Our Jobs Working at NNSA Blog Nuclear Nonproliferation Program Offices Home > About Us > Our Programs > Nonproliferation > Nuclear Nonproliferation Program Offices Nuclear Nonproliferation Program Offices One of the gravest threats the United States and the international

223

National Security, Weapons Science  

Broader source: All U.S. Department of Energy (DOE) Office Webpages (Extended Search)

National Security, Weapons Science National Security, Weapons Science /science-innovation/_assets/images/icon-science.jpg National Security, Weapons Science National security depends on science and technology. The United States relies on Los Alamos National Laboratory for the best of both. No place on Earth pursues a broader array of world-class scientific endeavors. Dual-Axis Radiographic Hydrodynamic Test Facility (DARHT) The Dual-Axis Radiographic Hydrodynamic Test Facility at LANL is part of the DOE's stockpile stewardship program. It uses two large X-ray machines to record three-dimensional interior images of materials. In most experiments, materials (including plutonium) undergo hydrodynamic shock to simulate the implosion process in nuclear bombs and/or the effects of severe hydrodynamic stress. The tests are described as "full-scale mockups

224

Nuclear weapons, proliferation, and terrorism: U.S. response in the twenty-first century  

SciTech Connect (OSTI)

As the remaining superpower in the post-Cold War world, the US needs to re-evaluate its policy toward the growing threat to US national interests and the effects of weapons of mass destruction (WMD), specifically nuclear devices, and their use by terrorist groups against US interests abroad. As the world reacts to the implosion of the former Soviet Union, there are increased numbers of nations and possibly terrorist groups trying to become players in the international arena. This study describes the ease of obtaining the scientific knowledge, plans, and materials to enable a terrorist`s construction of a nuclear device. It also analyzes motivation of terrorist groups, concluding that a nuclear weapon, capable of inflicting violence in the extreme, fulfills the terrorist`s goal of violence in support of a political agenda or to inspire radical change. Given the guidance from the national level, this study proposes a series of policy options available to the NCA for application in an aggressive counterproliferation policy. Finally, the US must rapidly reorganize its counterproliferation structure and methods to streamline a more aggressive approach that is recognized and feared by potential nuclear terrorists; augment current political efforts with a clearly defined counterproliferation military mission and associated doctrine.

DeLawter, D.A.

1998-11-01T23:59:59.000Z

225

Collaborating Organizations - Nuclear Data Program, Nuclear Engineering  

Broader source: All U.S. Department of Energy (DOE) Office Webpages (Extended Search)

Collaborating Organizations Collaborating Organizations Nuclear Data Program Overview Current Projects & Recent Activities Collaborating Organizations Publications Nuclear Data Measurements (NDM) Reports Experimental Nuclear Data Resources Contact ND Program Related Resources Other Major Programs Work with Argonne Contact us For Employees Site Map Help Join us on Facebook Follow us on Twitter NE Division on Flickr Nuclear Data Program Collaborating Organizations Bookmark and Share National Nuclear Data Center, Brookhaven National Laboratory, Upton, New York. International Nuclear Structure and Decay Data Network, coordinated by IAEA, Vienna, Austria Heavy-Ion Nuclear Physics Group, Physics Division, Argonne National Laboratory, Argonne, Illinois. Nuclear Spectroscopy Group, Department of Nuclear Physics,

226

Civilian Nuclear Programs, SPO-CNP: LANL  

Broader source: All U.S. Department of Energy (DOE) Office Webpages (Extended Search)

Nuclear Office of Science Civilian Nuclear Programs Home Advanced Nuclear Energy Programs Yucca Mountain and Nevada Test Site Programs WIPP and Actinide Science Programs Nuclear...

227

E-Print Network 3.0 - atomic weapons research Sample Search Results  

Broader source: All U.S. Department of Energy (DOE) Office Webpages (Extended Search)

and model nuclear weapon performance in three dimensions. LIFE EXTENSION PROGRAMS: By upgrading Source: Rhoads, James - Space Telescope Science Institute Collection: Physics 9...

228

Aerothermoballistics of pyrophoric metal shrapnel in high speed, high Weber number flows. [From non-nuclear detonation of nuclear weapon  

SciTech Connect (OSTI)

A numerical simulation is presented on the aerothermoballistic behavior of pyrophoric metal shrapnel ejected at supersonic speeds from a non-nuclear detonation of a nuclear weapon. The model predicts the aerodynamic and chemical heat transfer rates and the particle thermal responses including the time and position of melt initiation. Due to the high Weber number environment, the melting particle undergoes liquid layer stripping. The theoretical model, which is incorporated in the PLUTO computer code, predicts the liquid mass loss rate, characteristic liquid droplet diameter, temperature rise across the liquid film, and the coupled particle trajectory.

Connell, L.W.

1984-01-01T23:59:59.000Z

229

Nuclear Energy Program  

Broader source: Energy.gov (indexed) [DOE]

April 15, 2002 April 15, 2002 NERAC Spring 2002 Meeting Office of Nuclear Energy, Science and Technology Magwood/April15_02 NERAC.ppt (2) 2002 Will Be A Transition Year 2002 Will Be A Transition Year 6 Nuclear Power 2010 6 Major Program Developments 6 FY 2003 Budget Request Office of Nuclear Energy, Science and Technology Magwood/April15_02 NERAC.ppt (3) Nuclear Power 2010 Nuclear Power 2010 Nuclear Power 2010 is a new R&D initiative announced by Secretary Abraham on February 14, 2002. This initiative is designed to clear the way for the construction of new nuclear power plants by 2010. Office of Nuclear Energy, Science and Technology Magwood/April15_02 NERAC.ppt (4) Can We Build New U.S. Reactors By 2010? Yes! Can We Build New U.S. Reactors By 2010? Yes! Can Be Deployed by 2010

230

On the dangers of C. I. S. specialists with nuclear weapons experience relocating to Third World countries: A Russian view  

SciTech Connect (OSTI)

This newsletter presents information on the effectiveness of rules and regulations; on the role of a qualified consultant in the possible design of a nuclear weapon for a Third World country; and on the possible dangers (and their elimination) of relocating nuclear technologists.

Hogsett, V.; Canavan, B. (eds.)

1993-01-01T23:59:59.000Z

231

The Army before last military transformation and the impact of nuclear weapons on the US Army during the early Cold War .  

E-Print Network [OSTI]

??This thesis analyzes the impact of nuclear weapon on the doctrine and force structure of the US Army during the Early Cold War (1947-1957). It… (more)

Kinman, Bret C.

2004-01-01T23:59:59.000Z

232

Chemistry {ampersand} Materials Science program report, Weapons Resarch and Development and Laboratory Directed Research and Development FY96  

SciTech Connect (OSTI)

This report is the annual progress report for the Chemistry Materials Science Program: Weapons Research and Development and Laboratory Directed Research and Development. Twenty-one projects are described separately by their principal investigators.

Chase, L.

1997-03-01T23:59:59.000Z

233

Classification of Nuclear Weapons-Related Information (Restricted Data and Formerly Restricted Data)  

Broader source: Energy.gov (indexed) [DOE]

CLASSIFICATION OF CLASSIFICATION OF NUCLEAR WEAPONS-RELATED INFORMATION Restricted Data and Formerly Restricted Data (RD and FRD) June 2012 2 3 Purpose To familiarize individuals from agencies outside of DOE who may come in contact with RD and FRD with the procedures for identifying, classifying, marking, handling, and declassifying documents containing that information as required by  The Atomic Energy Act and  10 Code of Federal Regulation (CFR) Part 1045, Nuclear Classification and Declassification §1045.35 4 Not the Purpose This briefing does not authorize you to classify or declassify documents containing RD or FRD. Additional training is required to classify documents containing RD or FRD or identify RD or FRD within a document for redaction. Only authorized DOE

234

Bikini, Enewetak, and Rongelap Marshallese, and United States nuclear weapons testing in the Marshall Islands: A bibliography  

SciTech Connect (OSTI)

A considerable literature exists on the Bikini, Enewetak, and Rongelap Marshallese and their atolls; however, this literature consists of a large number of governmental documents that are relatively unknown and difficult to locate. This is particularly true of the documents of the Trust Territory of the Pacific Islands and those related to nuclear weapons testing in the Marshall Islands. Because a comprehensive bibliography on the impact of nuclear weapons testing on the Marshallese and their atolls does not exist, the preparation of a bibliography that includes sufficient information to locate all types of reports seems justified. This document is the bibliography.

Schultz, V. (Washington State Univ., Pullman, WA (USA)); Schultz, S.C. (Oregon Univ., Eugene, OR (USA)); Robison, W.L. (ed.) (Lawrence Livermore National Lab., CA (USA))

1991-05-01T23:59:59.000Z

235

Nuclear Energy Program  

Broader source: Energy.gov (indexed) [DOE]

September 30, 2002 September 30, 2002 NERAC Fall 2002 Meeting Office of Nuclear Energy, Science and Technology Major Program Developments Major Program Developments 6 June 2002: Department selects three U.S. electric utilities (Dominion Energy, Entergy, and Exelon) to participate in joint government/ industry projects to demonstrate NRC's Early Site Permit (ESP) process and seek NRC approval by mid-decade 6 July 2002: Secretary Abraham announces transition of management of the Idaho National Engineering and Environmental Laboratory to Nuclear Energy and revitalization of its nuclear R&D mission 6 September 2002: Generation IV International Forum reaches agreement on six advanced reactor and fuel cycle technologies for joint development Office of Nuclear Energy, Science and Technology

236

Nuclear weapons, the end of the cold war, and the future of the international system  

SciTech Connect (OSTI)

The collapse of empires, the overthrow of dynasties, the outbreak of plagues, the onset of revolutions, and even the improvement of the human condition itself - all of these are categories of events, which means that they have happened before and will almost certainly happen again. There are very few occurrences of which it can be said that nothing like them has ever taken place; but surely what took place in the New Mexico desert on July 16, 1945, qualifies as such as occurrence. The first test explosion of an atomic bomb, together with the actual use of that weapon three weeks later against the Japanese cities of Hiroshima and Nagasaki, was as sharp a break from the past as any in all of history. Theory had intersected reality to produce a weapon that was regarded at the time as unlike any other that had ever been invented, and that is still so regarded today, almost half a century later. The result, it now appears, has been a fundamental, and possibly permanent, change in human behavior. `The unleashed power of the atom has changed everything save our modes of thinking,` Albert Einstein wrote in 1946, `and thus we drift toward unparalleled catastrophe.` Einstein would have been as surprised as anyone else who lived through the early Cold War years had he known that Nagasaki would be the last occasion upon which atomic weapons would be used in anger for at least the next four and one-half decades, despite the fact that the great geopolitical rivalry between the United States and the Soviet Union would drag on throughout that length of time. History is full of unexpected developments, but few have been as completely unexpected as that the great powers would produce some 70,000 nuclear weapons between the end of World War II and the present day, without a single one of them having been used. Perfecting the ultimate instrument of war had made the ancient institution of war, for the first time in history, obsolete. Or so it would appear. 23 refs.

Gaddis, J.L. [Ohio Univ., Athens, OH (United States)

1992-12-31T23:59:59.000Z

237

Nuclear Energy University Programs  

Broader source: Energy.gov (indexed) [DOE]

1 Status 1 Status Presentation to Nuclear Energy Advisory Committee (NEAC) June 15, 2011 Michael Worley, NEUP Program Manager NEUP Funding is Program Driven Program Directed Funding Program Supported Funding Mission Supported Funding Natl. Labs Universities DOE-NE HQ Peer Review DOE NE Program Drivers 2 3 Summary of Improvements and New Programs for FY 2011 * Expand "Blue Sky" Research and Development (R&D) * Initiate Integrated Research Projects (IRP) * Expand and improve peer review data base * Evaluate adoption of NRC and NNSA Metrics as appropriate to NEUP * Conduct peer review at pre-application stage for R&D 2011 Proposed NEUP Budget - $61.8M * Program Directed Integrated Research Projects (IRP) - $12.0M (NEW)

238

American perspectives on security : energy, environment, nuclear weapons, and terrorism : 2010.  

SciTech Connect (OSTI)

We report findings from an Internet survey and a subset of questions administered by telephone among the American public in mid-2010 on US energy and environmental security. Key areas of investigation include public perceptions shaping the context for debate about a comprehensive national energy policy, and what levels of importance are assigned to various prospective energy technologies. Additionally, we investigate how public views on global climate change are evolving, how the public assesses the risks and benefits of nuclear energy, preferences for managing used nuclear fuel, and public trust in sources of scientific and technical information. We also report findings from a national Internet survey and a subset of questions administered by telephone in mid-2010 on public views of the relevance of US nuclear weapons today, support for strategic arms control, and assessments of the potential for nuclear abolition. Additionally, we analyze evolving public views of the threat of terrorism, assessments of progress in the struggle against terrorism, and tolerance for intrusive antiterror policies. Where possible, findings from each survey are compared with previous surveys in this series for analyses of trends.

Herron, Kerry Gale (University of Oklahoma, Norman, OK); Jenkins-Smith, Hank C. (University of Oklahoma, Norman, OK); Silva, Carol L. (University of Oklahoma, Norman, OK)

2011-03-01T23:59:59.000Z

239

Feasibility and options for purchasing nuclear weapons, highly enriched uranium (HEU) and plutonium from the former Soviet Union (FSU)  

SciTech Connect (OSTI)

In response to a recent tasking from the National Security Council, this report seeks to analyze the possible options open to the US for purchasing, from the former Soviet Union (FSU) substantial quantities of plutonium and highly enriched uranium recovered from the accelerated weapons retirements and dismantlements that will soon be taking place. The purpose of this paper is to identify and assess the implications of some of the options that now appear to be open to the United States, it being recognized that several issues might have to be addressed in further detail if the US Government, on its own, or acting with others seeks to negotiate any such purchases on an early basis. As an outgrowth of the dissolution of the Soviet Union three of the C.I.S. republics now possessing nuclear weapons, namely the Ukraine, Belarus, and Kazakhstan, have stated that it is their goal, without undue delay, to become non-nuclear weapon states as defined in the Non-Proliferation Treaty. Of overriding US concern is the proliferation of nuclear weapons in the Third World, and the significant opportunity that the availability of such a large quantity of surplus weapons grade material might present in this regard, especially to a cash-starved FSU Republic. Additionally, the US, in its endeavor to drawdown its own arsenal, needs to assure itself that these materials are not being reconfigured into more modern weapons within the CIS in a manner which would be inconsistent with the stated intentions and publicized activities. The direct purchase of these valuable materials by the US government or by interested US private enterprises could alleviate these security concerns in a straightforward and very expeditious manner, while at the same time pumping vitally needed hard currency into the struggling CIS economy. Such a purchase would seem to be entirely consistent with the Congressional mandate indicated by the Soviet Nuclear Threat Reduction Act of 1991.

NONE

1994-12-31T23:59:59.000Z

240

Physical and Mathematical Description of Nuclear Weapons Identification System (NWIS) Signatures  

SciTech Connect (OSTI)

This report describes all time and frequency analysis parameters measured with the new Nuclear Weapons Identification System (NWIS) processor with three input channels: (1) the 252Cf source ionization chamber (2) a detection channel; and (3) a second detection channel for active measurements. An intuitive and physical description of the various functions is given as well as a brief mathematical description and a brief description of how the data are acquired. If the fill five channel capability is used, the number of functions increases in number but not in type. The parameters provided by this new NWIS processor can be divided into two general classes: time analysis signatures including multiplicities and frequency analysis signatures. Data from measurements with an 18.75 kg highly enriched uranium (93.2 wt 0/0, 235U) metai casting for storage are presented to illustrate the various time and frequency analysis parameters.

Mattingly, J.K.; Mihalczo, J.T.; Mullens, J.A.; Valentine, T.E.

1997-09-26T23:59:59.000Z

Note: This page contains sample records for the topic "nuclear weapons program" from the National Library of EnergyBeta (NLEBeta).
While these samples are representative of the content of NLEBeta,
they are not comprehensive nor are they the most current set.
We encourage you to perform a real-time search of NLEBeta
to obtain the most current and comprehensive results.


241

A Passive Tamper Indicating Enclosure For Use Within A Nuclear Weapons Monitoring Regime  

SciTech Connect (OSTI)

AWE and PNNL are engaged in a technical collaboration investigating techniques to enhance continuity of knowledge over Treaty Accountable Items, with emphasis on a verified nuclear weapons dismantlement process. Tamper Indicating Enclosures (TIE) will likely be deployed as part of a chain of custody regime to indicate an unauthorised attempt to access a Treaty Accountable Item, or secure authenticated monitoring equipment. In 2011, the collaboration presented a paper at the INMM annual conference held in Palm Desert, CA titled “Passive Tamper Indicating Enclosures Incorporating Embedded Optical Fibre”, which discussed the concept of integrating optical fibres into TIEs for use as a passive tamper indicating mechanism. This paper provides an update on the Fibre Optic based TIE and introduces a second passive TIE concept based on the use of Poly(Methyl MethAcrylate) (PMMA). Concepts relating to deployment, tamper indication, and unique identification will be discussed.

White, Helen; Tanner, Jennifer E.; Allen, Keir; Benz, Jacob M.; McOmish, Sarah; Simmons, Kevin L.

2012-10-01T23:59:59.000Z

242

Low Prevalence of Chronic Beryllium Disease among Workers at a Nuclear Weapons Research and Development Facility  

SciTech Connect (OSTI)

To study the prevalence of beryllium sensitization (BeS) and chronic beryllium disease (CBD) in a cohort of workers from a nuclear weapons research and development facility. We evaluated 50 workers with BeS with medical and occupational histories, physical examination, chest imaging with HRCT (N=49), and pulmonary function testing. Forty of these workers also underwent bronchoscopy for bronchoalveolar lavage (BAL) and transbronchial biopsies. The mean duration of employment at the facility was 18 yrs and the mean latency (from first possible exposure) to time of evaluation was 32 yrs. Five of the workers had CBD at the time of evaluation (based on histology or HRCT); three others had evidence of probable CBD. These workers with BeS, characterized by a long duration of potential Be exposure and a long latency, had a low prevalence of CBD.

Arjomandi, M; Seward, J P; Gotway, M B; Nishimura, S; Fulton, G P; Thundiyil, J; King, T E; Harber, P; Balmes, J R

2010-01-11T23:59:59.000Z

243

A guide to archival collections relating to radioactive fallout from nuclear weapon testing  

SciTech Connect (OSTI)

This ninth edition of A Guide to Archival Collections Relating to Radioactive Fallout from Nuclear Weapon Testing constitutes History Associates Incorporated's (HAI) final report of its document collection, processing, and declassification efforts for the Nevada Field Office of the Department of Energy. The most significant feature of this edition is the updated HAI collection effort information. We confirmed the accuracy of this information using our screening, processing, and transmittal records. Unlike previous editions, funding limitations prevented us from systematically revising the collection descriptions and point-of-contact information for this final edition. This guide has been prepared by professional historians who have a working knowledge of many of the record collections included in the following pages. In describing materials, they have tried to include enough information so that persons unfamiliar with the complexities of large record systems will be able to determine that nature of the information in, and the quality of, each record collection.

Martin, B.W. (ed.)

1992-09-01T23:59:59.000Z

244

A guide to archival collections relating to radioactive fallout from nuclear weapon testing. Ninth edition  

SciTech Connect (OSTI)

This ninth edition of A Guide to Archival Collections Relating to Radioactive Fallout from Nuclear Weapon Testing constitutes History Associates Incorporated`s (HAI) final report of its document collection, processing, and declassification efforts for the Nevada Field Office of the Department of Energy. The most significant feature of this edition is the updated HAI collection effort information. We confirmed the accuracy of this information using our screening, processing, and transmittal records. Unlike previous editions, funding limitations prevented us from systematically revising the collection descriptions and point-of-contact information for this final edition. This guide has been prepared by professional historians who have a working knowledge of many of the record collections included in the following pages. In describing materials, they have tried to include enough information so that persons unfamiliar with the complexities of large record systems will be able to determine that nature of the information in, and the quality of, each record collection.

Martin, B.W. [ed.

1992-09-01T23:59:59.000Z

245

Historical Exposures to Chemicals at the Rocky Flats Nuclear Weapons Plant: A Pilot Retrospective Exposure Assessment  

SciTech Connect (OSTI)

In a mortality study of white males who had worked at the Rocky Flats Nuclear Weapons Plant between 1952 and 1979, an increased number of deaths from benign and unspecified intracranial neoplasms was found. A case-control study nested within this cohort investigated the hypothesis that an association existed between brain tumor death and exposure to either internally deposited plutonium or external ionizing radiation. There was no statistically significant association found between estimated radiation exposure from internally deposited plutonium and the development of brain tumors. Exposure by job or work area showed no significant difference between the cohort and the control groups. An update of the study found elevated risk estimates for (1) all lymphopoietic neoplasms, and (2) all causes of death in employees with body burdens greater than or equal to two nanocuries of plutonium. There was an excess of brain tumors for the entire cohort. Similar cohort studies conducted on worker populations from other plutonium handling facilities have not yet shown any elevated risks for brain tumors. Historically, the Rocky Flats Nuclear Weapons Plant used large quantities of chemicals in their production operations. The use of solvents, particularly carbon tetrachloride, was unique to Rocky Flats. No investigation of the possible confounding effects of chemical exposures was done in the initial studies. The objectives of the present study are to (1) investigate the history of chemical use at the Rocky Flats facility; (2) locate and analyze chemical monitoring information in order to assess employee exposure to the chemicals that were used in the highest volume; and (3) determine the feasibility of establishing a chemical exposure assessment model that could be used in future epidemiology studies.

Janeen Denise Robertson

1999-02-01T23:59:59.000Z

246

Electromagnetic Signature Technique as a Promising Tool to Verify Nuclear Weapons Storage and Dismantlement under a Nuclear Arms Control Regime  

SciTech Connect (OSTI)

The 2010 ratification of the New START Treaty has been widely regarded as a noteworthy national security achievement for both the Obama administration and the Medvedev-Putin regime, but deeper cuts are envisioned under future arms control regimes. Future verification needs will include monitoring the storage of warhead components and fissile materials and verifying dismantlement of warheads, pits, secondaries, and other materials. From both the diplomatic and technical perspectives, verification under future arms control regimes will pose new challenges. Since acceptable verification technology must protect sensitive design information and attributes, non-nuclear non-sensitive signatures may provide a significant verification tool without the use of additional information barriers. The use of electromagnetic signatures to monitor nuclear material storage containers is a promising technology with the potential to fulfill these challenging requirements. Research performed at Pacific Northwest National Laboratory (PNNL) has demonstrated that low frequency electromagnetic signatures of sealed metallic containers can be used to confirm the presence of specific components on a “yes/no” basis without revealing classified information. Arms control inspectors might use this technique to verify the presence or absence of monitored items, including both nuclear and non-nuclear materials. Although additional research is needed to study signature aspects such as uniqueness and investigate container-specific scenarios, the technique potentially offers a rapid and cost-effective tool to verify reduction and dismantlement of U.S. and Russian nuclear weapons.

Bunch, Kyle J.; Williams, Laura S.; Jones, Anthony M.; Ramuhalli, Pradeep

2012-08-01T23:59:59.000Z

247

Is there a future role for tactical nuclear weapon systems in the national military strategy. Study project  

SciTech Connect (OSTI)

This paper reviews the purpose and role that tactical nuclear weapon systems can provide in supporting the National Military Strategy (NMS), and recommends requirements be determined using a strategy based upon political, economic and military national interests versus the current target-based strategy. To draw implications for the NMS, the analysis reviews current strategic policy guidance, summarizes the current definition of deterrence theory, and provides rationales for maintaining tactical nuclear weapon systems for deterrence and warfighting in regional contingency operations against nuclear-capable forces. Based upon this analysis, recommendations are provided for joint planning, doctrine, and training initiatives needed to enhance the efficacy of the armed services in achieving national security policy objectives.

Stobbs, E.E.

1992-04-03T23:59:59.000Z

248

Derivation of models for nuclear weapon terrorist arming and detonation risk analysis  

SciTech Connect (OSTI)

This report investigates "use control" for the on-site arming and detonation, by terrorists, of stored weapon systems. We investigate both components of weapon "use control", which we define as: (1) weapon "use denial" * that we model as a probability, Pj (denial), that represents the chances that terrorists attempting to arm a type j weapon will commit a non-recoverable error, and (2) weapon "use delay" that we model as a random variable, Tj , that represents the arming delay imposed by the use control features of a type j weapon, before detonation can occur. Using information pertaining to the physical security system at a storage site, the postulated terrorist attack force size, and simulated combat engagement outcomes, we formulate the frequency, fj , and probability, P(dj ), of on-site detonation, for generic weapon types j. We derive a model that disjoins the performance of site physical security, from that for weapon use control, if the use control random variable Tj has a Uniform or histogram distribution. This is an especially significant result where most complex distributions can be adequately approximated with a histogram. Hence, we can conduct combat simulations to obtain the physical security performance of a specific storage site independent of the use control features associated with specific weapon types that are stored, or might be stored, at the site. In turn, we can obtain the use control performance for various weapon types, independent of where they are stored and the physical security systems surrounding them. Our models can then mathematically combine physical security performance and weapon use control performance for any combination of storage facility and weapon type.

Parziale, A A

1998-03-01T23:59:59.000Z

249

Uranium Weapons Components Successfully Dismantled | National...  

National Nuclear Security Administration (NNSA)

Successfully Dismantled March 20, 2007 Uranium Weapons Components Successfully Dismantled Oak Ridge, TN Continuing its efforts to reduce the size of the U.S. nuclear weapons...

250

The spread of nuclear-weapon-free zones: Building a new nuclear bargain  

SciTech Connect (OSTI)

The United States (US), France and Britain took a small step in the direction of nuclear disarmament when they announced they would ratify the protocols of the Treaty of Rarotonga, also called the South Pacific nuclear-free-zone treaty. The author examines the protocols of this treaty and the implications for its adoption.

Davis, Z.S.

1996-02-01T23:59:59.000Z

251

Nuclear Explosive and Weapon Surety Program (Informational Purposes Only)  

Broader source: Directives, Delegations, and Requirements [Office of Management (MA)]

This draft has been scheduled for final review before the Directives Review Board on 12-4-2014. All major comments and concerns should be provided to your DRB representative, following your organization process. If you do not know who your representative is, please see the list of DRB members at https://www.directives.doe.gov/beta/references/directives-review-board. If your office is represented by Ingrid Kolb, Director, Office of Management, please submit your major concerns and comments to the DRB Liaison, Camille Beben (Camille.Beben@hq.doe.gov; 202-586-4014). All major comments and concerns should be submitted by COB 12-2-2014.

2014-11-21T23:59:59.000Z

252

Bikini, Enewetak, and Rongelap Marshallese, and United States nuclear weapons testing in the Marshall Islands: A bibliography  

SciTech Connect (OSTI)

A considerable literature exists on the Bikini, Enewetak, and Rongelap Marshallese and their atolls; however, this literature consists of a large number of governmental documents that are relatively unknown and difficult to locate. This is particularly true of the documents of the Trust Territory of the Pacific Islands and those related to nuclear weapons testing in the Marshall Islands. Because a comprehensive bibliography on the impact of nuclear weapons testing on the Marshallese and their atolls does not exist, the preparation of a bibliography that includes sufficient information to locate all types of reports seems justified. Primary sources of information in preparing this bibliography were bibliographies on Oceania, citations in published papers, CIS Index and Abstracts, Monthly Catalog of United States Government Publications, Nuclear Science Abstracts, Energy Research Abstracts, numerous bibliographies on radiation ecology, and suggestions by many individuals whom we contacted. One goal in this bibliography is to include complete documentation of the source of congressional reports and other government-related publications. In addition, page numbers for material in this bibliography are provided in parentheses when the subject matter of a book or document is not restricted to nuclear weapons testing in the Marshall Islands.

Robison, W.L. (ed.) (Lawrence Livermore National Lab., CA (USA)); Schultz, V. (Washington State Univ., Pullman, WA (USA)); Schultz, S.C. (Oregon Univ., Eugene, OR (USA))

1991-04-01T23:59:59.000Z

253

A comparison of delayed radiobiological effects of depleted-uranium munitions versus fourth-generation nuclear weapons  

E-Print Network [OSTI]

It is shown that the radiological burden due to the battle-field use of circa 400 tons of depleted-uranium munitions in Iraq (and of about 40 tons in Yugoslavia) is comparable to that arising from the hypothetical battle-field use of more than 600 kt (respectively 60 kt) of high-explosive equivalent pure-fusion fourth-generation nuclear weapons. Despite the limited knowledge openly available on existing and future nuclear weapons, there is sufficient published information on their physical principles and radiological effects to make such a comparison. In fact, it is shown that this comparison can be made with very simple and convincing arguments so that the main technical conclusions of the paper are undisputable -- although it would be worthwhile to supplement the hand calculations presented in the paper by more detailed computer simulations in order to consolidate the conclusions and refute any possible objections.

Gsponer, A; Vitale, B; Gsponer, Andre; Hurni, Jean-Pierre; Vitale, Bruno

2002-01-01T23:59:59.000Z

254

Iraq's shop-till-you-drop nuclear program  

SciTech Connect (OSTI)

In a series of articles that began in March 1991, the authors have tried to separate fact from fiction about Iraq's ability to build nuclear weapons and to produce material to fuel them. After exposing Iraq's efforts to enrich uranium and design an atomic bomb, UN and IAEA experts zeroed in on how Iraq put its program together. The basic answer is that along with determination and persistence, Iraq had a great deal of foreign help. Iraq's Petrochemical Three,' the secret nuclear program conducted under the authority of its Atomic Energy Commission with links to the Defense Ministry and the Ministry of Industry and Military Industrialization, received massive infusions of money and resources. Like the Manhattan Project that built the first atomic bombs in the United States, Iraq's program simultaneously pursued a number of different technical avenues to the bomb. Not knowing which efforts would succeed, Iraq poured billions of dollars into its multifaceted quest. Providing for these programs required the establishment of elaborate procurement networks in Europe, North America, and Asia. Like the technical quest, the procurement effort was carried out on many fronts at once. Diplomacy and secrecy were required, because few companies would knowingly supply a nuclear weapons program, or even a secret nuclear program that was ostensibly for civil purposes. Iraq showed great ingenuity in hiding its purchases behind such innocuous pursuits as automobile manufacturing, dairy production, and oil refining.

Albright, D. (Friends of the Earth, Washington, DC (United States)); Hibbs, M.

1992-04-01T23:59:59.000Z

255

Office of Nuclear Facility Safety Programs  

Broader source: Energy.gov [DOE]

The Office of Nuclear Facility Safety Programs establishes nuclear safety requirements related to safety management programs that are essential to the safety of DOE nuclear facilities.

256

Fehner and Gosling, Atmospheric Nuclear Weapons Testing, 1951-1963. Battlefield of the Cold War: The Nevada Test Site, Volume I  

Broader source: Energy.gov [DOE]

Terrence R. Fehner and F.G. Gosling. Atmospheric Nuclear Weapons Testing, 1951-1963. Battlefield of the Cold War: The Nevada Test Site, Volume I (pdf). DOE/MA-0003. Washington, D.C.: Department of...

257

Development of the Joint Stand Off Weapon (JSOW) Moving Target Capability: AGM-154 Block Three program.  

E-Print Network [OSTI]

?? U. S. Naval Tactical Aviation capabilities are continually analyzed for capability gaps. This analysis has identified the need for a medium range standoff weapon… (more)

Turco, Kyle Travis

2006-01-01T23:59:59.000Z

258

Programs | National Nuclear Security Administration  

National Nuclear Security Administration (NNSA)

Programs | National Nuclear Security Administration Programs | National Nuclear Security Administration Our Mission Managing the Stockpile Preventing Proliferation Powering the Nuclear Navy Emergency Response Recapitalizing Our Infrastructure Continuing Management Reform Countering Nuclear Terrorism About Us Our Programs Our History Who We Are Our Leadership Our Locations Budget Our Operations Media Room Congressional Testimony Fact Sheets Newsletters Press Releases Speeches Events Social Media Video Gallery Photo Gallery NNSA Archive Federal Employment Apply for Our Jobs Our Jobs Working at NNSA Blog The National Nuclear Security Administration Programs Home > Field Offices > Welcome to the Sandia Field Office > Programs Programs The SFO Programs office is responsible for direction, day-to-day oversight and contract administration activities in support of the technical

259

A comparative study of 239,240Pu in soil near the former Rocky Flats Nuclear Weapons Facility, Golden, CO  

Science Journals Connector (OSTI)

The Rocky Flats Nuclear Weapons Plant near Golden, CO released plutonium into the environment during almost 40 years of operation. Continuing concern over possible health impacts of these releases has been heightened by lack of public disclosure of the US Department of Energy (DOE) activities. A dose reconstruction study for the Rocky Flats facilities, begun in 1990, provided a unique opportunity for concerned citizens to design and implement field studies without participation of the DOE, its contractors, or other government agencies. The Citizens Environmental Sampling Committee was formed in late 1992 and conducted a field sampling program in 1994. Over 60 soil samples, including both surface and core samples, were collected from 28 locations where past human activities would have minimal influence on contaminant distributions in soil. Cesium-137 activity was used as a means to assess whether samples were collected in undisturbed locations. The distribution of plutonium (as 239,240Pu) in soil was consistent with past sampling conducted by DOE, the Colorado Department of Public Health and Environment, and others. Elevated levels of 239,240Pu were found immediately east of the Rocky Flats Plant, with concentrations falling rapidly with distance from the plant to levels consistent with background from fallout. Samples collected in areas south, west, and north of the plant were generally consistent with background from fallout. No biases in past sampling due to choice of sampling locations or sampling methodology were evident. The study shows that local citizens, when provided sufficient resources, can design and implement technical studies that directly address community concerns where trust in the regulated community and/or regulators is low.

Todd D. Margulies; Niels D. Schonbeck; Normie C. Morin-Voillequé; Katherine A. James; James M. LaVelle

2004-01-01T23:59:59.000Z

260

Nuclear Explosive Safety  

Broader source: Directives, Delegations, and Requirements [Office of Management (MA)]

The Order establishes requirements to implement the nuclear explosive safety (NES) elements of DOE O 452.1E, Nuclear Explosive and Weapon Surety Program, for routine and planned nuclear explosive operations (NEOs).

2014-07-10T23:59:59.000Z

Note: This page contains sample records for the topic "nuclear weapons program" from the National Library of EnergyBeta (NLEBeta).
While these samples are representative of the content of NLEBeta,
they are not comprehensive nor are they the most current set.
We encourage you to perform a real-time search of NLEBeta
to obtain the most current and comprehensive results.


261

Nuclear Explosive Safety  

Broader source: Directives, Delegations, and Requirements [Office of Management (MA)]

This Department of Energy (DOE) Order establishes requirements to implement the nuclear explosive safety (NES) elements of DOE O 452.1E, Nuclear Explosive and Weapon Surety Program, or successor directive, for routine and planned nuclear explosive operations (NEOs).

2015-01-26T23:59:59.000Z

262

Future Science & Technology Programs | National Nuclear Security...  

National Nuclear Security Administration (NNSA)

Future Science & Technology Programs | National Nuclear Security Administration People Mission Managing the Stockpile Preventing Proliferation Powering the Nuclear Navy Emergency...

263

Pantex receives eight NNSA DP awards | National Nuclear Security...  

National Nuclear Security Administration (NNSA)

Program. The awards are given for significant achievements in quality, productivity, cost savings, safety or creativity in support of the nuclear weapons program. Read about the...

264

Y-12 employees receive awards recognizing excellence in nuclear...  

Broader source: All U.S. Department of Energy (DOE) Office Webpages (Extended Search)

employees receive ... Y-12 employees receive awards recognizing excellence in nuclear weapons program Posted: October 6, 2014 - 9:09am Defense Programs 2013 Award of Excellence...

265

President Truman Orders Development of Thermonuclear Weapon ...  

Broader source: All U.S. Department of Energy (DOE) Office Webpages (Extended Search)

Orders Development of Thermonuclear Weapon | National Nuclear Security Administration Facebook Twitter Youtube Flickr RSS People Mission Managing the Stockpile Preventing...

266

Environment and Nuclear Programs | Department of Energy  

Broader source: All U.S. Department of Energy (DOE) Office Webpages (Extended Search)

Environment and Nuclear Programs Environment and Nuclear Programs Environment and Nuclear Programs Cooling Tower Reflection | Credit: DOE Archives Cooling Tower Reflection | Credit: DOE Archives Offices of the Deputy General Counsel for Environment and Nuclear Programs Office of the Assistant General Counsel for Environment (GC-51) Office of the Assistant General Counsel for Civilian Nuclear Programs (GC-52 ) Office of the Assistant General Counsel for International and National Security Programs (GC-53) Office of NEPA Policy and Compliance (GC-54) Office of Standard Contract Management (GC-55) Litigation and Enforcement Environment and Nuclear Programs Environment Civilian Nuclear Programs International and National Security Programs NEPA Policy and Compliance Standard Contract Management Technology Transfer and Procurement

267

On the public perception of the risks from nuclear weapons: Would oralloy be more acceptable than plutonium?  

SciTech Connect (OSTI)

We technologists generally only address risk magnitudes in our analyses, although other studies have found nineteen additional dimensions for the way the public perceives risk. These include controllability, voluntariness, catastrophic potential, and trust in the institution putting forth the risk. We and the geneml public use two different languages, and to understand what their concerns are, we need to realize that the culture surrounding nuclear weapons is completely alien to the general public. Ultimately, the acceptability of a risk is a values question, not a technical question. For most of the risk dimensions, the public would perceive no significant difference between using oralloy and plutonium. This does not mean that the suggested design change should not be proposed, only that the case for, or against, it be made comprehensively using the best information available today. The world has changed: the ending of the cold war has decreased the benefit of nuclear weapons in the minds of the public and the specter of Chernobyl has increased the perceived risks of processes that use radioactive materials. Our analyses need to incorporate the lessons pertinent to this newer world.

Kunsman, D.M.

1993-03-01T23:59:59.000Z

268

On the public perception of the risks from nuclear weapons: Would oralloy be more acceptable than plutonium  

SciTech Connect (OSTI)

We technologists generally only address risk magnitudes in our analyses, although other studies have found nineteen additional dimensions for the way the public perceives risk. These include controllability, voluntariness, catastrophic potential, and trust in the institution putting forth the risk. We and the geneml public use two different languages, and to understand what their concerns are, we need to realize that the culture surrounding nuclear weapons is completely alien to the general public. Ultimately, the acceptability of a risk is a values question, not a technical question. For most of the risk dimensions, the public would perceive no significant difference between using oralloy and plutonium. This does not mean that the suggested design change should not be proposed, only that the case for, or against, it be made comprehensively using the best information available today. The world has changed: the ending of the cold war has decreased the benefit of nuclear weapons in the minds of the public and the specter of Chernobyl has increased the perceived risks of processes that use radioactive materials. Our analyses need to incorporate the lessons pertinent to this newer world.

Kunsman, D.M.

1993-03-01T23:59:59.000Z

269

Portuguese research program on nuclear fusion  

Science Journals Connector (OSTI)

The Portuguese research program on nuclear fusion is presented. The experimental activity associated with...

C. A. F. Varandas; J. A. C. Cabral; M. E. Manso; F. Serra

1994-12-01T23:59:59.000Z

270

Our Programs | National Nuclear Security Administration  

National Nuclear Security Administration (NNSA)

Programs | National Nuclear Security Administration Programs | National Nuclear Security Administration Our Mission Managing the Stockpile Preventing Proliferation Powering the Nuclear Navy Emergency Response Recapitalizing Our Infrastructure Continuing Management Reform Countering Nuclear Terrorism About Us Our Programs Our History Who We Are Our Leadership Our Locations Budget Our Operations Media Room Congressional Testimony Fact Sheets Newsletters Press Releases Speeches Events Social Media Video Gallery Photo Gallery NNSA Archive Federal Employment Apply for Our Jobs Our Jobs Working at NNSA Blog Our Programs Home > About Us > Our Programs Our Programs NNSA's program support is divided into several key program areas including Defense, Nuclear Nonproliferation, Naval Reactors, Emergency Operations, Infrastructure and Environment, Nuclear Security, Management and

271

The Centers for Disease Control and Prevention (CDC) provides independent oversight to the U.S. Army's chemical weapons elimination program and serves as an important element in ensuring the  

E-Print Network [OSTI]

to the U.S. Army's chemical weapons elimination program and serves as an important element in ensuring is prevention with vigilance. The CDC chemical weapons elimination team's mission is to protect public health and nonstockpile chemical weapons. This mission is mandated by Public Laws 91-121, 91-441, and 99

272

International Programs | National Nuclear Security Administration  

National Nuclear Security Administration (NNSA)

Programs | National Nuclear Security Administration Programs | National Nuclear Security Administration Our Mission Managing the Stockpile Preventing Proliferation Powering the Nuclear Navy Emergency Response Recapitalizing Our Infrastructure Continuing Management Reform Countering Nuclear Terrorism About Us Our Programs Our History Who We Are Our Leadership Our Locations Budget Our Operations Media Room Congressional Testimony Fact Sheets Newsletters Press Releases Speeches Events Social Media Video Gallery Photo Gallery NNSA Archive Federal Employment Apply for Our Jobs Our Jobs Working at NNSA Blog The National Nuclear Security Administration International Programs Home > About Us > Our Programs > Emergency Response > International Programs International Programs NNSA prepares for nuclear and radiological emergencies across the globe.

273

Toward a more rigorous application of margins and uncertainties within the nuclear weapons life cycle : a Sandia perspective.  

SciTech Connect (OSTI)

This paper presents the conceptual framework that is being used to define quantification of margins and uncertainties (QMU) for application in the nuclear weapons (NW) work conducted at Sandia National Laboratories. The conceptual framework addresses the margins and uncertainties throughout the NW life cycle and includes the definition of terms related to QMU and to figures of merit. Potential applications of QMU consist of analyses based on physical data and on modeling and simulation. Appendix A provides general guidelines for addressing cases in which significant and relevant physical data are available for QMU analysis. Appendix B gives the specific guidance that was used to conduct QMU analyses in cycle 12 of the annual assessment process. Appendix C offers general guidelines for addressing cases in which appropriate models are available for use in QMU analysis. Appendix D contains an example that highlights the consequences of different treatments of uncertainty in model-based QMU analyses.

Klenke, Scott Edward; Novotny, George Charles; Paulsen Robert A., Jr.; Diegert, Kathleen V.; Trucano, Timothy Guy; Pilch, Martin M.

2007-12-01T23:59:59.000Z

274

DEPARTMENT OF NUCLEAR ENGINEERING ACADEMIC PROGRAM REVIEW  

E-Print Network [OSTI]

DEPARTMENT OF NUCLEAR ENGINEERING ACADEMIC PROGRAM REVIEW MARCH 26-28, 2007 Department of Nuclear TABLES Table 2.5-1 Department of Nuclear Engineering Faculty 16 Table 2.5-2 Department of Nuclear Programs 21 Table 2.5-4 Faculty Service on Noteworthy Committees 23 Table 2.11-1 TAMU Nuclear Engineering

275

CRAD, Configuration Management - Los Alamos National Laboratory Weapons  

Broader source: Energy.gov (indexed) [DOE]

Configuration Management - Los Alamos National Laboratory Configuration Management - Los Alamos National Laboratory Weapons Facility CRAD, Configuration Management - Los Alamos National Laboratory Weapons Facility April 2004 A section of Appendix C to DOE G 226.1-2 "Federal Line Management Oversight of Department of Energy Nuclear Facilities." Consists of Criteria Review and Approach Documents (CRADs) used for an assessment of the Configuration Management program at the Los Alamos National Laboratory, Weapons Facility. CRADs provide a recommended approach and the types of information to gather to assess elements of a DOE contractor's programs. CRAD, Configuration Management - Los Alamos National Laboratory Weapons Facility More Documents & Publications CRAD, Configuration Management - Los Alamos National Laboratory TA 55 SST

276

Neutralization of chemical and biological weapons of mass destruction using nuclear methods  

E-Print Network [OSTI]

Nuclear Science Center Reactor. M. S. Thesis. Texas A&M University. August 2001. Kruger, H. and Mcndelsohn, E. Neutralization of Chemical/Biological Ballistic Warheads by Low- Yield Nuclear Interceptors. Lawrence Livermorc National Laboratory; (UCRL...-ID-111403); August 1992. Mendelsohn, E. Neutron Shielding of Chemical/Biological Warheads to Minimize the Effects from Low-yield Nuclear Interceptors. Lawrence Livermore National Laboratory; (UCRL-ID-112014); October 1992. Mendelsohn, E. Effectiveness...

McAffrey, Veronica Lynn

2012-06-07T23:59:59.000Z

277

Nuclear Energy University Programs  

Broader source: Energy.gov (indexed) [DOE]

NEUP FY2011 Process Presentation to NEAC December 9, 2010 Marsha Lambregts, NEUP-IO Manager FUNDED R&D PROPOSALS BY STATE 2010 * Awards/Full Submissions - 42/128 * Awards to PIs for first time - 29 * Awards to junior faculty - 20 * Awards that are experimental - 30 * Awards in materials and waste - 30 * Awards to Nuclear Engineering Faculty - 18 * Number of universities receiving awards - 26 * Number of awards with lab partners - 20 * Number of universities receiving awards for first time - 8 2 2010 INFRASTRUCTURE * Major Reactor: 4 awards for a total of $3.75 M * Minor Reactor: 12 awards for $1.95 M * General Scientific Infrastructure: 33 award for $7.47 M * Since 2009, $ 19.438 M has been awarded in General Scientific Infrastructure (did not issue Major or Minor Reactor calls in 2009).

278

WEAPONS ON CAMPUS REGULATION WEAPONS ON CAMPUS  

E-Print Network [OSTI]

WEAPONS ON CAMPUS REGULATION CHAPTER 20 WEAPONS ON CAMPUS 8VAC115-20-10. Definitions, including the Virginia Institute of Marine Science. "Weapon" means any firearm or any other weapon listed115-20-20. Possession of weapons prohibited. Possession or carrying of any weapon by any person

Lewis, Robert Michael

279

Supercritical-fluid carbon dioxide (SCCO{sub 2}) cleaning of nuclear weapon components  

SciTech Connect (OSTI)

Supercritical fluid carbon dioxide (SCCO{sub 2}) has been evaluated as a cleaning solvent for the cleaning of plutonium (Pu) metal parts. The results of the evaluation show that SCCO{sub 2} is an effective alternative to halogenated solvents that are conventionally used for removing organic and inorganic contaminants from the surface of these parts. The cleaning process was demonstrated at the laboratory scale for steel and uranium substrates and has been found to be compatible with Pu. The efficacy of this cleaning method is found to be dependent on process conditions of pressure, temperature, fluid-flow rate, as well as cleaning time. Process parameters of P > 2,500 psi, T > 40 C, and moderate fluid flow rates, produced good cleaning results in less than 10 minutes using a simple flow-through process configuration. Within the parameter range studied, cleaning efficiency generally improved with increasing process pressure and flow rate. SCCO{sub 2} cleaning is suitable for a variety of component cleaning tasks and is adaptable to precision cleaning requirements. The SCCO{sub 2} cleaning process is currently being developed for deployment for weapons production at LANL.

Taylor, C.M.V.; Sivils, L.D.; Rubin, J.B.

1998-05-01T23:59:59.000Z

280

Radiological Assistance Program | National Nuclear Security Administration  

Broader source: All U.S. Department of Energy (DOE) Office Webpages (Extended Search)

Assistance Program | National Nuclear Security Administration Assistance Program | National Nuclear Security Administration Our Mission Managing the Stockpile Preventing Proliferation Powering the Nuclear Navy Emergency Response Recapitalizing Our Infrastructure Continuing Management Reform Countering Nuclear Terrorism About Us Our Programs Our History Who We Are Our Leadership Our Locations Budget Our Operations Media Room Congressional Testimony Fact Sheets Newsletters Press Releases Speeches Events Social Media Video Gallery Photo Gallery NNSA Archive Federal Employment Apply for Our Jobs Our Jobs Working at NNSA Blog Radiological Assistance Program Home > About Us > Our Programs > Emergency Response > Responding to Emergencies > First Responders > Radiological Assistance Program Radiological Assistance Program RAP Logo NNSA's Radiological Assistance Program (RAP) is the nation's

Note: This page contains sample records for the topic "nuclear weapons program" from the National Library of EnergyBeta (NLEBeta).
While these samples are representative of the content of NLEBeta,
they are not comprehensive nor are they the most current set.
We encourage you to perform a real-time search of NLEBeta
to obtain the most current and comprehensive results.


281

Radiological Assistance Program | National Nuclear Security Administration  

National Nuclear Security Administration (NNSA)

Assistance Program | National Nuclear Security Administration Assistance Program | National Nuclear Security Administration Our Mission Managing the Stockpile Preventing Proliferation Powering the Nuclear Navy Emergency Response Recapitalizing Our Infrastructure Continuing Management Reform Countering Nuclear Terrorism About Us Our Programs Our History Who We Are Our Leadership Our Locations Budget Our Operations Media Room Congressional Testimony Fact Sheets Newsletters Press Releases Speeches Events Social Media Video Gallery Photo Gallery NNSA Archive Federal Employment Apply for Our Jobs Our Jobs Working at NNSA Blog Radiological Assistance Program Home > About Us > Our Programs > Emergency Response > Responding to Emergencies > First Responders > Radiological Assistance Program Radiological Assistance Program RAP Logo NNSA's Radiological Assistance Program (RAP) is the nation's

282

Analysis and section of processes for the disposition of excess fissile material from nuclear weapon dismantlement in the United States  

SciTech Connect (OSTI)

The end of the cold war and the acceleration of nuclear disarmament efforts by the United States (US) and Russia are generating large quantities of surplus fissile nuclear materials that are no longer needed for military purposes. The safe and secure disposition of this surplus material to prevent theft or reuse in weapons has become a high priority for the US Department of Energy (USDOE). Many options exist for storage and disposition (use or disposal) of these surplus materials. The criteria, which have been developed from the basis for a preliminary ``screening`` of options, to eliminate from further consideration those options that do not meet minimal requirements. Factors, or attributes, contained in the screening and selection criteria include: (1) resistance to theft and diversion by unauthorized parties, (2) resistance to retrieval, extraction, and reuse by the host nation, (3) technical viability, (4) environmental, safety, and health impacts, (5) cost effectiveness, (6) timeliness, (7) fostering of progress and cooperation with Russia and others, (8) public and institutional acceptance, and (9) additional benefits. The evaluation of environmental impacts, in accordance with the US National Environmental Policy Ac (NEPA) process, is an integral part of the overall evaluation process. Because of the variety of physical and chemical forms of the nuclear material inventory, and because of the large number of possible disposition technologies and final forms, several hundred possible pathways to disposition have been defined and have undergone a systematic selection process. Also, because nuclear material disposition will have far ranging impacts, extensive public, in the form of public and stakeholder, input was integral to the selection process.

Myers, B.R.; Armantrout, G.A. [Lawrence Livermore National Lab., CA (United States); Erickson, R. [Los Alamos National Lab., NM (United States)

1995-02-01T23:59:59.000Z

283

Predictive Science Academic Alliance Program | National Nuclear...  

National Nuclear Security Administration (NNSA)

Predictive Science Academic Alliance Program | National Nuclear Security Administration Facebook Twitter Youtube Flickr RSS People Mission Managing the Stockpile Preventing...

284

Office of Nuclear Facility Safety Programs: Nuclear Facility Training  

Broader source: All U.S. Department of Energy (DOE) Office Webpages (Extended Search)

Safety (HS-30) Safety (HS-30) Office of Nuclear Safety Home » Directives » Nuclear and Facility Safety Policy Rules » Nuclear Safety Workshops Technical Standards Program » Search » Approved Standards » Recently Approved » RevCom for TSP » Monthly Status Reports » Archive » Feedback DOE Nuclear Safety Research & Development Program Office of Nuclear Safety Basis & Facility Design (HS-31) Office of Nuclear Safety Basis & Facility Design - About Us » Nuclear Policy Technical Positions/Interpretations » Risk Assessment Working Group » Criticality Safety » DOE O 420.1C Facility Safety » Beyond Design Basis Events Office of Nuclear Facility Safety Programs (HS-32) Office of Nuclear Facility Safety Programs - About Us » Facility Representative Program

285

NNSA honors SRS employees for excellent support | National Nuclear...  

National Nuclear Security Administration (NNSA)

individual and two teams for their "significant achievement in quality, productivity, cost savings, safety or creativity in support of NNSA's nuclear weapons program." Honorees...

286

NNSA honors Y-12 employees | National Nuclear Security Administration  

National Nuclear Security Administration (NNSA)

are given annually to recognize significant achievements in quality, productivity, cost savings, safety or creativity in support of NNSA's nuclear weapons program. Sep 27,...

287

Welcome to the NNSA Production Office | National Nuclear Security...  

National Nuclear Security Administration (NNSA)

management of the Pantex Plant, Amarillo, Texas, and the Y-12 National Security Complex, Oak Ridge, Tenn. Pantex handles nuclear weapons surveillance and life extension programs;...

288

Physicist Seymour Sack dies | National Nuclear Security Administration  

National Nuclear Security Administration (NNSA)

1964. Sack was instrumental in developing the first stages of all of the two-stage thermonuclear devices within the nuclear stockpile. His weapon design programs introduced...

289

Survey of Dynamic Simulation Programs for Nuclear Fuel Reprocessing  

SciTech Connect (OSTI)

The absence of any industrial scale nuclear fuel reprocessing in the U.S. has precluded the necessary driver for developing the advanced simulation capability now prevalent in so many other industries. Modeling programs to simulate the dynamic behavior of nuclear fuel separations and processing were originally developed to support the US government’s mission of weapons production and defense fuel recovery. Consequently there has been little effort is the US devoted towards improving this specific process simulation capability during the last two or three decades. More recent work has been focused on elucidating chemical thermodynamics and developing better models of predicting equilibrium in actinide solvent extraction systems. These equilibrium models have been used to augment flowsheet development and testing primarily at laboratory scales. The development of more robust and complete process models has not kept pace with the vast improvements in computational power and user interface and is significantly behind simulation capability in other chemical processing and separation fields.

Troy J. Tranter; Daryl R. Haefner

2008-06-01T23:59:59.000Z

290

GTRI's Convert program | National Nuclear Security Administration  

National Nuclear Security Administration (NNSA)

program | National Nuclear Security Administration program | National Nuclear Security Administration Our Mission Managing the Stockpile Preventing Proliferation Powering the Nuclear Navy Emergency Response Recapitalizing Our Infrastructure Continuing Management Reform Countering Nuclear Terrorism About Us Our Programs Our History Who We Are Our Leadership Our Locations Budget Our Operations Media Room Congressional Testimony Fact Sheets Newsletters Press Releases Speeches Events Social Media Video Gallery Photo Gallery NNSA Archive Federal Employment Apply for Our Jobs Our Jobs Working at NNSA Blog GTRI's Convert program Home > About Us > Our Programs > Nonproliferation > Global Threat Reduction Initiative > GTRI's Convert program GTRI's Convert program One of Global Threat Reduction Initiative's (GTRI) three key pillars is

291

Program Activities | National Nuclear Security Administration  

National Nuclear Security Administration (NNSA)

Activities | National Nuclear Security Administration Activities | National Nuclear Security Administration Our Mission Managing the Stockpile Preventing Proliferation Powering the Nuclear Navy Emergency Response Recapitalizing Our Infrastructure Continuing Management Reform Countering Nuclear Terrorism About Us Our Programs Our History Who We Are Our Leadership Our Locations Budget Our Operations Media Room Congressional Testimony Fact Sheets Newsletters Press Releases Speeches Events Social Media Video Gallery Photo Gallery NNSA Archive Federal Employment Apply for Our Jobs Our Jobs Working at NNSA Blog Program Activities Home > About Us > Our Programs > Defense Programs > Future Science & Technology Programs > Office of Advanced Simulation and Computing and Institutional R&D Programs > About ASC > Program Activities

292

Bret Knapp to head combined Weapons Engineering, Weapons Physics  

Broader source: All U.S. Department of Energy (DOE) Office Webpages (Extended Search)

Weapons Engineering, Weapons Physics Directorates Weapons Engineering, Weapons Physics Directorates Bret Knapp to head combined Weapons Engineering, Weapons Physics Directorates at Los Alamos National Laboratory New leadership position will allow for greater integration in the planning and execution of the stockpile stewardship program. August 18, 2009 Los Alamos National Laboratory sits on top of a once-remote mesa in northern New Mexico with the Jemez mountains as a backdrop to research and innovation covering multi-disciplines from bioscience, sustainable energy sources, to plasma physics and new materials. Los Alamos National Laboratory sits on top of a once-remote mesa in northern New Mexico with the Jemez mountains as a backdrop to research and innovation covering multi-disciplines from bioscience, sustainable energy

293

Current projects - Nuclear Data Program, Nuclear Engineering Division  

Broader source: All U.S. Department of Energy (DOE) Office Webpages (Extended Search)

Current Projects Current Projects Nuclear Data Program Overview Current Projects & Recent Activities Collaborating Organizations Publications Nuclear Data Measurements (NDM) Reports Experimental Nuclear Data Resources Contact ND Program Related Resources Other Major Programs Work with Argonne Contact us For Employees Site Map Help Join us on Facebook Follow us on Twitter NE Division on Flickr Nuclear Data Program Current Projects Bookmark and Share Compilation and evaluation of nuclear structure and decay data for the IAEA coordinated International Nuclear Structure and Decay Data Network. Argonne Nuclear Data Program has the responsibility for evaluations of A=176-179 & 199-209 mass chains. These evaluations are included in the world most completed and comprehensive nuclear structure

294

CRAD, Configuration Management- Los Alamos National Laboratory Weapons Facility  

Broader source: Energy.gov [DOE]

A section of Appendix C to DOE G 226.1-2 "Federal Line Management Oversight of Department of Energy Nuclear Facilities." Consists of Criteria Review and Approach Documents (CRADs) used for an assessment of the Configuration Management program at the Los Alamos National Laboratory, Weapons Facility.

295

Weapons assessment efficiencies through use of nondestructive laser gas  

Broader source: All U.S. Department of Energy (DOE) Office Webpages (Extended Search)

Weapons assessment efficiencies through use of nondestructive laser Weapons assessment efficiencies through use of nondestructive laser gas sampling Weapons assessment efficiencies through use of nondestructive laser gas sampling Nondestructive laser welding process far less expensive, no underground testing. June 8, 2012 Nondestructive Laser Gas Sampling Nondestructive Laser Gas Sampling is expected to save several million dollars per year and requires no underground testing. "We're continually innovating and working to improve the way we do business, and NDLGS is a big step for us," said National Nuclear Security Administration Deputy Administrator for Defense Programs Don Cook. New weapons assessment technology engineered: nondestructive laser welding process far less expensive, no underground testing Valveless Laser Processing

296

Publications 2008 - Nuclear Data Program - Nuclear Engineering Division  

Broader source: All U.S. Department of Energy (DOE) Office Webpages (Extended Search)

8 8 Nuclear Data Program Overview Current Projects & Recent Activities Collaborating Organizations Publications [Publications 2011] [Publications 2010] [Publications 2009] [Publications 2008] [Publications 2007] [Publications 2006] [Publications 2005] [Publications 2004] [Publications 2003] [Publications 2002] [Publications 2001] [Publications 2000] [Publications 1999] [Publications 1998] [Publications 1997] [Other Publications] Nuclear Data Measurements (NDM) Reports Experimental Nuclear Data Resources Contact ND Program Related Resources Other Major Programs Work with Argonne Contact us For Employees Site Map Help Join us on Facebook Follow us on Twitter NE Division on Flickr Nuclear Data Program Publications: 2008 References Bookmark and Share F.G. Kondev Nuclear Data Sheets for A=206

297

Risk in the Weapons Stockpile  

SciTech Connect (OSTI)

When it comes to the nuclear weapons stockpile, risk must be as low as possible. Design and care to keep the stockpile healthy involves all aspects of risk management. Design diversity is a method that helps to mitigate risk.

Noone, Bailey C [Los Alamos National Laboratory

2012-08-14T23:59:59.000Z

298

Consequence modeling for nuclear weapons probabilistic cost/benefit analyses of safety retrofits  

SciTech Connect (OSTI)

The consequence models used in former studies of costs and benefits of enhanced safety retrofits are considered for (1) fuel fires; (2) non-nuclear detonations; and, (3) unintended nuclear detonations. Estimates of consequences were made using a representative accident location, i.e., an assumed mixed suburban-rural site. We have explicitly quantified land- use impacts and human-health effects (e.g. , prompt fatalities, prompt injuries, latent cancer fatalities, low- levels of radiation exposure, and clean-up areas). Uncertainty in the wind direction is quantified and used in a Monte Carlo calculation to estimate a range of results for a fuel fire with uncertain respirable amounts of released Pu. We define a nuclear source term and discuss damage levels of concern. Ranges of damages are estimated by quantifying health impacts and property damages. We discuss our dispersal and prompt effects models in some detail. The models used to loft the Pu and fission products and their particle sizes are emphasized.

Harvey, T.F.; Peters, L.; Serduke, F.J.D.; Hall, C.; Stephens, D.R.

1998-01-01T23:59:59.000Z

299

Minority Serving Institutions Internship Program | National Nuclear  

National Nuclear Security Administration (NNSA)

Institutions Internship Program | National Nuclear Institutions Internship Program | National Nuclear Security Administration Our Mission Managing the Stockpile Preventing Proliferation Powering the Nuclear Navy Emergency Response Recapitalizing Our Infrastructure Continuing Management Reform Countering Nuclear Terrorism About Us Our Programs Our History Who We Are Our Leadership Our Locations Budget Our Operations Media Room Congressional Testimony Fact Sheets Newsletters Press Releases Speeches Events Social Media Video Gallery Photo Gallery NNSA Archive Federal Employment Apply for Our Jobs Our Jobs Working at NNSA Blog Minority Serving Institutions Internship Program Home > Federal Employment > Apply for Our Jobs > How to Apply > Student Jobs > Minority Serving Institutions Internship Program Minority Serving Institutions Internship Program

300

Minority Serving Institutions Internship Program | National Nuclear  

Broader source: All U.S. Department of Energy (DOE) Office Webpages (Extended Search)

Institutions Internship Program | National Nuclear Institutions Internship Program | National Nuclear Security Administration Our Mission Managing the Stockpile Preventing Proliferation Powering the Nuclear Navy Emergency Response Recapitalizing Our Infrastructure Continuing Management Reform Countering Nuclear Terrorism About Us Our Programs Our History Who We Are Our Leadership Our Locations Budget Our Operations Media Room Congressional Testimony Fact Sheets Newsletters Press Releases Speeches Events Social Media Video Gallery Photo Gallery NNSA Archive Federal Employment Apply for Our Jobs Our Jobs Working at NNSA Blog Minority Serving Institutions Internship Program Home > Federal Employment > Apply for Our Jobs > How to Apply > Student Jobs > Minority Serving Institutions Internship Program Minority Serving Institutions Internship Program

Note: This page contains sample records for the topic "nuclear weapons program" from the National Library of EnergyBeta (NLEBeta).
While these samples are representative of the content of NLEBeta,
they are not comprehensive nor are they the most current set.
We encourage you to perform a real-time search of NLEBeta
to obtain the most current and comprehensive results.


301

Secondary wastes and high explosive residues generated during production of main high explosive charges for nuclear weapons  

SciTech Connect (OSTI)

This study identifies the sources of high-explosive (HE) residues and hazardous and nonhazardous wastes generated during the production of the main HE charges for nuclear weapons, and estimates their quantities and characteristics. The results can be used as a basis for design of future handling and treatment systems for solid and liquid HE residues and wastes at any proposed new HE production facilities. This paper outlines a general methodology for documenting and estimating the volumes and characteristics of the solid and liquid HE residues and hazardous and nonhazardous wastes. We prepared volume estimates by applying this method to actual past Pantex plant HE production operations. To facilitate the estimating, we separated the HE main-charge production process into ten discrete unit operations and four support operations, and identified the corresponding solid and liquid HE residues and waste quantities. Four different annual HE main-charge production rates of 100, 500, 1000, and 2000 HE units/yr were assumed to develop the volume estimates and to establish the sensitivity of the estimates to HE production rates. The total solids (HE residues and hazardous and nonhazardous wastes) estimated range from 800 to 2800 ft{sup 3}/yr and vary uniformly with the assumed HE production rate. The total liquids estimated range from 73,000 to 1,448,000 gal/yr and also vary uniformly with the assumed production rate.

Jardine, L.J.; McGee, J.T.

1994-02-01T23:59:59.000Z

302

DEPARTMENT OF ENERGY NATIONAL NUCLEAR SECURITY  

E-Print Network [OSTI]

planning and oversight for programs funded by the Weapons Activities, Defense Nuclear Non- proliferation, for Weapons Ac- tivities and Defense Nuclear Nonproliferation, and Federal employees at the NNSA service379 DEPARTMENT OF ENERGY NATIONAL NUCLEAR SECURITY ADMINISTRATION Federal Funds General and special

303

ESTABLISHING FINAL END STATE FOR A RETIRED NUCLEAR WEAPONS PRODUCTION REACTOR; COLLABORATION BETWEEN STAKEHOLDERS, REGULATORS AND THE FEDERAL GOVERNMENT  

SciTech Connect (OSTI)

The Savannah River Site (SRS) is a 310-square-mile United States Department of Energy nuclear facility located along the Savannah River (SRS) near Aiken, South Carolina. Nuclear weapons material production began in the early 1950s, utilizing five production reactors. In the early 1990s all SRS production reactor operations were terminated. The first reactor closure end state declaration was recently institutionalized in a Comprehensive Environmental Response and Compensation and Liability Act (CERCLA) Early Action Record of Decision. The decision for the final closure of the 318,000 square foot 105-P Reactor was determined to be in situ decommissioning (ISD). ISD is an acceptable and cost effective alternative to off-site disposal for the reactor building, which will allow for consolidation of remedial action wastes generated from other cleanup activities within the P Area. ISD is considered protective by the regulators, U. S. Environmental Protection Agency (US EPA) and the South Carolina Department of Health and Environmental Control (SCDHEC), public and stakeholders as waste materials are stabilized/immobilized, and radioactivity is allowed to naturally decay, thus preventing future exposure to the environment. Stakeholder buy-in was critical in the upfront planning in order to achieve this monumental final decision. Numerous public meetings and workshops were held in two different states (covering a 200 mile radius) with stakeholder and SRS Citizens Advisory Board participation. These meetings were conducted over an eight month period as the end state decision making progressed. Information provided to the public evolved from workshop to workshop as data became available and public input from the public meetings were gathered. ISD is being considered for the balance of the four SRS reactors and other hardened facilities such as the chemical processing canyons.

Bergren, C

2009-01-16T23:59:59.000Z

304

Weapons Activities/ Inertial Confinement Fusion Ignition  

E-Print Network [OSTI]

a safe, secure, and reliable nuclear weapons stockpile without underground testing. Science-based weapons and certify the stockpile without nuclear testing. The National Ignition Facility (NIF) extends HEDP under extreme conditions that approach the high energy density (HED) environments found in a nuclear

305

Plutonium Disposition Program | National Nuclear Security Administrati...  

National Nuclear Security Administration (NNSA)

accumulating newly separated weapon-grade plutonium. RUSSIAN PLUTONIUM DISPOSITION Russia plans to dispose of its 34 metric tons of weapon-grade plutonium by fabricating it...

306

IRAQ'S WEAPONS  

Science Journals Connector (OSTI)

AFTER TWO MONTHS OF snap inspections at hundreds of sites, United Nations inspectors cannot say that Iraq has weapons of mass destruction or that it is disarming. Because Iraq has not been forth-coming, questions remain about its chemical, biological, and ...

LOIS EMBER

2003-02-03T23:59:59.000Z

307

Publications 1997 - Nuclear Data Program - Nuclear Engineering Division  

Broader source: All U.S. Department of Energy (DOE) Office Webpages (Extended Search)

7 7 Nuclear Data Program Overview Current Projects & Recent Activities Collaborating Organizations Publications [Publications 2011] [Publications 2010] [Publications 2009] [Publications 2008] [Publications 2007] [Publications 2006] [Publications 2005] [Publications 2004] [Publications 2003] [Publications 2002] [Publications 2001] [Publications 2000] [Publications 1999] [Publications 1998] [Publications 1997] [Other Publications] Nuclear Data Measurements (NDM) Reports Experimental Nuclear Data Resources Contact ND Program Related Resources Other Major Programs Work with Argonne Contact us For Employees Site Map Help Join us on Facebook Follow us on Twitter NE Division on Flickr Nuclear Data Program Publications: 1997 References Bookmark and Share Donald L. Smith and Andreas Fessler

308

Publications 2010 - Nuclear Data Program - Nuclear Engineering Division  

Broader source: All U.S. Department of Energy (DOE) Office Webpages (Extended Search)

0 0 Nuclear Data Program Overview Current Projects & Recent Activities Collaborating Organizations Publications [Publications 2011] [Publications 2010] [Publications 2009] [Publications 2008] [Publications 2007] [Publications 2006] [Publications 2005] [Publications 2004] [Publications 2003] [Publications 2002] [Publications 2001] [Publications 2000] [Publications 1999] [Publications 1998] [Publications 1997] [Other Publications] Nuclear Data Measurements (NDM) Reports Experimental Nuclear Data Resources Contact ND Program Related Resources Other Major Programs Work with Argonne Contact us For Employees Site Map Help Join us on Facebook Follow us on Twitter NE Division on Flickr Nuclear Data Program Publications: 2010 References Bookmark and Share 1. Refereed Publications in Peer-reviewed Scientific Journals

309

Publications 2006 - Nuclear Data Program - Nuclear Engineering Division  

Broader source: All U.S. Department of Energy (DOE) Office Webpages (Extended Search)

6 6 Nuclear Data Program Overview Current Projects & Recent Activities Collaborating Organizations Publications [Publications 2011] [Publications 2010] [Publications 2009] [Publications 2008] [Publications 2007] [Publications 2006] [Publications 2005] [Publications 2004] [Publications 2003] [Publications 2002] [Publications 2001] [Publications 2000] [Publications 1999] [Publications 1998] [Publications 1997] [Other Publications] Nuclear Data Measurements (NDM) Reports Experimental Nuclear Data Resources Contact ND Program Related Resources Other Major Programs Work with Argonne Contact us For Employees Site Map Help Join us on Facebook Follow us on Twitter NE Division on Flickr Nuclear Data Program Publications: 2006 References Bookmark and Share Refereed Publications in Peer-reviewed Scientific Journals

310

Publications 2002 - Nuclear Data Program - Nuclear Engineering Division  

Broader source: All U.S. Department of Energy (DOE) Office Webpages (Extended Search)

2 2 Nuclear Data Program Overview Current Projects & Recent Activities Collaborating Organizations Publications [Publications 2011] [Publications 2010] [Publications 2009] [Publications 2008] [Publications 2007] [Publications 2006] [Publications 2005] [Publications 2004] [Publications 2003] [Publications 2002] [Publications 2001] [Publications 2000] [Publications 1999] [Publications 1998] [Publications 1997] [Other Publications] Nuclear Data Measurements (NDM) Reports Experimental Nuclear Data Resources Contact ND Program Related Resources Other Major Programs Work with Argonne Contact us For Employees Site Map Help Join us on Facebook Follow us on Twitter NE Division on Flickr Nuclear Data Program Publications: 2002 References Bookmark and Share M. Danchev, D.J. Hartley, F.G. Kondev, M.P. Carpenter, R.V.F.

311

Publications 2007 - Nuclear Data Program - Nuclear Engineering Division  

Broader source: All U.S. Department of Energy (DOE) Office Webpages (Extended Search)

7 7 Nuclear Data Program Overview Current Projects & Recent Activities Collaborating Organizations Publications [Publications 2011] [Publications 2010] [Publications 2009] [Publications 2008] [Publications 2007] [Publications 2006] [Publications 2005] [Publications 2004] [Publications 2003] [Publications 2002] [Publications 2001] [Publications 2000] [Publications 1999] [Publications 1998] [Publications 1997] [Other Publications] Nuclear Data Measurements (NDM) Reports Experimental Nuclear Data Resources Contact ND Program Related Resources Other Major Programs Work with Argonne Contact us For Employees Site Map Help Join us on Facebook Follow us on Twitter NE Division on Flickr Nuclear Data Program Publications: 2007 References Bookmark and Share Refereed Publications in Peer-reviewed Scientific Journals

312

Index of Publications by the Nuclear Data Program - Nuclear Engineering  

Broader source: All U.S. Department of Energy (DOE) Office Webpages (Extended Search)

Publications Publications Nuclear Data Program Overview Current Projects & Recent Activities Collaborating Organizations Publications [Publications 2011] [Publications 2010] [Publications 2009] [Publications 2008] [Publications 2007] [Publications 2006] [Publications 2005] [Publications 2004] [Publications 2003] [Publications 2002] [Publications 2001] [Publications 2000] [Publications 1999] [Publications 1998] [Publications 1997] [Other Publications] Nuclear Data Measurements (NDM) Reports Experimental Nuclear Data Resources Contact ND Program Related Resources Other Major Programs Work with Argonne Contact us For Employees Site Map Help Join us on Facebook Follow us on Twitter NE Division on Flickr Nuclear Data Program Publications Bookmark and Share The ND staff has contributed to a number of scientific journals, conference

313

Nuclear Energy University Programs (NEUP)  

Broader source: All U.S. Department of Energy (DOE) Office Webpages (Extended Search)

DOE-NE Fosters Novel International Investments in U.S. Nuclear Energy Research October 14, 2014 Nuclear energy is an international industry, but nuclear research and development...

314

DOE Nuclear Criticality Safety Program - Nuclear Engineering Division  

Broader source: All U.S. Department of Energy (DOE) Office Webpages (Extended Search)

DOE Nuclear Criticality Safety Program DOE Nuclear Criticality Safety Program Nuclear Criticality Safety Overview Experience Analysis Tools Current NCS Activities Current R&D Activities DOE Criticality Safety Support Group (CSSG) Other Major Programs Work with Argonne Contact us For Employees Site Map Help Join us on Facebook Follow us on Twitter NE Division on Flickr The DOE Nuclear Criticality Safety Program Bookmark and Share J. Morman and R. Bucher load J. Morman and R. Bucher load samples into the ZPR-6 critical assembly for material worth measurements. Click on image to view larger image. The DOE Nuclear Criticality Safety Program (NCSP) is focused on maintaining fundamental infrastructure that enables retention of DOE capabilities and expertise in nuclear criticality safety necessary to support line

315

Effects of a Youth Substance Use Prevention Program on Stealing, Fighting, and Weapon Use  

Science Journals Connector (OSTI)

Using a sample of sixth graders in 11 public schools in a large Southwestern city, this longitudinal study examined how a model substance use prevention program, keepin’ it REAL..., that was implemented in 7th g...

Tanya Nieri; Jacob Apkarian; Stephen Kulis…

2014-10-01T23:59:59.000Z

316

Secondary wastes and high explosive residues generated during production of main high explosive charges for nuclear weapons. Revision 1  

SciTech Connect (OSTI)

This study identifies the sources of high-explosive (HE) residues and hazardous and nonhazardous wastes generated during the production of the main HE charges for nuclear weapons, and estimates their quantities and characteristics. The results can be used as a basis for design of future handling and treatment systems for solid and liquid HE residues and wastes at any proposed new HE production facilities. This paper outlines a general methodology for documenting and estimating the volumes and characteristics of the solid and liquid HE residues and hazardous and nonhazardous wastes. To facilitate the estimating, we separated the HE main-charge production process into ten discrete unit operations and four support operations, and identified the corresponding solid and liquid HE residues and waste quantities. Four different annual HE main-charge production rates of 100, 500, 1000, and 2000 HE units/yr were assumed to develop the volume estimates and to establish the sensitivity of the estimates to HE production rates. The total solids (HE residues and hazardous and nonhazardous wastes) estimated range from 800 to 2800 ft{sup 3}/yr and vary uniformly with the assumed HE production rate. The total liquids estimated range from 73,000 to 1,448.000 gal/yr and also vary uniformly with the assumed production rate. Of the estimated solids, the hazardous wastes (e.g., electrical vehicle batteries and light tubes) were about 2% of the total volumes. The generation of solid HE residues varied uniformly with the HE production rates and ranged from about 20% of the total solids volume for the 100 HE units/yr case to about 60% for the 2000 units/yr case. The HE machining operations generated 60 to 80% of the total solid HE residues, depending on the assumed production rate, and were also the sources of the most concentrated HE residues.

Jardine, L.J.; McGee, J.T.

1995-01-01T23:59:59.000Z

317

National Nuclear Security Administration Contractors' Disability Compensation and Return-to-Work Programs, IG-0867  

Broader source: Energy.gov (indexed) [DOE]

Audit Report Audit Report The National Nuclear Security Administration Contractors' Disability Compensation and Return-to-Work Programs DOE/IG-0867 June 2012 U.S. Department of Energy Office of Inspector General Office of Audits and Inspections Department of Energy Washington, DC 20585 June 18, 2012 MEMORANDUM FOR THE SECRETARY FROM: Gregory H. Friedman Inspector General SUBJECT: INFORMATION: Audit Report on "NNSA Contractors' Disability Compensation and Return-to-Work Programs" INTRODUCTION AND OBJECTIVE The Department of Energy's National Nuclear Security Administration is responsible for the Nation's nuclear weapons programs. NNSA relies on contractors to manage and operate the seven sites that form its nuclear security enterprise, including three national laboratories. Under

318

Whistleblower Program | National Nuclear Security Administration  

National Nuclear Security Administration (NNSA)

Whistleblower Program | National Nuclear Security Administration Whistleblower Program | National Nuclear Security Administration Our Mission Managing the Stockpile Preventing Proliferation Powering the Nuclear Navy Emergency Response Recapitalizing Our Infrastructure Continuing Management Reform Countering Nuclear Terrorism About Us Our Programs Our History Who We Are Our Leadership Our Locations Budget Our Operations Media Room Congressional Testimony Fact Sheets Newsletters Press Releases Speeches Events Social Media Video Gallery Photo Gallery NNSA Archive Federal Employment Apply for Our Jobs Our Jobs Working at NNSA Blog Whistleblower Program Home > About Us > Our Operations > Management and Budget > Whistleblower Program Whistleblower Program The DOE National Nuclear Security Administration Employee (NNSA) Concerns Program (ECP) is responsible for the 10 CFR Part 708 Contractor Employee

319

Nuclear Safety Research and Development Program Operating Plan...  

Broader source: Energy.gov (indexed) [DOE]

Program Operating Plan Nuclear Safety Research and Development Program Operating Plan July 5, 2012 Nuclear Safety Research and Development Program Operating Plan This operating...

320

Environmental Program Services Contract | National Nuclear Security...  

National Nuclear Security Administration (NNSA)

Services Contract Environmental Program Services Contract Welcome to the Department of Energy (DOE), National Nuclear Security Administration (NNSA) webpage for the Nevada Field...

Note: This page contains sample records for the topic "nuclear weapons program" from the National Library of EnergyBeta (NLEBeta).
While these samples are representative of the content of NLEBeta,
they are not comprehensive nor are they the most current set.
We encourage you to perform a real-time search of NLEBeta
to obtain the most current and comprehensive results.


321

Life Extension Programs | National Nuclear Security Administration  

National Nuclear Security Administration (NNSA)

Extension Programs B61-12 Life Extension Program Undergoes First Full-Scale Wind Tunnel Test WASHINGTON, D.C. - The National Nuclear Security Administration (NNSA) announced today...

322

Environmental assessment for the purchase of Russian low enriched uranium derived from the dismantlement of nuclear weapons in the countries of the former Soviet Union  

SciTech Connect (OSTI)

The United States is proposing to purchase from the Russian Federation low enriched uranium (LEU) derived from highly enriched uranium (HEU) resulting from the dismantlement of nuclear weapons in the countries of the former Soviet Union. The purchase would be accomplished through a proposed contract requiring the United States to purchase 15,250 metric tons (tonnes) of LEU (or 22,550 tonnes of UF{sub 6}) derived from blending 500 metric tones uranium (MTU) of HEU from nuclear warheads. The LEU would be in the form of uranium hexafluoride (UF{sub 6}) and would be converted from HEU in Russia. The United States Enrichment Corporation (USEC) is the entity proposing to undertake the contract for purchase, sale, and delivery of the LEU from the Russian Federation. The US Department of Energy (DOE) is negotiating the procedure for gaining confidence that the LEU is derived from HEU that is derived from dismantled nuclear weapons (referred to as ``transparency),`` and would administer the transparency measures for the contract. There are six environments that could potentially be affected by the proposed action; marine (ocean); US ports of entry; truck or rail transportation corridors; the Portsmouth GDP; the electric power industry; and the nuclear fuel cycle industry. These environmental impacts are discussed.

Not Available

1994-01-01T23:59:59.000Z

323

Continuity Program | National Nuclear Security Administration  

National Nuclear Security Administration (NNSA)

Continuity Program | National Nuclear Security Administration Continuity Program | National Nuclear Security Administration Our Mission Managing the Stockpile Preventing Proliferation Powering the Nuclear Navy Emergency Response Recapitalizing Our Infrastructure Continuing Management Reform Countering Nuclear Terrorism About Us Our Programs Our History Who We Are Our Leadership Our Locations Budget Our Operations Media Room Congressional Testimony Fact Sheets Newsletters Press Releases Speeches Events Social Media Video Gallery Photo Gallery NNSA Archive Federal Employment Apply for Our Jobs Our Jobs Working at NNSA Blog Continuity Program Home > About Us > Our Programs > Emergency Response > Continuity Program Continuity Program NNSA develops and implements the policy of the United States to maintain a comprehensive and effective continuity capability composed of an

324

Nuclear Weapons Latency  

E-Print Network [OSTI]

......................................................................... 14 Fig. 4. Conceptual flow of Latency tool Petri Net simulation. ........................................ 18 Fig. 5. Overall flow of Latency Tool. .............................................................................. 19 Fig. 6. Latency... density function bound simulations. .............. 43 xi Fig. 14. The expansion of one transition into a series of transitions. A simple Petri net with (a) 1 transition T1, (b) T1 replaced by two transitions in series, T1a and T1b, both half...

Sweeney, David J

2014-07-25T23:59:59.000Z

325

Nuclear Energy University Program | Department of Energy  

Broader source: Energy.gov (indexed) [DOE]

Energy University Program Energy University Program Nuclear Energy University Program NEUP Award Recipients FY2009 to FY2013 Click on the icons to find out the values of the awards given to each school. The darker the icon, the more recent the award. Drag and zoom map to see more recipients. Investing in the next generation of nuclear energy leaders and advancing university-led nuclear innovation is vital to fulfilling the Office of Nuclear Energy's (NE) mission. This is accomplished primarily through NE's Nuclear Energy University Programs (NEUP), which was created in 2009 to consolidate university support under one initiative and better integrate university research within NE' technical programs. NEUP engages U.S. colleges and universities to conduct research and development (R&D), enhance infrastructure and support student education

326

Russian Health Studies Program- Program Overview  

Broader source: Energy.gov [DOE]

The Department of Energy's (DOE) Russian Health Studies Program assesses worker and public health risks from radiation exposure resulting from nuclear weapons production activities in the former Soviet Union.

327

Bret Knapp to head combined Weapons Engineering, Weapons Physics...  

Broader source: All U.S. Department of Energy (DOE) Office Webpages (Extended Search)

Weapons Engineering, Weapons Physics Directorates Bret Knapp to head combined Weapons Engineering, Weapons Physics Directorates at Los Alamos National Laboratory New leadership...

328

Nuclear rollback decisions: Future lessons?  

SciTech Connect (OSTI)

The end of the global political, military and ideological contest between the Soviet Union and the United States fundamentally changed the international system. At one time or another, nine countries other than the five nuclear weapon states have had nuclear weapons programs or harbored nuclear aspirations and have slowed, halted or even reversed their activities. The author examines this change and the factor behind it, as well as the new thinking on nuclear arsenal.

Reiss, M.

1995-07-01T23:59:59.000Z

329

NNSA Graduate Program | National Nuclear Security Administration  

National Nuclear Security Administration (NNSA)

Graduate Program | National Nuclear Security Administration Graduate Program | National Nuclear Security Administration Our Mission Managing the Stockpile Preventing Proliferation Powering the Nuclear Navy Emergency Response Recapitalizing Our Infrastructure Continuing Management Reform Countering Nuclear Terrorism About Us Our Programs Our History Who We Are Our Leadership Our Locations Budget Our Operations Media Room Congressional Testimony Fact Sheets Newsletters Press Releases Speeches Events Social Media Video Gallery Photo Gallery NNSA Archive Federal Employment Apply for Our Jobs Our Jobs Working at NNSA Blog NNSA Graduate Program Home > Federal Employment > Our Jobs > NNSA Graduate Program NNSA Graduate Program Are you looking for a dynamic career that will make a difference in the safety and security of our nation? Do you have a strong academic record? If

330

Nuclear proliferation after the Cold War  

SciTech Connect (OSTI)

Today, former Soviet republics threaten to gain control over nuclear weapons sited on their territories, and reports on North Korea, Pakistan, India, and Iraq reveal current or recent weapon development programs. This document offers a timely assessment of the prospects for nuclear nonproliferation.

Reiss, M.; Litwak, R.S.

1994-01-01T23:59:59.000Z

331

Nuclear Energy Advanced Modeling and Simulation (NEAMS) Program...  

Broader source: Energy.gov (indexed) [DOE]

Program Plan Nuclear Energy Advanced Modeling and Simulation (NEAMS) Program Plan The NEAMS program plan includes information on the program vision, objective, scope, schedule and...

332

Nuclear Spent Fuel Program Drivers  

Broader source: All U.S. Department of Energy (DOE) Office Webpages (Extended Search)

was created to plan and coordinate the management of Department of Energy-owned spent nuclear fuel. It was established as a result of a 1992 decision to stop spent nuclear fuel...

333

PHIL 20628/ Ethics of Emerging STV 20228 Weapons Technologies  

E-Print Network [OSTI]

PHIL 20628/ Ethics of Emerging STV 20228 Weapons Technologies Spring 2011 Prof. Don Howard theirpeople, especially the poor. " Benedict joined every Pope since Pius XII in condemning nuclear weapons as inherently immoral because the nature of the technology is such that nuclear weapons inherently violates

Howard, Don

334

On the dangers of C.I.S. specialists with nuclear weapons experience relocating to Third World countries: A Russian view. Nonproliferation Newsletter, February 1993: Volume 11, Issue 1  

SciTech Connect (OSTI)

This newsletter presents information on the effectiveness of rules and regulations; on the role of a qualified consultant in the possible design of a nuclear weapon for a Third World country; and on the possible dangers (and their elimination) of relocating nuclear technologists.

Hogsett, V.; Canavan, B. [eds.

1993-03-01T23:59:59.000Z

335

ITAR Categories Category I -Firearms, Close Assault Weapons and Combat Shotguns  

E-Print Network [OSTI]

ITAR Categories Category I - Firearms, Close Assault Weapons and Combat Shotguns Category II - Guns and Associated Equipment Category XVI - Nuclear Weapons, Design and Testing Related Items Category XVII Energy Weapons Category XIX - [Reserved] Category XX - Submersible Vessels, Oceanographic and Associated

336

Weapons of mass distraction: Magicianship, misdirection, and the dark side of legitimation  

E-Print Network [OSTI]

Los Angeles Times 27: A1. Weapons of Mass Distraction Weber,G. Dawson, (Orig. pub. 1634). Weapons of Mass DistractionCentury Encounter with Nuclear Weapons. Columbus: Ohio State

Freudenburg, William R.; Alario, Margarita

2007-01-01T23:59:59.000Z

337

Russian Health Studies Program  

Broader source: Energy.gov [DOE]

The Department of Energy's (DOE) Russian Health Studies Program assesses worker and public health risks from radiation exposure resulting from nuclear weapons production activities in the former Soviet Union.

338

Ban On Foreign Scientists' Visits To Weapon Labs Lifted  

Science Journals Connector (OSTI)

Ban On Foreign Scientists' Visits To Weapon Labs Lifted ... Once again, foreign scientists from "sensitive" countries may be able to work with U.S. scientists at Department of Energy nuclear weapons laboratories. ...

JEFF JOHNSON

2000-09-04T23:59:59.000Z

339

TRACKING SURPLUS PLUTONIUM FROM WEAPONS TO DISPOSITION  

SciTech Connect (OSTI)

Supporting nuclear nonproliferation and global security principles, beginning in 1994 the United States has withdrawn more than 50 metric tons (MT) of government-controlled plutonium from potential use in nuclear weapons. The Department of Energy (DOE), including the National Nuclear Security Administration, established protocols for the tracking of this "excess" and "surplus" plutonium, and for reconciling the current storage and utilization of the plutonium to show that its management is consistent with the withdrawal policies. Programs are underway to ensure the safe and secure disposition of the materials that formed a major part of the weapons stockpile during the Cold War, and growing quantities have been disposed as waste, after which they are not included in traditional nuclear material control and accountability (NMC&A) data systems. A combination of resources is used to perform the reconciliations that form the basis for annual reporting to DOE, to U.S. Department of State, and to international partners including the International Atomic Energy Agency.

Allender, J.; Beams, J.; Sanders, K.; Myers, L.

2013-07-16T23:59:59.000Z

340

Manpower development for new nuclear energy programs  

E-Print Network [OSTI]

In the spring of 2012, nine countries were seriously considering embarking on nuclear energy programs, either having signed contracts with reactor vendors or having made investments for the development of infrastructure ...

Verma, Aditi

2012-01-01T23:59:59.000Z

Note: This page contains sample records for the topic "nuclear weapons program" from the National Library of EnergyBeta (NLEBeta).
While these samples are representative of the content of NLEBeta,
they are not comprehensive nor are they the most current set.
We encourage you to perform a real-time search of NLEBeta
to obtain the most current and comprehensive results.


341

Supplement Analysis for the Final Environmental Impact Statement for the Continued Operation of the Pantex Plant and Associated Storage of Nuclear Weapon Components  

Broader source: Energy.gov (indexed) [DOE]

D D E P A R T M E N T O F E N E R G Y U N I T E D S T A T E S O F A M E R I C A SUPPLEMENT ANALYSIS FOR THE FINAL ENVIRONMENTAL IMPACT STATEMENT FOR THE CONTINUED OPERATION OF THE PANTEX PLANT AND ASSOCIATED STORAGE OF NUCLEAR WEAPON COMPONENTS DOE/EIS-0225/SA-03 United States Department of Energy National Nuclear Security Administration Pantex Site Operations P.O. Box 30030 Amarillo, Texas 79120-0030 February 2003 i Summary The U.S. Department of Energy's (DOE's) National Environmental Policy Act (NEPA) Implementing Procedures at 10 CFR 1021.330(d) require evaluation of its site-wide environmental impact statements (EISs) at least every 5 years by preparation of a supplement analysis (SA), as provided in 10 CFR 1021.314. Based on the SA, a determination is made as to whether the existing EIS remains

342

Sandia National Laboratories/Production Agency Weapon Waste Minimization Plan  

SciTech Connect (OSTI)

This Plan describes activities to reduce the usage of hazardous materials and the production of hazardous material waste during the development, production, stockpile, and retirement phases of war reserve nuclear weapons and nuclear weapon test units. Activities related to the development and qualification of more benign materials and processes for weapon production and the treatment and disposal of these materials from weapon retirement are described in separate plans.

Skinrood, A.C.; Radosevich, L.G.

1991-07-01T23:59:59.000Z

343

Program Objectives | National Nuclear Security Administration  

National Nuclear Security Administration (NNSA)

Program Objectives Program Objectives Home > Stewardship Science Academic Alliances Program > Program Objectives Program Objectives Stewardship Science Academic Alliances (SSAA) Program Objectives Support the U.S. scientific community by funding research projects at universities that conduct fundamental science and technology research that is of relevance to Stockpile Stewardship, namely; materials under extreme conditions (condensed matter physics and materials science, hydrodynamics, and fluid dynamics); low energy nuclear science, high energy density physics, and radiochemistry. Provide opportunities for intellectual challenge and collaboration by promoting scientific interactions between the academic community and scientists at the DOE/NNSA's laboratories. Develop and maintain a long-term recruiting pipeline to the DOE/NNSA

344

Nuclear Data and Measurements Series Reports - Nuclear Data Program -  

Broader source: All U.S. Department of Energy (DOE) Office Webpages (Extended Search)

REPORTS REPORTS Nuclear Data Program Overview Current Projects & Recent Activities Collaborating Organizations Publications Nuclear Data Measurements (NDM) Reports Group 1 (ANL/NDM-1 - ANL/NDM-20) Group 2 (ANL/NDM-21 - ANL/NDM-40) Group 3 (ANL/NDM-41 - ANL/NDM-60) Group 4 (ANL/NDM-61 - ANL/NDM-80) Group 5 (ANL/NDM-81 - ANL/NDM-100) Group 6 (ANL/NDM-101 - ANL/NDM-120) Group 7 (ANL/NDM-121 - ANL/NDM-140) Group 8 (ANL/NDM-141 - ANL/NDM-160) Group 9 (ANL/NDM-161 - ANL/NDM-180) Experimental Nuclear Data Resources Contact ND Program Related Resources Other Major Programs Work with Argonne Contact us For Employees Site Map Help Join us on Facebook Follow us on Twitter NE Division on Flickr Nuclear Data Program NUCLEAR DATA AND MEASUREMENTS REPORTS Bookmark and Share Contents Information on the Nuclear Data and Measurements Series Reports and

345

Filip G. Kondev, Program Manager, Nuclear Data Program  

Broader source: All U.S. Department of Energy (DOE) Office Webpages (Extended Search)

Filip G. Kondev Filip G. Kondev Program Manager, Argonne Nuclear Data Program Curriculum Vitae Name: Filip G. Kondev Current Address: Nuclear Engineering Division Argonne National Laboratory 9700 South Cass Avenue Argonne, IL 60439, USA Telephone: +1 (630) 252 4484 (office) Fax: +1 (630) 252 4978 (office) Filip G. Kondev E-mail: Education Ph.D Research School of Physical Science and Engineering, Australian National University, Canberra, Australia Thesis title: "Interplay between intrinsic and Collective Motion in Tantalum Nuclei" Diploma (MSc) Plovdiv University, Plovdiv Bulgaria Thesis title: "Study of (γ,α) Photonuclear Reactions in the Giant Dipole Resonance Region" Employment Feb. 2004 - present Physicist, Nuclear Engineering Division,

346

Guidelines for Evaluation of Nuclear Facility Training Programs  

Broader source: Directives, Delegations, and Requirements [Office of Management (MA)]

The Guidelines for Evaluation of Nuclear Facility Training Programs establish objectives and criteria for evaluating nuclear facility training programs. The guidance in this standard provides a framework for the systematic evaluation of training programs at nuclear facilities and is based, in part, on established criteria for Technical Safety Appraisals, Tiger Team Assessments, commercial nuclear industry evaluations, and the DOE Training Accreditation Program.

1995-11-22T23:59:59.000Z

347

Maintenance Management Program for DOE Nuclear Facilities  

Broader source: Directives, Delegations, and Requirements [Office of Management (MA)]

To define the program for the management of cost-effective maintenance of Department of Energy (DOE) nuclear facilities. Guidance for compliance with this Order is contained in DOE G 433.1-1, Nuclear Facility Maintenance Management Program Guide for use with DOE O 433.1, which references Federal regulations, DOE directives, and industry best practices using a graded approach to clarify requirements and guidance for maintaining DOE-owned Government property. (Cancels DOE 4330.4B, Chapter II, Maintenance Management Program, dated 2-10-94.) Cancels DOE 4330.4B (in part). Canceled by DOE O 433.1A.

2001-06-01T23:59:59.000Z

348

Nuclear Explosive Safety  

Broader source: Directives, Delegations, and Requirements [Office of Management (MA)]

This Department of Energy (DOE) Order establishes requirements to implement the nuclear explosive safety (NES) elements of DOE O 452.1D, Nuclear Explosive and Weapon Surety Program, for routine and planned nuclear explosive operations (NEOs). Cancels DOE O 452.2C. Admin Chg 1, dated 7-10-13, cancels DOE O 452.2D.

2009-04-14T23:59:59.000Z

349

Nuclear Explosive Safety  

Broader source: Directives, Delegations, and Requirements [Office of Management (MA)]

This Order establishes requirements to implement the nuclear explosive safety elements of DOE O 452.1D, Nuclear Explosive and Weapon Surety Program, for routine and planned nuclear explosive operations. Cancels DOE O 452.2C. Admin Chg 1, 7-10-13

2009-04-14T23:59:59.000Z

350

Nuclear and Radiological Engineering and Medical Physics Programs  

E-Print Network [OSTI]

Nuclear and Radiological Engineering and Medical Physics Programs The George W. Woodruff School #12 Year Enrollment - Fall Semester Undergraduate Graduate #12; Nuclear Power Industry Radiological Engineering Industry Graduate School DOE National Labs Nuclear Navy #12; 104 Operating Nuclear Power plants

Weber, Rodney

351

Defense Programs | National Nuclear Security Administration  

National Nuclear Security Administration (NNSA)

materials and weapons between facilities and military locations. NNSA also strives to conduct operations in ways that are safe for the environment and the public. As threats...

352

Nuclear Safety Research and Development (NSR&D) Program | Department...  

Office of Environmental Management (EM)

Safety Research and Development (NSR&D) Program Nuclear Safety Research and Development (NSR&D) Program The Nuclear Safety Research and Development (NSR&D) Program is managed by...

353

Improving weapons of mass destruction intelligence Arnold Kanter  

E-Print Network [OSTI]

1 Improving weapons of mass destruction intelligence Arnold Kanter The Scowcroft Group 900;2 Combating the spread of weapons of mass destruction (WMD) is one of the most important foreign policy of nuclear capability by sub-national states and the security of WMD weapons, materials, and technology

Deutch, John

354

The Soviet program for peaceful uses of nuclear explosions  

SciTech Connect (OSTI)

The concept of utilizing the weapons of war to serve the peaceful pursuits of mankind is as old as civilization itself. Perhaps the most famous reference to this basic desire is recorded in the Book of Micah where the great prophet Isiah called upon his people `to turn your spears into pitchforks and your swords into plowshares.` As the scientists at Los Alamos worked on developing the world`s first atomic bomb, thoughts of how this tremendous new source of energy could be used for peaceful purposes generally focused on using the thermal energy generated by the slow fission of uranium in a reactor, such as those being used to produce Plutonium to drive electric power stations. However, being scientists in a new, exciting field, it was impossible to avoid letting their minds wander from the task at hand to other scientific or non-military uses for the bombs themselves. During the Manhattan Project, Otto Frisch, one of the pioneers in the development of nuclear fission process in the 1930s, first suggested using an atomic explosion as a source for a large quantities of neutrons which could used in scientific experiments designed to expand their understanding of nuclear physics. After the war was over, many grandiose ideas appeared in the popular press on how this new source of energy should be to serve mankind. Not to be left out of the growing enthusiasm for peaceful uses of atomic energy, the Soviet Union added their visions to the public record. This document details the Soviet program for using nuclear explosions in peacetime pursuits.

Nordyke, M.D.

1996-07-24T23:59:59.000Z

355

Closing the circle on the splitting of the atom: The environmental legacy of nuclear weapons production in the United States and what the Department of Energy is doing about it  

SciTech Connect (OSTI)

In the grand scheme of things we are a little more than halfway through the cycle of splitting the atom for weapons purposes. If we visualize this historic cycle as the full sweep of a clockface, at zero hour we would find the first nuclear chain reaction by Enrico Fermi, followed immediately by the Manhattan Project and the explosion of the first atomic bombs. From two o`clock until five, the United States built and ran a massive industrial complex that produced tens of thousands of nuclear weapons. At half past, the Cold War ended, and the United States shut down most of its nuclear weapons factories. The second half of this cycle involves dealing with the waste and contamination from nuclear weapons production - a task that had, for the most part, been postponed into the indefinite future. That future is now upon us. Dealing with the environmental legacy of the Cold War is in many ways as big a challenge for us today as the building of the atomic bomb was for the Manhattan Project pioneers in the 1940s. Our challenges are political and social as well as technical, and we are meeting those challenges. We are reducing risks, treating wastes, developing new technologies, and building democratic institutions for a constructive debate on our future course.

NONE

1996-01-01T23:59:59.000Z

356

E-Print Network 3.0 - aircraft missiles weapons Sample Search...  

Broader source: All U.S. Department of Energy (DOE) Office Webpages (Extended Search)

Naval Research Summary: Program managers 467 Program managers Aircraft carriers Combat boots Combat ships Submarines Weapons... Axisymmetric Missile Configuration Hypersonic...

357

Weapons engineering tritium facility overview  

SciTech Connect (OSTI)

Materials provide an overview of the Weapons Engineering Tritium Facility (WETF) as introductory material for January 2011 visit to SRS. Purpose of the visit is to discuss Safety Basis, Conduct of Engineering, and Conduct of Operations. WETF general description and general GTS program capabilities are presented in an unclassified format.

Najera, Larry [Los Alamos National Laboratory

2011-01-20T23:59:59.000Z

358

NNSA employees selected for Nuclear Scholars Initiative program | National  

National Nuclear Security Administration (NNSA)

employees selected for Nuclear Scholars Initiative program | National employees selected for Nuclear Scholars Initiative program | National Nuclear Security Administration Our Mission Managing the Stockpile Preventing Proliferation Powering the Nuclear Navy Emergency Response Recapitalizing Our Infrastructure Continuing Management Reform Countering Nuclear Terrorism About Us Our Programs Our History Who We Are Our Leadership Our Locations Budget Our Operations Media Room Congressional Testimony Fact Sheets Newsletters Press Releases Speeches Events Social Media Video Gallery Photo Gallery NNSA Archive Federal Employment Apply for Our Jobs Our Jobs Working at NNSA Blog Home > NNSA Blog > NNSA employees selected for Nuclear Scholars Initiative program NNSA employees selected for Nuclear Scholars Initiative program Posted By Office of Public Affairs

359

First Graduates of Nuclear Security Education Program Announced | National  

National Nuclear Security Administration (NNSA)

Graduates of Nuclear Security Education Program Announced | National Graduates of Nuclear Security Education Program Announced | National Nuclear Security Administration Our Mission Managing the Stockpile Preventing Proliferation Powering the Nuclear Navy Emergency Response Recapitalizing Our Infrastructure Continuing Management Reform Countering Nuclear Terrorism About Us Our Programs Our History Who We Are Our Leadership Our Locations Budget Our Operations Media Room Congressional Testimony Fact Sheets Newsletters Press Releases Speeches Events Social Media Video Gallery Photo Gallery NNSA Archive Federal Employment Apply for Our Jobs Our Jobs Working at NNSA Blog Home > Media Room > Press Releases > First Graduates of Nuclear Security Education Program Announced Press Release First Graduates of Nuclear Security Education Program Announced

360

Office of the Assistant General Counsel for Civilian Nuclear Programs  

Broader source: Energy.gov [DOE]

The Office of the Assistant General Counsel for Civilian Nuclear Programs (GC-72) provides legal advice and support to the Department on issues involving nuclear materials, including:

Note: This page contains sample records for the topic "nuclear weapons program" from the National Library of EnergyBeta (NLEBeta).
While these samples are representative of the content of NLEBeta,
they are not comprehensive nor are they the most current set.
We encourage you to perform a real-time search of NLEBeta
to obtain the most current and comprehensive results.


361

Nuclear Energy University Program: A Presentation to Vice Presidents...  

Office of Environmental Management (EM)

Nuclear Energy University Program: A Presentation to Vice Presidents of Research and Development of Historically Black Colleges and Universities, given by the Office of Nuclear...

362

Annular Core Research Reactor - Critical to Science-Based Weapons...  

National Nuclear Security Administration (NNSA)

Annular Core Research Reactor - Critical to Science-Based Weapons Design, Certification | National Nuclear Security Administration Facebook Twitter Youtube Flickr RSS People...

363

Program Mission Campaigns are multi-year, multi-functional efforts involving, to varying degrees, every site in the nuclear  

E-Print Network [OSTI]

and reliability of aged and remanufactured weapons in the absence of nuclear testing. This technology base must with the cessation of underground nuclear testing. · Inertial Confinement Fusion Ignition and High Yield (ICF degrees, every site in the nuclear weapons complex. They provide specialized scientific knowledge

364

Notice of Intent to Revise DOE O 452.1D, Nuclear Explosive and...  

Broader source: All U.S. Department of Energy (DOE) Office Webpages (Extended Search)

JM O 452.1D, Notice of Intent to Revise DOE O 452.1D, Nuclear Explosive and Weapon Surety Program by Angela Chambers Functional areas: Nuclear Explosive Safety, Safety and Security...

365

Trace Fission Product Ratios for Nuclear Forensics Attribution of Weapons-Grade Plutonium from Fast Breeder Reactor Blankets  

E-Print Network [OSTI]

A nuclear terrorist attack is one of the most serious threats to the national security of the United States, and in the wake of an attack, attribution of responsibility will be of the utmost importance. Plutonium, a by-product in spent nuclear...

Osborn, Jeremy

2014-08-13T23:59:59.000Z

366

Weapons Quality Assurance Qualification Standard  

Broader source: Energy.gov (indexed) [DOE]

5-2008 5-2008 September 2008 DOE STANDARD WEAPON QUALITY ASSURANCE QUALIFICATION STANDARD NNSA Weapon Quality Assurance Technical Personnel U.S. Department of Energy AREA TRNG Washington, D.C. 20585 DISTRIBUTION STATEMENT A. Approved for public release; distribution is unlimited. DOE-STD-1025-2008 This document is available on the Department of Energy Technical Standards Program Web Site at http://www.hss.energy.gov/nuclearsafety/techstds/ DOE-STD-1025-2008 iv INTENTIONALLY BLANK DOE-STD-1025-2008 v TABLE OF CONTENTS ACKNOWLEDGMENT ................................................................................................................ vii PURPOSE....................................................................................................................................

367

Enforcement Guidance Supplement 01-01: Nuclear Weapon Program Enforcement Issues  

Broader source: Energy.gov [DOE]

Section 1.3 of the Operational Procedures for Enforcement, published in June 1998, provides the opportunity for the Office of Price-Anderson Enforcement (OE) to periodically issue clarifying...

368

Employee Concerns Program | National Nuclear Security Administration  

National Nuclear Security Administration (NNSA)

About Us > Our Operations > Management and Budget > Human Resources About Us > Our Operations > Management and Budget > Human Resources > Employee Concerns Program Employee Concerns Program The National Nuclear Security Administration Service Center (NNSA/SC) Employee Concerns Program (ECP) is a formalized alternative means for DOE/NNSA federal, contractor, and subcontractor employees to report concerns as supported by the DOE Secretary Bodman's Program Statement (pdf, 66kb) and the NNSA Administrator's Statement (doc, 22kb). The concerns may be associated with the: Environment Safety Health Security Fraud Waste Abuse Mismanagement of DOE/NNSA and contractor managed activities or Reprisal for having reported such issues The program encourages employees to use their own organization's established means for reporting issues. If resolution cannot be achieved,

369

Nuclear Energy University Program Documents | Department of Energy  

Broader source: Energy.gov (indexed) [DOE]

Nuclear Energy University Program » Nuclear Energy Nuclear Energy University Program » Nuclear Energy University Program Documents Nuclear Energy University Program Documents Documents Available for Download October 31, 2013 FY 2014 Consolidated Innovative Nuclear Research FOA This Funding Opportunity Announcement (FOA) addresses the competitive portion of NE's R&D portfolio as executed through the Nuclear Energy University Programs (NEUP) and Nuclear Energy Enabling Technologies Crosscutting Technology Development (NEET CTD). NEUP utilizes up to 20 percent of funds appropriated to NE's R&D program for university-based infrastructure support and R&D in key NE program-related areas: Fuel Cycle Research and Development (FCR&D), Reactor Concepts Research, Development and Demonstration (RCRD&D), and Nuclear Energy Advanced Modeling and

370

Stewardship Science Academic Alliances Program | National Nuclear Security  

National Nuclear Security Administration (NNSA)

Program | National Nuclear Security Program | National Nuclear Security Administration Our Mission Managing the Stockpile Preventing Proliferation Powering the Nuclear Navy Emergency Response Recapitalizing Our Infrastructure Continuing Management Reform Countering Nuclear Terrorism About Us Our Programs Our History Who We Are Our Leadership Our Locations Budget Our Operations Media Room Congressional Testimony Fact Sheets Newsletters Press Releases Speeches Events Social Media Video Gallery Photo Gallery NNSA Archive Federal Employment Apply for Our Jobs Our Jobs Working at NNSA Blog Stewardship Science Academic Alliances Program Home > Stewardship Science Academic Alliances Program Stewardship Science Academic Alliances Program Stewardship Science Academic Alliances (SSAA) Program Overview Established in 2002, the Stewardship Science Academic Alliances Program

371

Characterization of U/Pu Particles Originating From the Nuclear Weapon Accidents at Palomares, Spain, 1966 And Thule, Greenland, 1968  

SciTech Connect (OSTI)

Following the USAF B-52 bomber accidents at Palomares, Spain in 1966 and at Thule, Greenland in 1968, radioactive particles containing uranium (U) and plutonium (Pu) were dispersed into the environment. To improve long-term environmental impact assessments for the contaminated ecosystems, particles from the two sites have been isolated and characterized with respect to properties influencing particle weathering rates. Low [239]Pu/[235]U (0.62-0.78) and [240]Pu/[239]Pu (0.055-0.061) atom ratios in individual particles from both sites obtained by Inductively Coupled Plasma Mass Spectrometry (ICP-MS) show that the particles contain highly enriched U and weapon-grade Pu. Furthermore, results from electron microscopy with Energy Dispersive X-ray analysis (EDX) and synchrotron radiation (SR) based micrometer-scale X-ray fluorescence ({micro}-XRF) 2D mapping demonstrated that U and Pu coexist throughout the 1-50 {micro}m sized particles, while surface heterogeneities were observed in EDX line scans. SR-based micrometer-scale X-ray Absorption Near Edge Structure Spectroscopy ({micro}-XANES) showed that the particles consisted of an oxide mixture of U (predominately UO[2] with the presence ofU[3][8]) and Pu ((III)/(IV), (V)/(V) or (III), (IV) and (V)). Neither metallic U or Pu nor uranyl or Pu(VI) could be observed. Characteristics such as elemental distributions, morphology and oxidation states are remarkably similar for the Palomares and Thule particles, reflecting that they originate from similar source and release scenarios. Thus, these particle characteristics are more dependent on the original material from which the particles are derived (source) and the formation of particles (release scenario) than the environmental conditions to which the particles have been exposed since the late 1960s.

Lind, O.C.; Salbu, B.; Janssens, K.; Proost, K.; Garcia-Leon, M.; Garcia-Tenorio, R.

2007-07-10T23:59:59.000Z

372

Nuclear Power 2010 Program: Combined Construction and Operating...  

Broader source: Energy.gov (indexed) [DOE]

Operating License & Design Certification Demonstration Projects Lessons Learned Report Nuclear Power 2010 Program: Combined Construction and Operating License & Design...

373

FAQS Qualification Card - Weapon Quality Assurance | Department of Energy  

Broader source: Energy.gov (indexed) [DOE]

Weapon Quality Assurance Weapon Quality Assurance FAQS Qualification Card - Weapon Quality Assurance A key element for the Department's Technical Qualification Programs is a set of common Functional Area Qualification Standards (FAQS) and associated Job Task Analyses (JTA). These standards are developed for various functional areas of responsibility in the Department, including oversight of safety management programs identified as hazard controls in Documented Safety Analyses (DSA). For each functional area, the FAQS identify the minimum technical competencies and supporting knowledge and skills for a typical qualified individual working in the area. FAQC-WeaponQualityAssurance.docx Description Weapon Quality Assurance Qualification Card More Documents & Publications DOE-STD-1025-2008

374

Nuclear Explosive Safety Study Functional Area Qualification Standard  

Broader source: Directives, Delegations, and Requirements [Office of Management (MA)]

A Nuclear Explosive Safety Study (NESS) is performed on all DOE Nuclear Explosive Operations (NEOs) in accordance with DOE O 452.1D, Nuclear Explosive and Weapon Surety Program; DOE O 452.2D, Nuclear Explosive Safety; and DOE M 452.2-2, Nuclear Explosive Safety Evaluation Processes.

2010-05-27T23:59:59.000Z

375

Predictive Science Academic Alliance Program | National Nuclear Security  

National Nuclear Security Administration (NNSA)

Predictive Science Academic Alliance Program | National Nuclear Security Predictive Science Academic Alliance Program | National Nuclear Security Administration Our Mission Managing the Stockpile Preventing Proliferation Powering the Nuclear Navy Emergency Response Recapitalizing Our Infrastructure Continuing Management Reform Countering Nuclear Terrorism About Us Our Programs Our History Who We Are Our Leadership Our Locations Budget Our Operations Media Room Congressional Testimony Fact Sheets Newsletters Press Releases Speeches Events Social Media Video Gallery Photo Gallery NNSA Archive Federal Employment Apply for Our Jobs Our Jobs Working at NNSA Blog Predictive Science Academic Alliance Program Home > About Us > Our Programs > Defense Programs > Future Science & Technology Programs > Office of Advanced Simulation and Computing and

376

University Program in Advanced Technology | National Nuclear Security  

National Nuclear Security Administration (NNSA)

University Program in Advanced Technology | National Nuclear Security University Program in Advanced Technology | National Nuclear Security Administration Our Mission Managing the Stockpile Preventing Proliferation Powering the Nuclear Navy Emergency Response Recapitalizing Our Infrastructure Continuing Management Reform Countering Nuclear Terrorism About Us Our Programs Our History Who We Are Our Leadership Our Locations Budget Our Operations Media Room Congressional Testimony Fact Sheets Newsletters Press Releases Speeches Events Social Media Video Gallery Photo Gallery NNSA Archive Federal Employment Apply for Our Jobs Our Jobs Working at NNSA Blog University Program in Advanced Technology Home > About Us > Our Programs > Defense Programs > Future Science & Technology Programs > Office of Advanced Simulation and Computing and

377

United States Nuclear Data Program (USNDP)  

Broader source: All U.S. Department of Energy (DOE) Office Webpages (Extended Search)

NNDC Databases: NuDat | NSR | XUNDL | ENSDF | MIRD | ENDF | CSISRS | Sigma NNDC Databases: NuDat | NSR | XUNDL | ENSDF | MIRD | ENDF | CSISRS | Sigma Search the NNDC: Go NNDC Site Index USNDP Meetings 2013 Nov. 18-22 USNDP Proceedings 2012 Annual Meeting Nov. 5-9 2011 Annual Meeting 2010 Annual Meeting 2009 Annual Meeting 2008 Annual Meeting 2007 Annual Meeting 2006 Annual Meeting Distributions CSEWG List USNDP List CSEWG & USNDP List Nuclear Data Needs for Homeland Security USNDP Structure Coordinating Committee Members Member Organizations Archival Webpage 1996 U.S. Nuclear Data Program Sponsored by the Office of Nuclear Physics - Office of Science - U.S. Department of Energy Reports FY 2012 Annual Report FY 2011 Annual Report FY 2010 Annual Report FY 2009 Annual Report FY 2008 Annual Report FY 2007 Annual Report FY 2006 Annual Report

378

Maintenance Management Program for DOE Nuclear Facilities  

Broader source: Directives, Delegations, and Requirements [Office of Management (MA)]

The Order defines the safety management program required by 10 CFR 830.204(b)(5) for maintenance and the reliable performance of Structures, Systems and Components (SSCs) that are part of the safety basis required by 10 CFR 830.202.1 at hazard category 1, 2 and 3 Department of Energy (DOE) nuclear facilities. Cancels DOE O 433.1. Canceled by DOE O 433.1B.

2007-02-13T23:59:59.000Z

379

Maintenance Management Program for DOE Nuclear Facilities  

Broader source: Directives, Delegations, and Requirements [Office of Management (MA)]

The order defines the safety management program required by 10 CFR 830.204(b)(5) for maintenance and the reliable performance of structures, systems and components that are part of the safety basis required by 10 CFR 830.202 at hazard category 1, 2 and 3 DOE nuclear facilities. Admin Chg 1, dated 3-12-2013. Cancels DOE O 433.1A.

2010-04-21T23:59:59.000Z

380

Maintenance Management Program for DOE Nuclear Facilities  

Broader source: Directives, Delegations, and Requirements [Office of Management (MA)]

The order defines the safety management program required by 10 CFR 830.204(b)(5) for maintenance and the reliable performance of structures, systems and components that are part of the safety basis required by 10 CFR 830.202 at hazard category 1, 2 and 3 DOE nuclear facilities. Cancels DOE O 433.1A. Admin Chg 1, dated 3-12-2013, cancels DOE O 433.1B.

2010-04-21T23:59:59.000Z

Note: This page contains sample records for the topic "nuclear weapons program" from the National Library of EnergyBeta (NLEBeta).
While these samples are representative of the content of NLEBeta,
they are not comprehensive nor are they the most current set.
We encourage you to perform a real-time search of NLEBeta
to obtain the most current and comprehensive results.


381

Nuclear nonproliferation strategies for South Asia  

SciTech Connect (OSTI)

Continued expansion of the nuclear weapons capabilities of India and Pakistan, coupled with ongoing conflict between them, raises the probability of nuclear war in South Asia. A nuclear arms race between India and Pakistan could also harm efforts to discourage other nations from acquiring nuclear weapons. United States policy opposes the spread of nuclear weapons because proliferation increases threats to U.S. national security and to world peace and stability. However, there is debate on the dangers of an escalating arms race in South Asia. Steps taken by the United States and other countries to persuade India and Pakistan to end their nuclear weapons programs have had limited success, at most slowing down their pace. A complicating factor is that India maintains a nuclear capability in part to deter China, whereas Pakistan`s nuclear weapons capability is aimed at deterring India`s superior conventional and nuclear capabilities. Analysts and policy officials are divided on how to avoid an arms race in South Asia. The Clinton Administration has renewed efforts to break the deadlock over nonproliferation, but longstanding obstacles have blocked progress. Pakistan favors a regional approach to nonproliferation, while India insists on a global approach that treats the nuclear powers on an equal basis with non nuclear weapon countries. This report analyzes the nuclear capabilities of India and Pakistan and reviews several options for U.S. nonproliferation policy in South Asia.

Davis, Z.S.

1994-05-03T23:59:59.000Z

382

2006 Department of Energy Strategic Plan - Ensuring America's nuclear  

Broader source: Energy.gov (indexed) [DOE]

Ensuring America's Ensuring America's nuclear security 2006 Department of Energy Strategic Plan - Ensuring America's nuclear security In 2000, the National Nuclear Security Administration (NNSA) was established as a new element within the Department in response to a Congressional mandate to reinvigorate the security posture throughout the nuclear weapons program and to reaffirm the Nation's commitment to maintaining the nuclear deterrence capabilities of the United States. NNSA was chartered to better focus management attention on enhanced security, proactive management practices, and mission focus within the Department's national defense and nonproliferation programs. The Department performs its national security mission involving nuclear weapons and nuclear materials and technology through the NNSA.

383

Senior Adviser, Defense Nuclear Nonproliferation Programs Sector, Pacific  

Broader source: All U.S. Department of Energy (DOE) Office Webpages (Extended Search)

Senior Adviser, Defense Nuclear Nonproliferation Programs Sector, Pacific Senior Adviser, Defense Nuclear Nonproliferation Programs Sector, Pacific Northwest National Laboratory | National Nuclear Security Administration Our Mission Managing the Stockpile Preventing Proliferation Powering the Nuclear Navy Emergency Response Recapitalizing Our Infrastructure Continuing Management Reform Countering Nuclear Terrorism About Us Our Programs Our History Who We Are Our Leadership Our Locations Budget Our Operations Media Room Congressional Testimony Fact Sheets Newsletters Press Releases Speeches Events Social Media Video Gallery Photo Gallery NNSA Archive Federal Employment Apply for Our Jobs Our Jobs Working at NNSA Blog Home > About Us > Who We Are > In The Spotlight > Steve Mladineo Senior Adviser, Defense Nuclear Nonproliferation Programs Sector, Pacific

384

Senior Adviser, Defense Nuclear Nonproliferation Programs Sector, Pacific  

National Nuclear Security Administration (NNSA)

Senior Adviser, Defense Nuclear Nonproliferation Programs Sector, Pacific Senior Adviser, Defense Nuclear Nonproliferation Programs Sector, Pacific Northwest National Laboratory | National Nuclear Security Administration Our Mission Managing the Stockpile Preventing Proliferation Powering the Nuclear Navy Emergency Response Recapitalizing Our Infrastructure Continuing Management Reform Countering Nuclear Terrorism About Us Our Programs Our History Who We Are Our Leadership Our Locations Budget Our Operations Media Room Congressional Testimony Fact Sheets Newsletters Press Releases Speeches Events Social Media Video Gallery Photo Gallery NNSA Archive Federal Employment Apply for Our Jobs Our Jobs Working at NNSA Blog Home > About Us > Who We Are > In The Spotlight > Steve Mladineo Senior Adviser, Defense Nuclear Nonproliferation Programs Sector, Pacific

385

Secretary Chu Announces Nuclear Energy University Program Awards |  

Broader source: Energy.gov (indexed) [DOE]

Secretary Chu Announces Nuclear Energy University Program Awards Secretary Chu Announces Nuclear Energy University Program Awards Secretary Chu Announces Nuclear Energy University Program Awards June 16, 2009 - 1:43pm Addthis U.S. Energy Secretary Steven Chu today announced nearly $9 million in awards to support the next generation of American nuclear energy development. Under the Nuclear Energy Universities Program, the Department of Energy will provide $2.9 million in scholarships and fellowships to 86 U.S. nuclear science and engineering (NS&E) students, and will offer more than $6 million in grants to 29 U.S. universities and colleges in 23 states. The Nuclear Energy University Program (NEUP) supports the country's nuclear energy research infrastructure at schools across the country, while attracting high-quality undergraduate and graduate students into nuclear

386

Secretary Chu Announces Nuclear Energy University Program Awards |  

Broader source: Energy.gov (indexed) [DOE]

Secretary Chu Announces Nuclear Energy University Program Awards Secretary Chu Announces Nuclear Energy University Program Awards Secretary Chu Announces Nuclear Energy University Program Awards June 16, 2009 - 1:43pm Addthis U.S. Energy Secretary Steven Chu today announced nearly $9 million in awards to support the next generation of American nuclear energy development. Under the Nuclear Energy Universities Program, the Department of Energy will provide $2.9 million in scholarships and fellowships to 86 U.S. nuclear science and engineering (NS&E) students, and will offer more than $6 million in grants to 29 U.S. universities and colleges in 23 states. The Nuclear Energy University Program (NEUP) supports the country's nuclear energy research infrastructure at schools across the country, while attracting high-quality undergraduate and graduate students into nuclear

387

Secretary Chu Announces Nuclear Energy University Program Awards |  

Broader source: Energy.gov (indexed) [DOE]

Nuclear Energy University Program Awards Nuclear Energy University Program Awards Secretary Chu Announces Nuclear Energy University Program Awards June 16, 2009 - 12:00am Addthis WASHINGTON, DC - U.S. Energy Secretary Steven Chu today announced nearly $9 million in awards to support the next generation of American nuclear energy development. Under the Nuclear Energy Universities Program, the Department of Energy will provide $2.9 million in scholarships and fellowships to 86 U.S. nuclear science and engineering (NS&E) students, and will offer more than $6 million in grants to 29 U.S. universities and colleges in 23 states. The Nuclear Energy University Program (NEUP) supports the country's nuclear energy research infrastructure at schools across the country, while attracting high-quality undergraduate and graduate students into nuclear

388

REVIEW OF INDUSTRIES AND GOVERNMENT AGENCIES FOR TECHNOLOGIES APPLICABLE TO DEACTIVATION AND DECOMMISSIONING OF NUCLEAR WEAPONS FACILITIES  

SciTech Connect (OSTI)

The Deactivation and Decommissioning Focus Area's (DDFA's) mission is to develop, demonstrate, and deploy improved deactivation and decommissioning (D&D) technologies. This mission requires that emphasis be continually placed on identifying technologies currently employed or under development in other nuclear as well as nonnuclear industries and government agencies. In support of DDFA efforts to clean up the U.S. Department of Energy's (DOE's) radiologically contaminated surplus facilities using technologies that improve worker safety, reduce costs, and accelerate cleanup schedules, a study was conducted to identify innovative technologies developed for use in nonnuclear arenas that are appropriate for D&D applications.

Reilkoff, T. E.; Hetland, M. D.; O'Leary, E. M.

2002-02-25T23:59:59.000Z

389

Minority Serving Institution Internship Program | National Nuclear Security  

Broader source: All U.S. Department of Energy (DOE) Office Webpages (Extended Search)

Institution Internship Program | National Nuclear Security Institution Internship Program | National Nuclear Security Administration Our Mission Managing the Stockpile Preventing Proliferation Powering the Nuclear Navy Emergency Response Recapitalizing Our Infrastructure Continuing Management Reform Countering Nuclear Terrorism About Us Our Programs Our History Who We Are Our Leadership Our Locations Budget Our Operations Media Room Congressional Testimony Fact Sheets Newsletters Press Releases Speeches Events Social Media Video Gallery Photo Gallery NNSA Archive Federal Employment Apply for Our Jobs Our Jobs Working at NNSA Blog Minority Serving Institution Internship Program Home > Federal Employment > Our Jobs > Opportunities for Students > Minority Serving Institution Internship Program Minority Serving Institution Internship Program

390

Minority Serving Institution Internship Program | National Nuclear Security  

National Nuclear Security Administration (NNSA)

Institution Internship Program | National Nuclear Security Institution Internship Program | National Nuclear Security Administration Our Mission Managing the Stockpile Preventing Proliferation Powering the Nuclear Navy Emergency Response Recapitalizing Our Infrastructure Continuing Management Reform Countering Nuclear Terrorism About Us Our Programs Our History Who We Are Our Leadership Our Locations Budget Our Operations Media Room Congressional Testimony Fact Sheets Newsletters Press Releases Speeches Events Social Media Video Gallery Photo Gallery NNSA Archive Federal Employment Apply for Our Jobs Our Jobs Working at NNSA Blog Minority Serving Institution Internship Program Home > Federal Employment > Our Jobs > Opportunities for Students > Minority Serving Institution Internship Program Minority Serving Institution Internship Program

391

India's Nuclear Energy Program : prospects The talk will begin with a brief introduction to nuclear fission  

E-Print Network [OSTI]

India's Nuclear Energy Program : prospects The talk will begin with a brief introduction to nuclear posed by reactors, the accident liability laws and regulatory structure governing nuclear energy, Wednesday, Oct 29th 4:00 PM (Tea/Coffee at Seminar Hall, TCIS Colloquium India's Nuclear Energy Program

Shyamasundar, R.K.

392

Generalized weapon effectiveness modeling .  

E-Print Network [OSTI]

??In this thesis, we compare weapon effectiveness methods to determine if current effectiveness models provide accurate results. The United States Military currently adheres to a… (more)

Anderson, Colin M.

2004-01-01T23:59:59.000Z

393

E-Print Network 3.0 - atomic weapon tests Sample Search Results  

Broader source: All U.S. Department of Energy (DOE) Office Webpages (Extended Search)

By dissembling random nuclear weapons in the stockpile and closely inspecting and testing... explosives and nuclear materials at the Nevada Test Site to gather diagnostic...

394

Nuclear Energy University Program: A Presentation to Vice Presidents of  

Broader source: Energy.gov (indexed) [DOE]

Nuclear Energy University Program: A Presentation to Vice Nuclear Energy University Program: A Presentation to Vice Presidents of Research and Development of Historically Black Colleges and Universities, given by the Office of Nuclear Energy Nuclear Energy University Program: A Presentation to Vice Presidents of Research and Development of Historically Black Colleges and Universities, given by the Office of Nuclear Energy An overview of the Office of Nuclear Energy's university programs Nuclear Energy University Program: A Presentation to Vice Presidents of Research and Development of Historically Black Colleges and Universities, given by the Office of Nuclear Energy More Documents & Publications Meeting Materials: December 18, 2009 Meeting Materials: June 9, 2009 June 2011, Report of the Fuel Cycle Subcommittee of NEAC

395

The Soviet program for peaceful uses of nuclear explosions. Revision 1  

SciTech Connect (OSTI)

An extensive review is given of the US and Russian efforts on peaceful uses of nuclear explosions (PNE). The Soviet PNE program was many times larger than the US Plowshare program in terms of both the number of applications explored with field experiments and the extent to which they were introduced into industrial use. Several PNE applications, such as deep seismic sounding and oil stimulation, have been explored in depth and appear to have had a positive cost benefit at minimal public risk. Closure of runaway gas wells is another possible application where all other techniques fail. However, the fundamental problem with PNEs is the fact that, if they are to be economically significant, there must be widespread use of the technology, involving large numbers of sites, each of which presents a potential source of radioactivity to the environment and nearby communities. Russia now has more than 100 sites where significant high-level radioactivity has been buried. Experience over the last 20 years in US and in today`s Russia shows that it is virtually impossible to gain public acceptance of such applications of nuclear energy. In addition, PNEs also pose a difficult problem in the arms control area. Under a comprehensive test ban, any country conducting PNEs would, in appearance if not in fact, receive information useful for designing new nuclear weapons or maintaining an existing nuclear stockpile, information denied to the other parties to the treaty. 6 tabs, 10 figs.

Nordyke, M.D.

1996-10-01T23:59:59.000Z

396

Strategies for denaturing the weapons-grade plutonium stockpile  

SciTech Connect (OSTI)

In the next few years, approximately 50 metric tons of weapons-grade plutonium and 150 metric tons of highly-enriched uranium (HEU) may be removed from nuclear weapons in the US and declared excess. These materials represent a significant energy resource that could substantially contribute to our national energy requirements. HEU can be used as fuel in naval reactors, or diluted with depleted uranium for use as fuel in commercial reactors. This paper proposes to use the weapons-grade plutonium as fuel in light water reactors. The first such reactor would demonstrate the dual objectives of producing electrical power and denaturing the plutonium to prevent use in nuclear weapons.

Buckner, M.R.; Parks, P.B.

1992-10-01T23:59:59.000Z

397

Global Nuclear Futures Program Manager, Sandia National Laboratories |  

Broader source: All U.S. Department of Energy (DOE) Office Webpages (Extended Search)

Global Nuclear Futures Program Manager, Sandia National Laboratories | Global Nuclear Futures Program Manager, Sandia National Laboratories | National Nuclear Security Administration Our Mission Managing the Stockpile Preventing Proliferation Powering the Nuclear Navy Emergency Response Recapitalizing Our Infrastructure Continuing Management Reform Countering Nuclear Terrorism About Us Our Programs Our History Who We Are Our Leadership Our Locations Budget Our Operations Media Room Congressional Testimony Fact Sheets Newsletters Press Releases Speeches Events Social Media Video Gallery Photo Gallery NNSA Archive Federal Employment Apply for Our Jobs Our Jobs Working at NNSA Blog Home > About Us > Who We Are > In The Spotlight > Tom Sanders Global Nuclear Futures Program Manager, Sandia National Laboratories Tom Sanders Tom Sanders Role: Global Nuclear Futures Program Manager, Sandia National Laboratories

398

Some facts about “weapon focus”  

Science Journals Connector (OSTI)

Weapon focus” refers to the concentration of acrime witness's attention on a weapon, and the resultant reduction in ability to ... that subjects made more eye fixations on the weapon than on the check, and fixat...

Elizabeth F. Loftus; Geoffrey R. Loftus; Jane Messo

1987-03-01T23:59:59.000Z

399

Fusion Nuclear Science and Technology ProgramFusion Nuclear Science and Technology Program Issues and Strategy for Fusion Nuclear Science Facility (FNSF)  

E-Print Network [OSTI]

Need for Fusion Nuclear Science and Technology ProgramFusion Nuclear Science and Technology Program ­Issues and Strategy for Fusion Nuclear Science Facility (FNSF) ­Key R&D Areas to begin NOW (modeling 12, 2010 #12;Fusion Nuclear Science and Technology (FNST) FNST is the science engineering technology

Abdou, Mohamed

400

Plutonium Pits | National Nuclear Security Administration  

Broader source: All U.S. Department of Energy (DOE) Office Webpages (Extended Search)

To ensure the reliability, safety, and security of nuclear weapons without underground nuclear testing; weapons go through a surveillance process, where they are regularly taken...

Note: This page contains sample records for the topic "nuclear weapons program" from the National Library of EnergyBeta (NLEBeta).
While these samples are representative of the content of NLEBeta,
they are not comprehensive nor are they the most current set.
We encourage you to perform a real-time search of NLEBeta
to obtain the most current and comprehensive results.


401

NEAMS: The Nuclear Energy Advanced Modeling and Simulation Program  

Broader source: Energy.gov (indexed) [DOE]

NEAMS: The Nuclear Energy Advanced NEAMS: The Nuclear Energy Advanced Modeling and Simulation Program The Nuclear Energy Advanced Modeling and Simulation (NEAMS) Program is developing a simulation tool kit using leading-edge computational methods that will accelerate the development and deployment of nuclear power technologies that employ enhanced safety and security features, produce power more cost-effectively, and utilize natural resources more efficiently. The NEAMS ToolKit

402

Recovery of weapon plutonium as feed material for reactor fuel  

SciTech Connect (OSTI)

This report presents preliminary considerations for recovering and converting weapon plutonium from various US weapon forms into feed material for fabrication of reactor fuel elements. An ongoing DOE study addresses the disposition of excess weapon plutonium through its use as fuel for nuclear power reactors and subsequent disposal as spent fuel. The spent fuel would have characteristics similar to those of commercial power spent fuel and could be similarly disposed of in a geologic repository.

Armantrout, G.A.; Bronson, M.A.; Choi, Jor-Shan [and others

1994-03-16T23:59:59.000Z

403

Nuclear Safety Research and Development Program Operating Plan | Department  

Broader source: Energy.gov (indexed) [DOE]

Program Operating Plan Program Operating Plan Nuclear Safety Research and Development Program Operating Plan July 5, 2012 Nuclear Safety Research and Development Program Operating Plan This operating plan outlines the mission, goals, and processes for the Department of Energy's (DOE) Nuclear Safety Research & Development (NSR&D) Program. This first version of the operating plan also discusses the startup phase of the program. NSR&D involves a systematic search for knowledge to advance the fundamental understanding of nuclear safety science and technology through scientific study, analysis, modeling, and experiments. Maintaining an effective NSR&D program will support DOE and the National Nuclear Security Administration (NNSA) in standards development, validation of analytical models and

404

Los Alamos Site Office Nuclear Maintenance Management Program...  

Office of Environmental Management (EM)

and Emergency Management Evaluations Activity Report for the Los Alamos Site Office Nuclear Maintenance Management Program Oversight Self-Assessment Dates of Activity : 1114...

405

B53 Nuclear Bomb Dismantlement | National Nuclear Security Administration  

National Nuclear Security Administration (NNSA)

B53 Nuclear Bomb Dismantlement | National Nuclear Security Administration B53 Nuclear Bomb Dismantlement | National Nuclear Security Administration Our Mission Managing the Stockpile Preventing Proliferation Powering the Nuclear Navy Emergency Response Recapitalizing Our Infrastructure Continuing Management Reform Countering Nuclear Terrorism About Us Our Programs Our History Who We Are Our Leadership Our Locations Budget Our Operations Media Room Congressional Testimony Fact Sheets Newsletters Press Releases Speeches Events Social Media Video Gallery Photo Gallery NNSA Archive Federal Employment Apply for Our Jobs Our Jobs Working at NNSA Blog Home > Media Room > Video Gallery > B53 Nuclear Bomb Dismantlement B53 Nuclear Bomb Dismantlement B53 Nuclear Bomb Dismantlement The elimination of the B53 by Department of Energy's National Nuclear Security Administration (NNSA) is consistent with the goal President Obama announced in his April 2009 Prague speech to reduce the number of nuclear weapons. The President said, "We will reduce the role of nuclear weapons in our national security strategy, and urge others to do the same." The dismantlement of the last remaining B53 ensures that the system will never again be part of the U.S. nuclear weapons stockpile. As a key part of its national security mission, NNSA is actively responsible for safely dismantling weapons that are no longer needed, and disposing of the excess material and components.

406

Program Objectives | National Nuclear Security Administration  

National Nuclear Security Administration (NNSA)

National Laser Users' Facility Grant Program Program Objectives Program Objectives National Laser Users' Facility Grant Program Objectives The primary purpose of the National...

407

Program Objectives | National Nuclear Security Administration  

National Nuclear Security Administration (NNSA)

Stewardship Science Academic Alliances Program Program Objectives Program Objectives Stewardship Science Academic Alliances (SSAA) Program Objectives Support the U.S. scientific...

408

Military Academy Cadet/Midshipman Program | National Nuclear Security  

National Nuclear Security Administration (NNSA)

Academy Cadet/Midshipman Program | National Nuclear Security Academy Cadet/Midshipman Program | National Nuclear Security Administration Our Mission Managing the Stockpile Preventing Proliferation Powering the Nuclear Navy Emergency Response Recapitalizing Our Infrastructure Continuing Management Reform Countering Nuclear Terrorism About Us Our Programs Our History Who We Are Our Leadership Our Locations Budget Our Operations Media Room Congressional Testimony Fact Sheets Newsletters Press Releases Speeches Events Social Media Video Gallery Photo Gallery NNSA Archive Federal Employment Apply for Our Jobs Our Jobs Working at NNSA Blog Military Academy Cadet/Midshipman Program Home > About Us > Our Programs > Defense Programs > Military Academic Collaborations > Military Academy Cadet/Midshipman Program Military Academy Cadet/Midshipman Program

409

The Future of University Nuclear Engineering Programs and University  

Broader source: Energy.gov (indexed) [DOE]

The Future of University Nuclear Engineering Programs and The Future of University Nuclear Engineering Programs and University Research and Training Reactors The Future of University Nuclear Engineering Programs and University Research and Training Reactors Nuclear engineering programs and departments with an initial emphasis in fission were formed in the late 1950's and 1960's from interdisciplinary efforts in many of the top research universities, providing the manpower for this technical discipline. In the same time period, for many of these programs, university nuclear reactors were constructed and began their operation, providing some of the facilities needed for research and training of students engaged in this profession. However, over the last decade, the U.S. nuclear science and engineering educational structure has not only stagnated but has reached a state of

410

The Future of University Nuclear Engineering Programs and University  

Broader source: Energy.gov (indexed) [DOE]

The Future of University Nuclear Engineering Programs and The Future of University Nuclear Engineering Programs and University Research and Training Reactors The Future of University Nuclear Engineering Programs and University Research and Training Reactors Nuclear engineering programs and departments with an initial emphasis in fission were formed in the late 1950's and 1960's from interdisciplinary efforts in many of the top research universities, providing the manpower for this technical discipline. In the same time period, for many of these programs, university nuclear reactors were constructed and began their operation, providing some of the facilities needed for research and training of students engaged in this profession. However, over the last decade, the U.S. nuclear science and engineering educational structure has not only stagnated but has reached a state of

411

Foreign Research Reactor Spent Nuclear Fuel Acceptance Program  

Broader source: Energy.gov (indexed) [DOE]

Global Threat Reduction Initiative: Global Threat Reduction Initiative: U.S. Nuclear Remove Program Foreign Research Reactor Spent Nuclear Fuel (FRR SNF) Acceptance 2007 DOE TEC Meeting Chuck Messick DOE/NNSA/SRS 2 Contents * Program Objective and Policy * Program implementation status * Shipment Information * Operational Logistics * Lessons Learned * Conclusion 3 U.S. Nuclear Remove Program Objective * To play a key role in the Global Threat Reduction Remove Program supporting permanent threat reduction by accepting program eligible material. * Works in conjunction with the Global Threat Reduction Convert Program to accept program eligible material as an incentive to core conversion providing a disposition path for HEU and LEU during the life of the Acceptance Program. 4 Reasons for the Policy

412

Second Line of Defense Program | National Nuclear Security Administration  

Broader source: All U.S. Department of Energy (DOE) Office Webpages (Extended Search)

Line of Defense Program | National Nuclear Security Administration Line of Defense Program | National Nuclear Security Administration Our Mission Managing the Stockpile Preventing Proliferation Powering the Nuclear Navy Emergency Response Recapitalizing Our Infrastructure Continuing Management Reform Countering Nuclear Terrorism About Us Our Programs Our History Who We Are Our Leadership Our Locations Budget Our Operations Media Room Congressional Testimony Fact Sheets Newsletters Press Releases Speeches Events Social Media Video Gallery Photo Gallery NNSA Archive Federal Employment Apply for Our Jobs Our Jobs Working at NNSA Blog Second Line of Defense Program Home > About Us > Our Programs > Nonproliferation > International Materials Protection and Cooperation > Second Line of Defense Program Second Line of Defense Program In April 2009, President Obama called the danger of a terrorist acquiring

413

2013 NNSA Defense Programs Science Council | National Nuclear Security  

National Nuclear Security Administration (NNSA)

3 NNSA Defense Programs Science Council | National Nuclear Security 3 NNSA Defense Programs Science Council | National Nuclear Security Administration Our Mission Managing the Stockpile Preventing Proliferation Powering the Nuclear Navy Emergency Response Recapitalizing Our Infrastructure Continuing Management Reform Countering Nuclear Terrorism About Us Our Programs Our History Who We Are Our Leadership Our Locations Budget Our Operations Media Room Congressional Testimony Fact Sheets Newsletters Press Releases Speeches Events Social Media Video Gallery Photo Gallery NNSA Archive Federal Employment Apply for Our Jobs Our Jobs Working at NNSA Blog Home > NNSA Blog > 2013 NNSA Defense Programs Science Council 2013 NNSA Defense Programs Science Council Posted By Office of Public Affairs 2013 NNSA Defense Programs Science Council Members of the 2013 NNSA Defense Programs Science Council include, from

414

National Laser User Facilities Program | National Nuclear Security  

Broader source: All U.S. Department of Energy (DOE) Office Webpages (Extended Search)

Laser User Facilities Program | National Nuclear Security Laser User Facilities Program | National Nuclear Security Administration Our Mission Managing the Stockpile Preventing Proliferation Powering the Nuclear Navy Emergency Response Recapitalizing Our Infrastructure Continuing Management Reform Countering Nuclear Terrorism About Us Our Programs Our History Who We Are Our Leadership Our Locations Budget Our Operations Media Room Congressional Testimony Fact Sheets Newsletters Press Releases Speeches Events Social Media Video Gallery Photo Gallery NNSA Archive Federal Employment Apply for Our Jobs Our Jobs Working at NNSA Blog National Laser User Facilities Program Home > National Laser User Facilities Program National Laser User Facilities Program National Laser Users' Facility Grant Program Overview The Laboratory for Laser Energetics (LLE) at the University of Rochester

415

Second Line of Defense Program | National Nuclear Security Administration  

National Nuclear Security Administration (NNSA)

Line of Defense Program | National Nuclear Security Administration Line of Defense Program | National Nuclear Security Administration Our Mission Managing the Stockpile Preventing Proliferation Powering the Nuclear Navy Emergency Response Recapitalizing Our Infrastructure Continuing Management Reform Countering Nuclear Terrorism About Us Our Programs Our History Who We Are Our Leadership Our Locations Budget Our Operations Media Room Congressional Testimony Fact Sheets Newsletters Press Releases Speeches Events Social Media Video Gallery Photo Gallery NNSA Archive Federal Employment Apply for Our Jobs Our Jobs Working at NNSA Blog Second Line of Defense Program Home > About Us > Our Programs > Nonproliferation > International Materials Protection and Cooperation > Second Line of Defense Program Second Line of Defense Program In April 2009, President Obama called the danger of a terrorist acquiring

416

National Laser User Facilities Program | National Nuclear Security  

National Nuclear Security Administration (NNSA)

User Facilities Program | National Nuclear Security User Facilities Program | National Nuclear Security Administration Our Mission Managing the Stockpile Preventing Proliferation Powering the Nuclear Navy Emergency Response Recapitalizing Our Infrastructure Continuing Management Reform Countering Nuclear Terrorism About Us Our Programs Our History Who We Are Our Leadership Our Locations Budget Our Operations Media Room Congressional Testimony Fact Sheets Newsletters Press Releases Speeches Events Social Media Video Gallery Photo Gallery NNSA Archive Federal Employment Apply for Our Jobs Our Jobs Working at NNSA Blog National Laser User Facilities Program Home > National Laser User Facilities Program National Laser User Facilities Program National Laser Users' Facility Grant Program Overview The Laboratory for Laser Energetics (LLE) at the University of Rochester

417

National Laser Users' Facility Grant Program | National Nuclear Security  

National Nuclear Security Administration (NNSA)

Users' Facility Grant Program | National Nuclear Security Users' Facility Grant Program | National Nuclear Security Administration Our Mission Managing the Stockpile Preventing Proliferation Powering the Nuclear Navy Emergency Response Recapitalizing Our Infrastructure Continuing Management Reform Countering Nuclear Terrorism About Us Our Programs Our History Who We Are Our Leadership Our Locations Budget Our Operations Media Room Congressional Testimony Fact Sheets Newsletters Press Releases Speeches Events Social Media Video Gallery Photo Gallery NNSA Archive Federal Employment Apply for Our Jobs Our Jobs Working at NNSA Blog NLUF National Laser Users' Facility Grant Program Home > About Us > Our Programs > Defense Programs > Office of Research, Development, Test, and Evaluation > University Partnerships / Academic Alliances > National Laser Users' Facility Grant Program

418

continuity program | National Nuclear Security Administration  

National Nuclear Security Administration (NNSA)

Nuclear Navy Emergency Response Recapitalizing Our Infrastructure Countering Nuclear Terrorism About Our History Who We Are Our Leadership Our Locations Budget Our Operations...

419

Nuclear waste programs; Semiannual progress report, October 1991--March 1992  

SciTech Connect (OSTI)

This document reports on the work done by the Nuclear Waste Programs of the Chemical Technology Division (CMT), Argonne National Laboratory, in the period October 1991-March 1992. In these programs, studies are underway on the performance of waste glass and spent fuel in projected nuclear repository conditions to provide input to the licensing of the nation`s high-level waste repositories

Bates, J.K.; Bradley, C.R.; Buck, E.C.; Dietz, N.L.; Ebert, W.L.; Emery, J.W.; Feng, X.; Finn, P.A.; Gerding, T.J.; Hoh, J.C. [and others

1993-11-01T23:59:59.000Z

420

Nuclear Power 2010 Program: Combined Construction and Operating License &  

Broader source: Energy.gov (indexed) [DOE]

Nuclear Power 2010 Program: Combined Construction and Operating Nuclear Power 2010 Program: Combined Construction and Operating License & Design Certification Demonstration Projects Lessons Learned Report Nuclear Power 2010 Program: Combined Construction and Operating License & Design Certification Demonstration Projects Lessons Learned Report The Nuclear Power 2010 (NP 2010) Construction and Operating License/Design Certification (COL/DC) Demonstration program together with the financial incentives provided by the Energy Policy Act of 2005 are the two primary reasons why a number of license applications for new nuclear construction are before the NRC today, and why the first new nuclear plants in over 30 years are under construction in the United States. As with all significant endeavors, there are lessons to be learned from the

Note: This page contains sample records for the topic "nuclear weapons program" from the National Library of EnergyBeta (NLEBeta).
While these samples are representative of the content of NLEBeta,
they are not comprehensive nor are they the most current set.
We encourage you to perform a real-time search of NLEBeta
to obtain the most current and comprehensive results.


421

Systems engineering analysis of kinetic energy weapon concepts  

SciTech Connect (OSTI)

This study examines, from a systems engineering design perspective, the potential of kinetic energy weapons being used in the role of a conventional strategic weapon. Within the Department of Energy (DOE) complex, strategic weapon experience falls predominantly in the nuclear weapons arena. The techniques developed over the years may not be the most suitable methodologies for use in a new design/development arena. For this reason a more fundamental approach was pursued with the objective of developing an information base from which design decisions might be made concerning the conventional strategic weapon system concepts. The study examined (1) a number of generic missions, (2) the effects of a number of damage mechanisms from a physics perspective, (3) measures of effectiveness (MOE`s), and (4) a design envelope for kinetic energy weapon concepts. With the base of information a cut at developing a set of high-level system requirements was made, and a number of concepts were assessed against these requirements.

Senglaub, M.

1996-06-01T23:59:59.000Z

422

Atomic Energy and Nuclear Materials Program (Tennessee) | Department of  

Broader source: Energy.gov (indexed) [DOE]

Nuclear Materials Program (Tennessee) Nuclear Materials Program (Tennessee) Atomic Energy and Nuclear Materials Program (Tennessee) < Back Eligibility Commercial Construction Developer General Public/Consumer Industrial Investor-Owned Utility Utility Program Info State Tennessee Program Type Environmental Regulations Siting and Permitting Provider Tennessee Department Of Environment and Conservation The Atomic Energy and Nuclear Materials section of the Tennessee Code covers all of the regulations, licenses, permits, siting requirements, and practices relevant to a nuclear energy development. In addition to the Tennessee Code the Department of Environment and Conservation has a rule pertaining to the licensing and registration of sources of radiation. The Department's rules state that any contractor or subcontractor of the U.S.

423

Student Temporary Employment Program | National Nuclear Security...  

National Nuclear Security Administration (NNSA)

Our Jobs Opportunities for Students Student Temporary Employment Program Student Temporary Employment Program The Student Temporary Employment Program (STEP) is the perfect...

424

Student Temporary Employment Program | National Nuclear Security...  

Broader source: All U.S. Department of Energy (DOE) Office Webpages (Extended Search)

Apply for Our Jobs How to Apply Student Jobs Student Temporary Employment Program Student Temporary Employment Program Our Student Temporary Employment Program (STEP)...

425

High Energy Density Laboratory Plasmas Program | National Nuclear Security  

National Nuclear Security Administration (NNSA)

Program | National Nuclear Security Program | National Nuclear Security Administration Our Mission Managing the Stockpile Preventing Proliferation Powering the Nuclear Navy Emergency Response Recapitalizing Our Infrastructure Continuing Management Reform Countering Nuclear Terrorism About Us Our Programs Our History Who We Are Our Leadership Our Locations Budget Our Operations Media Room Congressional Testimony Fact Sheets Newsletters Press Releases Speeches Events Social Media Video Gallery Photo Gallery NNSA Archive Federal Employment Apply for Our Jobs Our Jobs Working at NNSA Blog High Energy Density Laboratory Plasmas Program Home > High Energy Density Laboratory Plasmas Program High Energy Density Laboratory Plasmas Program Steady advances in increasing the energy, power, and brightness of lasers and particle beams and advances in pulsed power systems have made possible

426

LDRD program update set for June 12 | National Nuclear Security  

National Nuclear Security Administration (NNSA)

program update set for June 12 | National Nuclear Security program update set for June 12 | National Nuclear Security Administration Our Mission Managing the Stockpile Preventing Proliferation Powering the Nuclear Navy Emergency Response Recapitalizing Our Infrastructure Continuing Management Reform Countering Nuclear Terrorism About Us Our Programs Our History Who We Are Our Leadership Our Locations Budget Our Operations Media Room Congressional Testimony Fact Sheets Newsletters Press Releases Speeches Events Social Media Video Gallery Photo Gallery NNSA Archive Federal Employment Apply for Our Jobs Our Jobs Working at NNSA Blog Home > NNSA Blog > LDRD program update set for June 12 LDRD program update set for June 12 Posted By Office of Public Affairs LDRD program update set for June 12 The NNSA will host an Laboratory Directed Research and Development (LDRD)

427

DOE's Former Rocky Flats Weapons Production Site to Become National...  

Energy Savers [EERE]

Flats nuclear weapons production site to the Department of the Interior's (DOI) U.S. Fish and Wildlife Service (FWS) for use as a National Wildlife Refuge. After more than a...

428

hemical and biological weapons are rightly re-garded with a special sense of horror. Their  

E-Print Network [OSTI]

C hemical and biological weapons are rightly re- garded with a special sense of horror spread through a population. Moreover, chemical and biological weapons are especially attractive alter- natives for groups that lack the ability to construct nuclear weapons. The 1995 release of sarin gas

Spirtes, Peter

429

NPO recognized by Defense Programs | National Nuclear Security...  

National Nuclear Security Administration (NNSA)

who worked on projects ranging from metallography of weapons components to analysis of plastic bonded explosives to work on the B53 and B83 weapons. In his comments, he emphasized...

430

Mentoring Program | National Nuclear Security Administration  

National Nuclear Security Administration (NNSA)

Twitter Youtube Flickr RSS People Mission Managing the Stockpile Preventing Proliferation Powering the Nuclear Navy Emergency Response Recapitalizing Our Infrastructure...

431

Nuclear presence and crisis escalation stability: prospects for peace?.  

E-Print Network [OSTI]

??This thesis examines the relationship between crisis escalation and the presence of nuclear actors. Nuclear weapons are typically viewed as the ultimate weapons of mass… (more)

Sanchez, Victoria Justine

2010-01-01T23:59:59.000Z

432

Y-12 and the National Nuclear Security Administration make continuing...  

Broader source: All U.S. Department of Energy (DOE) Office Webpages (Extended Search)

the safety, security and performance of the U.S. nuclear weapons stockpile without nuclear testing; reduces the global danger from weapons of mass destruction; provides the...

433

Welcome to the Los Alamos Field Office | National Nuclear Security...  

National Nuclear Security Administration (NNSA)

security, reliability and performance of the U.S. nuclear weapons stockpile without nuclear testing; works to reduce global danger from weapons of mass destruction; provides...

434

DOE woos scientists for nuclear waste work  

Science Journals Connector (OSTI)

DOE woos scientists for nuclear waste work ... The Department of Energy has established a $50 million-per-year program to involve for the first time the basic research community in cleaning up nuclear waste at DOE's widely scattered, heavily contaminated nuclear weapons facilities. ... Cleanup of waste at DOE's nuclear weapons facilities—at Savannah River, S.C.; Oak Ridge, Term.; Hanford, Wash.; and Paducah, Ky.; among others—is expected to take at least 50 years and cost at least $300 billion. ...

WIL LEPKOWSKI

1996-02-19T23:59:59.000Z

435

S. 2466: This Act may be cited as the National Atmospheric Nuclear Testing Compensation Act of 1990. Introduced in the Senate of the United States, One Hundredth First Congress, Second Session, April 19, 1990  

SciTech Connect (OSTI)

This bill would amend Title XXI of the Public Health Service Act to provide for the establishment of an atmospheric nuclear testing compensation program to compensate civilians living down wind of the Nevada Test Site during above-ground testing of nuclear weapons and miners exposed in underground uranium mines supplying uranium for the primary use and benefit of the nuclear weapons program. The bill describes technical assistance and information, administrative procedures for filing a petition, determination of eligibility, and amount of compensation.

Not Available

1990-01-01T23:59:59.000Z

436

Training program requirements for remote equipment operators in nuclear facilities  

SciTech Connect (OSTI)

One of the most neglected areas in the engineering development of remotely operated equipment applications in nuclear environments is the planning of adequate training programs for the equipment operators. Remote equipment accidents cannot be prevented solely by engineered safety features on the equipment. As a result of the experiences in using remote equipment in the recovery effort at Three Mile Island Unit 2 (TMI-2), guidelines for the development of remote equipment operator training programs have been generated. The result is that a successful education and training program can create an environment favorable to the safe and effective implementation of a remote equipment program in a nuclear facility.

Palau, G.L.; Auclair, K.D.

1986-01-01T23:59:59.000Z

437

Radiological Assistance Program | National Nuclear Security Administra...  

National Nuclear Security Administration (NNSA)

(trained personnel and equipment) to evaluate, assess, advise, isotopically identify, search for, and assist in the mitigation of actual or perceived nuclear or radiological...

438

Nuclear Power 2010 Program: Combined Construction and Operating License &  

Broader source: Energy.gov (indexed) [DOE]

Power 2010 Program: Combined Construction and Operating Power 2010 Program: Combined Construction and Operating License & Design Certification Demonstration Projects Lessons Learned Report Nuclear Power 2010 Program: Combined Construction and Operating License & Design Certification Demonstration Projects Lessons Learned Report The Nuclear Power 2010 (NP 2010) Construction and Operating License/Design Certification (COL/DC) Demonstration program together with the financial incentives provided by the Energy Policy Act of 2005 are the two primary reasons why a number of license applications for new nuclear construction are before the NRC today, and why the first new nuclear plants in over 30 years are under construction in the United States. As with all significant endeavors, there are lessons to be learned from the

439

ASSESSING IRAQ'S WEAPONS  

Science Journals Connector (OSTI)

IN THE MONTHS LEADING UP TO THE March 2003 invasion of Iraq, President George W. Bush and his top officials issued a litany of serious allegations about Iraq's weapons of mass destruction (WMD) and the threat they posed to the U.S. But their prime ...

LOIS R. EMBER

2004-10-25T23:59:59.000Z

440

Multiple smart weapons employment mechanism  

SciTech Connect (OSTI)

A digital communications armament network adaptor is described for carrying multiple smart weapons on a single wing pylon station of an aircraft, comprising: an aircraft having a weapons controller configured in compliance with MIL-STD 1553; multiple wing-mounted pylons on said aircraft, each providing a weapons station with communications and ejection and release mechanisms electrically connected to said controller for the airborne launch of smart weapons; a multiple ejector rack affixed to at least one pylon, said rack holding a plurality of smart weapons; and an electronic digital network connected between the controller and said rack-mounted smart weapons, said network located in said rack and including circuitry which receives coded digital communications from said controller and selectively rebroadcasts said communications to one of said smart weapons on said rack designated by said coded communications, thereby controlling all required functions of said designated smart weapon.

McGlynn, M.P.; Meiklejohn, W.D.

1993-07-20T23:59:59.000Z

Note: This page contains sample records for the topic "nuclear weapons program" from the National Library of EnergyBeta (NLEBeta).
While these samples are representative of the content of NLEBeta,
they are not comprehensive nor are they the most current set.
We encourage you to perform a real-time search of NLEBeta
to obtain the most current and comprehensive results.


441

IRAQ'S WEAPONS OF MASS DESTRUCTION  

Science Journals Connector (OSTI)

DESPITE SEVEN YEARS OF INtrusive United Nations inspections and decimation of Iraq's weapons of mass destruction, Iraq was able to sequester sizable stocks of chemical and biological weapons, some missiles to deliver them, and the scientific and technical ...

LOIS EMBER

2002-09-16T23:59:59.000Z

442

IRAQ HAD NO ILLICIT WEAPONS  

Science Journals Connector (OSTI)

TESTIFYING BEFORE THE SENate Armed Services Committee, chief U.S. weapons inspector Charles A. Duelfer outlined key findings of a report on Iraq's prewar weapons holdings that sharply undercut the Bush Administration's primary reason for invading Iraq....

LOIS EMBER

2004-10-11T23:59:59.000Z

443

Antineutrino Detection for Nuclear Monitoring  

E-Print Network [OSTI]

covertly acquire these special nuclear materials from: Assembled weapons Raw uranium ore Enriched uranium antineutrino monitoring infrastructure will help avert the spread of covert nuclear reactors and weaponsAntineutrino Detection for Nuclear Monitoring Draft #12;Graphic courtesy Lawrence Livermore

Mcdonough, William F.

444

Isotope and Nuclear Chemistry Division annual report FY 1986, October 1985-September 1986  

SciTech Connect (OSTI)

This report describes progress in the major research and development programs carried out in FY 1986 by the Isotope and Nuclear Chemistry Division. The report includes articles on radiochemical diagnostics and weapons tests; weapons radiochemical diagnostics research and development; other unclassified weapons research; stable and radioactive isotope production and separation; chemical biology and nuclear medicine; element and isotope transport and fixation; actinide and transition metal chemistry; structural chemistry, spectroscopy, and applications; nuclear structure and reactions; irradiation facilities; advanced concepts and technology; and atmospheric chemistry.

Heiken, J.H. (ed.)

1987-06-01T23:59:59.000Z

445

More arms, less stability: Nuclear, chemical, and missile proliferation in the Asia-Pacific. Final report  

SciTech Connect (OSTI)

In the wake of the Gulf War, the Bush Administration has reaffirmed its determination to seek controls over weapons of mass destruction in the Third World, in particular nuclear, chemical, and biological weapons (CBW); and over ballistic missiles, one possible delivery system for nuclear and CBW systems. Attention over the past eight months has naturally focused on the Middle East, but the Asia-Pacific region contains a number of countries which are alleged to have CW and BW programs. One country, North Korea, is far closer to manufacturing nuclear weapons than Iraq was.

Mack, A.

1991-04-01T23:59:59.000Z

446

NUCLEAR DATA AND MEASUREMENTS REPORTS 101-120 - Nuclear Data Program  

Broader source: All U.S. Department of Energy (DOE) Office Webpages (Extended Search)

01 - 120 01 - 120 Nuclear Data Program Overview Current Projects & Recent Activities Collaborating Organizations Publications Nuclear Data Measurements (NDM) Reports Group 1 (ANL/NDM-1 - ANL/NDM-20) Group 2 (ANL/NDM-21 - ANL/NDM-40) Group 3 (ANL/NDM-41 - ANL/NDM-60) Group 4 (ANL/NDM-61 - ANL/NDM-80) Group 5 (ANL/NDM-81 - ANL/NDM-100) Group 6 (ANL/NDM-101 - ANL/NDM-120) Group 7 (ANL/NDM-121 - ANL/NDM-140) Group 8 (ANL/NDM-141 - ANL/NDM-160) Group 9 (ANL/NDM-161 - ANL/NDM-180) Experimental Nuclear Data Resources Contact ND Program Related Resources Other Major Programs Work with Argonne Contact us For Employees Site Map Help Join us on Facebook Follow us on Twitter NE Division on Flickr Nuclear Data Program NUCLEAR DATA AND MEASUREMENTS REPORTS Bookmark and Share Reports 101-120

447

NUCLEAR DATA AND MEASUREMENTS REPORTS 121-140 - Nuclear Data Program  

Broader source: All U.S. Department of Energy (DOE) Office Webpages (Extended Search)

21 - 140 21 - 140 Nuclear Data Program Overview Current Projects & Recent Activities Collaborating Organizations Publications Nuclear Data Measurements (NDM) Reports Group 1 (ANL/NDM-1 - ANL/NDM-20) Group 2 (ANL/NDM-21 - ANL/NDM-40) Group 3 (ANL/NDM-41 - ANL/NDM-60) Group 4 (ANL/NDM-61 - ANL/NDM-80) Group 5 (ANL/NDM-81 - ANL/NDM-100) Group 6 (ANL/NDM-101 - ANL/NDM-120) Group 7 (ANL/NDM-121 - ANL/NDM-140) Group 8 (ANL/NDM-141 - ANL/NDM-160) Group 9 (ANL/NDM-161 - ANL/NDM-180) Experimental Nuclear Data Resources Contact ND Program Related Resources Other Major Programs Work with Argonne Contact us For Employees Site Map Help Join us on Facebook Follow us on Twitter NE Division on Flickr Nuclear Data Program NUCLEAR DATA AND MEASUREMENTS REPORTS Bookmark and Share Reports 121-140

448

NUCLEAR DATA AND MEASUREMENTS REPORTS 141-160 - Nuclear Data Program  

Broader source: All U.S. Department of Energy (DOE) Office Webpages (Extended Search)

41 - 160 41 - 160 Nuclear Data Program Overview Current Projects & Recent Activities Collaborating Organizations Publications Nuclear Data Measurements (NDM) Reports Group 1 (ANL/NDM-1 - ANL/NDM-20) Group 2 (ANL/NDM-21 - ANL/NDM-40) Group 3 (ANL/NDM-41 - ANL/NDM-60) Group 4 (ANL/NDM-61 - ANL/NDM-80) Group 5 (ANL/NDM-81 - ANL/NDM-100) Group 6 (ANL/NDM-101 - ANL/NDM-120) Group 7 (ANL/NDM-121 - ANL/NDM-140) Group 8 (ANL/NDM-141 - ANL/NDM-160) Group 9 (ANL/NDM-161 - ANL/NDM-180) Experimental Nuclear Data Resources Contact ND Program Related Resources Other Major Programs Work with Argonne Contact us For Employees Site Map Help Join us on Facebook Follow us on Twitter NE Division on Flickr Nuclear Data Program NUCLEAR DATA AND MEASUREMENTS REPORTS Bookmark and Share Reports 141-160

449

NUCLEAR DATA AND MEASUREMENTS REPORTS 21-40 - Nuclear Data Program (Argonne  

Broader source: All U.S. Department of Energy (DOE) Office Webpages (Extended Search)

21 - 40 21 - 40 Nuclear Data Program Overview Current Projects & Recent Activities Collaborating Organizations Publications Nuclear Data Measurements (NDM) Reports Group 1 (ANL/NDM-1 - ANL/NDM-20) Group 2 (ANL/NDM-21 - ANL/NDM-40) Group 3 (ANL/NDM-41 - ANL/NDM-60) Group 4 (ANL/NDM-61 - ANL/NDM-80) Group 5 (ANL/NDM-81 - ANL/NDM-100) Group 6 (ANL/NDM-101 - ANL/NDM-120) Group 7 (ANL/NDM-121 - ANL/NDM-140) Group 8 (ANL/NDM-141 - ANL/NDM-160) Group 9 (ANL/NDM-161 - ANL/NDM-180) Experimental Nuclear Data Resources Contact ND Program Related Resources Other Major Programs Work with Argonne Contact us For Employees Site Map Help Join us on Facebook Follow us on Twitter NE Division on Flickr Nuclear Data Program NUCLEAR DATA AND MEASUREMENTS REPORTS Bookmark and Share Reports 21-40

450

'Civil' nuclear programme – serving the dual objectives of retaining the state's hegemony on citizens' basic energy needs and assuring supply of weapon grade ingredients: a case study on India  

Science Journals Connector (OSTI)

Political leaders of ambitious emerging economies of India and China, where the state has not yet reached the maturity stage, prefer nuclear power to other alternative energy sources, as it serves the dual purpose of retaining the state's hegemony on citizens' basic energy needs and assures supply of weapon grade ingredients. In contrast to North America and most of Western Europe, where growth of nuclear power has levelled out for many years, the 'greatest growth in nuclear generation' in the near future is expected in China, Japan, South Korea and India. It would be naive to believe that the political establishments are not aware of the negative consequences of nuclear power. The question may then arise as to why have the emerging economies of India, China, Brazil, etc., aligned themselves with the nuclear establishment without fully exploiting other alternative energy sources? Taking India as a case, this paper analyses secondary data and findings of various previous studies to explore an answer to this question.

Dipankar Dey

2010-01-01T23:59:59.000Z

451

U.S. Department of Energy Strategic Plan 13 In 2000, the National Nuclear Security Administration  

Broader source: Energy.gov (indexed) [DOE]

3 3 In 2000, the National Nuclear Security Administration (NNSA) was established as a new element within the Department in response to a Congressional mandate to reinvigorate the security posture throughout the nuclear weapons program and to reaffirm the Nation's commitment to maintaining the nuclear deterrence capabilities of the United States. NNSA was chartered to better focus management attention on enhanced security, proactive management practices, and mission focus within the Department's national defense and nonproliferation programs. The Department performs its national security mission involving nuclear weapons and nuclear materials and technology through the NNSA. Over the next six years, the Department will apply

452

Test Procedure Conducted Energy Weapons  

E-Print Network [OSTI]

Test Procedure for Conducted Energy Weapons Version 1.1 2010/07/31 #12;Contents Page 0.0 Disclaimer A TASER M26 13 Appendix B TASER X26 23 #12;1 Test Procedure for Conducted Energy Weapons 0.0 Disclaimer Energy Weapons ("CEWs") in a controlled and repeatable manner across jurisdictions. The consistent

Adler, Andy

453

Nonproliferation Graduate Program | National Nuclear Security...  

National Nuclear Security Administration (NNSA)

about the program and application information and deadlines, please visit the NGP web site off site link or call Program Manager Phyllis B. Byrd at (202) 586-2061 or e-mail...

454

Massachusetts Beryllium Screening Program for Former Workers of Wyman-Gordon, Norton Abrasives, and MIT/Nuclear Metals  

SciTech Connect (OSTI)

The overall objective of this project was to provide medical screening to former workers of Wyman-Gordon Company, Norton Abrasives, and MIT/Nuclear Metals (NMI) in order to prevent and minimize the health impact of diseases caused by site related workplace exposures to beryllium. The program was developed in response to a request by the U.S. Department of Energy (DOE) that had been authorized by Congress in Section 3162 of the 1993 Defense Authorization Act, urging the DOE to â??carry out a program for the identification and ongoing evaluation of current and former DOE employees who are subjected to significant health risks during such employment." This program, funded by the DOE, was an amendment to the medical surveillance program for former DOE workers at the Nevada Test Site (NTS). This programâ??s scope included workers who had worked for organizations that provided beryllium products or materials to the DOE as part of their nuclear weapons program. These organizations have been identified as Beryllium Vendors.

Pepper, L.D.

2008-05-21T23:59:59.000Z

455

Underwater Bomb Trajectory Prediction for Stand-off Assault (Mine/IED) Breaching Weapon  

E-Print Network [OSTI]

Underwater Bomb Trajectory Prediction for Stand-off Assault (Mine/IED) Breaching Weapon Fuse To support the development and evaluation of the Stand-off Assault Breaching Weapon Fuse Improvement (SOABWFI/surf zones to VSW-zone, i.e., the Stand-off Assault Breaching Weapon Fuse Improvement (SOABWFI) program. #12

Chu, Peter C.

456

Nonproliferation and National Security Program - Nuclear Engineering  

Broader source: All U.S. Department of Energy (DOE) Office Webpages (Extended Search)

Major Programs > Nonproliferation and Major Programs > Nonproliferation and National Security Program Nonproliferation & National Security (NPNS) Overview Technical Nonproliferation Policy Support Strategic Trade Control Review of export license applications Multilateral Export Control Arrangements Interdiction Engagement & Training INECP INSEP GIPP Safeguards Concepts and Approaches Human Capital Development Additional Protocol Technical Assistance National Security Systems & Assessments National Security Information Systems Vulnerability Assessment Team (VAT) Radiation Detection & Response (RDR) Contact NPNS Other Major Programs Work with Argonne Contact us For Employees Site Map Help Join us on Facebook Follow us on Twitter NE Division on Flickr Nonproliferation and National Security Program (NPNS)

457

Radiological Assistance Program (RAP)- Nuclear Engineering Division  

Broader source: All U.S. Department of Energy (DOE) Office Webpages (Extended Search)

Major Programs > Radiological Major Programs > Radiological Assistance Program Radiological Assistance Program Overview Other Major Programs Work with Argonne Contact us For Employees Site Map Help Join us on Facebook Follow us on Twitter NE Division on Flickr Radiological Assistance Program Bookmark and Share Survey equipment is used to detect and measure radiation Survey equipment is used to detect and measure radiation. Click on image to view larger image. The Radiological Assistance Program (RAP) team at Argonne can provide assistance in the event of a radiological accident or incident. Support ranges from giving technical information or advice over the telephone, to sending highly trained team members and state-of-the-art equipment to the accident site to help identify and minimize any radiological hazards. The

458

Energy/National Nuclear Security Administration (NNSA) Career Pathways Program  

Broader source: Energy.gov [DOE]

The Energy/National Nuclear Security Administration (NNSA) Career Pathways Program is an innovative employment program targeting students and recent college graduates. If you are seeking an entry-level federal job or a federal internship, then check out our various opportunities!

459

Employee Concerns Program | National Nuclear Security Administration  

National Nuclear Security Administration (NNSA)

Los Alamos Field Office > Employee Los Alamos Field Office > Employee Concerns Program Employee Concerns Program Employee Concerns Program The Employee Concerns Program provides an informal avenue for federal, contractor, or sub-contractor employees to report concerns, without fear of retaliation. Concerns can be reported anonymously or otherwise, and can cover anything from fraud waste and abuse, to safety issues, to unresolved interpersonal conflicts in the workplace. The goal of the Employee Concerns Program is to address and resolve a concern at the lowest possible level, before it escalates into a formal complaint. The LASO Point of Contact for the Employee Concerns Program is Cynthia Casalina. If you have a concern, you may contact Cynthia at 665-6369, or the ECP 24-hour Hotline number at 1-800-688-5713. You may also contact Eva

460

exercise program | National Nuclear Security Administration  

National Nuclear Security Administration (NNSA)

program DOENNSA Participates in Large-Scale CTBT On-Site Inspection Exercise in Jordan Experts from U.S. Department of Energy National Laboratories, including Sandia...

Note: This page contains sample records for the topic "nuclear weapons program" from the National Library of EnergyBeta (NLEBeta).
While these samples are representative of the content of NLEBeta,
they are not comprehensive nor are they the most current set.
We encourage you to perform a real-time search of NLEBeta
to obtain the most current and comprehensive results.


461

Stewardship Science Graduate Fellowship Program | National Nuclear...  

National Nuclear Security Administration (NNSA)

to students pursuing doctoral degrees in fields of study that use high performance computing to solve complex science and engineering problems. The program fosters a...

462

Program Information | National Nuclear Security Administration  

National Nuclear Security Administration (NNSA)

Contract International Association of Machinists and Aerospace Workers Agreement HS&E Management System Description and Worker Safety and Health Program 2015 Small Business...

463

Environmental Program Services Contract | National Nuclear Security...  

National Nuclear Security Administration (NNSA)

Learn More Environmental Program Services Contract Related Topics apm contracts contracting Related News Security Improvements Project Completed Ahead of Schedule, 20 Million...

464

Program Objectives | National Nuclear Security Administration  

National Nuclear Security Administration (NNSA)

community by funding research projects at universities in the areas of fundamental science and technology of relevance to the Stockpile Stewardship Program, with a focus on...

465

Criteria for Evaluation of Nuclear Facility Training Programs  

Broader source: Energy.gov (indexed) [DOE]

STD-1070-94 STD-1070-94 Reaffirmed June 2013 DOE STANDARD CRITERIA FOR EVALUATION OF NUCLEAR FACILITY TRAINING PROGRAMS (Formerly Titled: Guidelines for Evaluation of Nuclear Facility Training Programs) U.S. Department of Energy FSC Washington, D.C. 20585 DISTRIBUTION STATEMENT A. Approved for public release; distribution is unlimited. TS DOE HDBK-1070-94 Errata June 2013 Table of Changes Page/Section Change Cover Criteria for Evaluation of Nuclear Facility Training Programs Page ii This document is available on the Department of Energy Technical Standards Program Web page at http://www.hss.doe.gov/nuclearsafety/ns/techstds/ Page iii Table of Contents Page iv This DOE Technical Standard is invoked as a requirement by DOE Order 426.2, Personnel Selection, Training, Qualifications and

466

Nuclear Safety Reserch and Development Program Operating Plan  

Broader source: Energy.gov (indexed) [DOE]

Safety Research and Development Safety Research and Development Program Operating Plan Office of Nuclear Safety Office of Health, Safety and Security U.S. Department of Energy June 2012 INTENTIONALLY BLANK NSR&D Program Operating Plan June 2012 Table of Contents 1.0 INTRODUCTION................................................................................................................. 1 2.0 BACKGROUND ................................................................................................................... 1 3.0 OBJECTIVES ....................................................................................................................... 2 4.0 NSR&D PROGRAM PROCESSES .................................................................................... 3

467

Audit of the Department of Energy's Transportation Accident Resistant Container Program, IG-0380  

Broader source: Energy.gov (indexed) [DOE]

1, 1995 1, 1995 IG-1 INFORMATION: Report on "Audit of the Department of Energy's Transportation Accident Resistant Container Program" The Secretary BACKGROUND: The U.S. Department of Energy (Department) has ultimate responsibility for the safety of all nuclear explosives and weapons operations conducted by the Department and its contractors. The Department also has joint responsibility for the safety of nuclear weapons in the custody of the Armed Services. Since the 1970s, the Department has designed, developed, and produced accident resistant containers to promote safety when transporting certain types of nuclear weapons by air. DISCUSSION: After successfully developing and modifying accident resistant containers for

468

Audit Report National Nuclear Security Administration Nuclear...  

Broader source: Energy.gov (indexed) [DOE]

National Nuclear Security Administration Nuclear Weapons Systems Configuration Management DOEIG-0902 March 2014 U.S. Department of Energy Office of Inspector General Office of...

469

Student Career Experience Program | National Nuclear Security  

National Nuclear Security Administration (NNSA)

Our Jobs > Opportunities for Students > Student Our Jobs > Opportunities for Students > Student Career Experience Program Student Career Experience Program The Student Career Experience Program (SCEP) is a great way to start your NNSA career while pursuing your studies in college or graduate school. This program gives you the opportunity to combine your academic studies with on-the-job training and experience directly related to your academic program. You will have the opportunity to work on exciting NNSA projects, earn money while serving your nation and take advantage of an excellent benefits package, all while maintaining your student status and completing your education. SCEP allows our managers to evaluate your performance in real work situations and discover first-hand your abilities as a potential

470

Student Career Experience Program | National Nuclear Security  

National Nuclear Security Administration (NNSA)

Apply for Our Jobs > How to Apply > Student Apply for Our Jobs > How to Apply > Student Jobs > Student Career Experience Program Student Career Experience Program We have a limited number of Student Career Experience Program (SCEP) positions that are located in the greater Washington, D.C. area and in Albuquerque, N.M. Other locations may include Kansas City, Mo.; Livermore, Calif.; Los Alamos, N.M.; Las Vegas, Nev.; Amarillo, Texas; Aiken, S.C.; and Oak Ridge, Tenn. We work with local universities to recruit students for this program. Please contact your university's career center to see if NNSA is a partner with your school. SCEP positions must be directly related to your academic program. For SCEP eligibility you must be: a United States citizen; enrolled as a diploma or degree-seeking undergraduate or graduate

471

Nonproliferation | National Nuclear Security Administration  

Broader source: All U.S. Department of Energy (DOE) Office Webpages (Extended Search)

| National Nuclear Security Administration | National Nuclear Security Administration Our Mission Managing the Stockpile Preventing Proliferation Powering the Nuclear Navy Emergency Response Recapitalizing Our Infrastructure Continuing Management Reform Countering Nuclear Terrorism About Us Our Programs Our History Who We Are Our Leadership Our Locations Budget Our Operations Media Room Congressional Testimony Fact Sheets Newsletters Press Releases Speeches Events Social Media Video Gallery Photo Gallery NNSA Archive Federal Employment Apply for Our Jobs Our Jobs Working at NNSA Blog Nonproliferation Home > About Us > Our Programs > Nonproliferation Nonproliferation One of the gravest threats the United States and the international community face is the possibility that terrorists or rogue nations will acquire nuclear weapons or other weapons of mass destruction (WMD). NNSA,

472

Nuclear Ukraine  

Science Journals Connector (OSTI)

... SIR - Your article (Nature 365, 599; 1993) on the US-Ukraine stalemate over nuclear weapons prompts the following remarks. The United States made a mistake ... nuclear weapons prompts the following remarks. The United States made a mistake in not recognizing Ukraine as a legitimate successor state to the Soviet nuclear arsenal and is still insisting that ...

Arno Arrak

1994-01-13T23:59:59.000Z

473

Defense and nuclear technologies  

SciTech Connect (OSTI)

Fulfilling our national security and stockpile stewardship responsibilities requires tremendous scientific and technical breadth: from esoteric theoretical physics and computational modeling to materials science and precision engineering. Because there exists no broad industrial or university base from which to draw expertise in nuclear weapon science and technology, we rely heavily on formal peer reviews and informal exchanges with our sister laboratory at Los Alamos. LLNL has an important, long-term role in the nation`s nuclear weapons program. We are responsible for four of the ten weapon systems in the enduring US stockpile (three of nine after 2002), including the only systems that incorporate all modern safety features. For years to come, we will be responsible for these weapons and for the problems that will inevitably arise. Our nuclear expertise will also play a crucial role as the US attempts to deal effectively with the threat of nuclear proliferation. This past year brought the culmination of our response to profound changes in the nation`s defense needs as we restructured and refocused our activities to address the Administration`s goal of reducing global nuclear danger. We made major contributions to important national security issues in spite of severe fiscal constraints.

NONE

1995-01-01T23:59:59.000Z

474

Brazil's Nuclear Program: Carter's Nonproliferation Policy Backfires  

Science Journals Connector (OSTI)

...capable of producing cancer in the future, or...nuclear reactors and a uranium enrichment facil-ity...radiation including skin cancer, would be reduced...that ozone could be depleted by 3 to 23 percent...some long-term cancer risk, people are...to discover enough uranium in excess of its...

ALLEN L. HAMMOND

1977-02-18T23:59:59.000Z

475

The Nuclear Revolution, Relative Gains, and International Nuclear Assistance  

E-Print Network [OSTI]

Organizations, accidents, and nuclear weapons. Princeton,the likelihood of a nuclear accident (Sagan 1993, 1995). “potential for a nuclear accident. Yet it seems implausible

Kroenig, Matthew

2006-01-01T23:59:59.000Z

476

COLLOQUIUM: Nuclear Famine: The Threat to Humanity from Nuclear...  

Broader source: All U.S. Department of Energy (DOE) Office Webpages (Extended Search)

MBG Auditorium COLLOQUIUM: Nuclear Famine: The Threat to Humanity from Nuclear Weapons Dr. Alan Robock Rutgers University A nuclear war between India and Pakistan, with...

477

The Nuclear Revolution, Relative Gains, and International Nuclear Assistance  

E-Print Network [OSTI]

nature of the nuclear recipient’s security environment. ThisKeywords: Nuclear weapons proliferation; security; securitynature of the nuclear recipient’s security environment. This

Kroenig, Matthew

2006-01-01T23:59:59.000Z

478

Application of a network perspective to DoD weapon system acquisition: an exploratory study .  

E-Print Network [OSTI]

??One of the foundations of military command and control is that authority must match responsibility. Yet in weapon system acquisition, a program manager is responsible… (more)

Mantz, Ryan D.

2006-01-01T23:59:59.000Z

479

Employee Concerns Program | National Nuclear Security Administration  

National Nuclear Security Administration (NNSA)

Livermore Field Office > Employee Livermore Field Office > Employee Concerns Program Employee Concerns Program STATEMENT OF POLICY The Livermore Field Office (LFO) Employee Concerns Program (ECP) is established as part of the Department of Energy's whistleblower reform initiatives. These initiatives aim to streamline and improve the effectiveness of existing processes for resolving employee concerns, and make the Department's "zero tolerance for reprisal" a reality. It is the policy of the Department that: Employees in the Department of Energy, its contractors and subcontractors must be free to raise concerns, without fear of reprisal, about policies and practices that adversely affect the Department's ability to accomplish its mission in a safe and efficient manner; Management at all levels appreciate the value of employee concerns,

480

External > Programs > National Security  

Broader source: All U.S. Department of Energy (DOE) Office Webpages (Extended Search)

Security Security The National Security mission in Oak Ridge is carried out at the National Nuclear Security Administration's (NNSA) Y-12 National Security Complex, formerly known as the Oak Ridge Y-12 Plant. Programs at Y-12 include manufacturing and reworking nuclear weapon components, dismantling nuclear weapon components returned from the national arsenal, serving as the nation's safe, secure storehouse of special nuclear materials, reducing the global threat from terrorism and weapons of mass destruction, and providing the U.S. Navy with safe, militarily effective nuclear propulsion systems. Y-12 is operated by B&W Y-12 LLC. ORO provides a variety of services to the NNSA's Y-12 Site Office as part of a service agreement between the two organizations.

Note: This page contains sample records for the topic "nuclear weapons program" from the National Library of EnergyBeta (NLEBeta).
While these samples are representative of the content of NLEBeta,
they are not comprehensive nor are they the most current set.
We encourage you to perform a real-time search of NLEBeta
to obtain the most current and comprehensive results.


481

Support of the Iraq nuclear facility dismantlement and disposal program  

SciTech Connect (OSTI)

Available in abstract form only. Full text of publication follows: Iraq's former nuclear facilities contain large quantities of radioactive materials and radioactive waste. The Iraq Nuclear Facility Dismantlement and Disposal Program (the Iraq NDs Program) is a new program to decontaminate and permanently dispose of radioactive wastes in Iraq. The NDs Program is led by the Government of Iraq, under International Atomic Energy Agency (IAEA) auspices, with guidance and assistance from a number of countries. The U.S. participants include Texas Tech University and Sandia National Laboratories. A number of activities are ongoing under the broad umbrella of the Iraq NDs Program: drafting a new nuclear law that will provide the legal basis for the cleanup and disposal activities; assembly and analysis of existing data; characterization of soil contamination; bringing Iraqi scientists to the world's largest symposium on radioactive waste management; touring U.S. government and private sector operating radwaste disposal facilities in the U.S., and hosting a planning workshop on the characterization and cleanup of the Al-Tuwaitha Nuclear Facility. (authors)

Coates, Roger [International Atomic Energy Agency - IAEA, Wagramer Strasse 5, P.O. Box 100 - 1400 Vienna (Austria); Cochran, John; Danneels, Jeff [Sandia National Laboratories (United States); Chesser, Ronald; Phillips, Carlton; Rogers, Brenda [Center for Environmental Radiation Studies, Texas Tech University, Lubbock, TX 79409 (United States)

2007-07-01T23:59:59.000Z

482

Imaging the ionization track of alpha recoils for the directional detection of weapons grade plutonium  

E-Print Network [OSTI]

Since the dawn of the nuclear weapons era, political, military, and scientific leaders around the world have been working to contain the proliferation of Special Nuclear Material and explosively fissile material. This paper ...

Koch, William Lawrence

2013-01-01T23:59:59.000Z

483

International Nuclear Security  

SciTech Connect (OSTI)

This presentation discusses: (1) Definitions of international nuclear security; (2) What degree of security do we have now; (3) Limitations of a nuclear security strategy focused on national lock-downs of fissile materials and weapons; (4) What do current trends say about the future; and (5) How can