Sample records for angelina rapides trinity

  1. Trinity to Trinity

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

    AFDC Printable Version Share this resource Send a link to EERE: Alternative Fuels Data Center Home Page to someone by E-mail Share EERE: Alternative Fuels Data Center Home Page on Facebook Tweet about EERE: Alternative Fuels Data Center Home Page on Twitter Bookmark EERE: Alternative1 First Use of Energy for All Purposes (Fuel and Nonfuel), 2002; Level: National5Sales for4,645 3,625 1,006 492 742EnergyOnItemResearch >Internship Program The NIF andPointsThrustTrinity

  2. Trinity College Annual Fund

    E-Print Network [OSTI]

    Lasenby, Joan

    Trinity College Annual Fund 2014 #12;How did Trinity influence your future? By introducing Trinity the Trinity in Cambe programme. Working together, we expect Trin and IntoUniversity to make highe education, the likelihood of getting university and attitudes to learning" Trinity has a long history of nurturing

  3. Alternative Prospectus Trinity College

    E-Print Network [OSTI]

    Oxford, University of

    Alternative Prospectus 2013 Trinity College Oxford #12;Alternative ProspectusTrinity College, Oxford Welcome 32 Welcome Hi and welcome to Trinity College's Alternative Prospectus, You've come to the right place to find out what student life is really like at Trinity! Your college is an integral part

  4. Important Trinity / NERSC-8 Documents

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

    RFP Important Trinity NERSC-8 Documents Important Trinity NERSC-8 Documents Trinity NERSC-8 Use Case Scenarios for Burst Buffer and Power Management PDF Facility Limits...

  5. Trinity (for Expanded Orchestra)

    E-Print Network [OSTI]

    Winokur, Robert Michael

    2011-01-01T23:59:59.000Z

    O— Vc. div. Bs. p.44/260 Trinity Mvmt. 1 : The Path of PowerBs. T Itr8 /.v. m p. 203/260 Trinity Mvmt. 5: "Man as God" ,B t r 8 — p.2/260 * * el Trinity: Invocation q fJ-6 Picc. «J

  6. TRINITY HALL PUBLICATION SCHEME

    E-Print Network [OSTI]

    Lasenby, Joan

    TRINITY HALL PUBLICATION SCHEME PART 1 INTRODUCTION 1. Legal requirement 1.1 Adopting a publication and whether or not charges will be made. 3. The `model' publication scheme for higher education 3.1 Trinity and is committed to publishing the information it describes. 4. Who we are 4.1 Trinity Hall is a college within

  7. TRINITY HALL PUBLICATION SCHEME

    E-Print Network [OSTI]

    Lasenby, Joan

    TRINITY HALL PUBLICATION SCHEME PART 2 Main categories The main groups of classes of information Trinity Hall was founded in 1350 by William Bateman, Bishop of Norwich, as a common law corporation to the University and College Statutes. The Education (Listed Bodies) Order 1997 recognises Trinity Hall

  8. TRINITY HALL Trinity Hall, Dartry Road, Dublin 6,

    E-Print Network [OSTI]

    O'Mahony, Donal E.

    TRINITY HALL Trinity Hall, Dartry Road, Dublin 6, Ireland. Tel +353-1-4971772 E-Mail: trinity.hall@tcd.ie & warden@tcd.ie www.wardentrinityhall.tcdlife.ie/ RESIDENTS HANDBOOK 2010/2011 TRINITY HALL Students are advised to read this information in conjunction with the Conditions of Occupancy Trinity Hall 2010

  9. Contracts in Trinity Andres Loh

    E-Print Network [OSTI]

    Löh, Andres

    Contracts in Trinity Andres L¨oh joint work with Ralf Hinze and Andreas Schmitz Universit¨at Bonn / datatype-generic programming, type systems Andres L¨oh Contracts in Trinity 2 #12;Overview 1 Trinity in Trinity 3 #12;History of Trinity While teaching "Concepts of Programming Languages" to third- and fourth

  10. MSc in Bioengineering Trinity Centre for Bioengineering

    E-Print Network [OSTI]

    O'Mahony, Donal E.

    MSc in Bioengineering Trinity Centre for Bioengineering About Trinity Centre for Bioengineering Trinity Centre for Bioengineering is a key research centre in Trinity College combining fundamental. The Trinity Centre for Bioengineering provides a structure to bring bioengineers, basic scientists

  11. Trinity College Day Information Booklet

    E-Print Network [OSTI]

    O'Mahony, Donal E.

    1 Trinity College Day Nursery Parents Information Booklet 2010 Trinity Day Nursery House 49/50 Trinity College Dublin 2 Ireland Ph: 01 8962277 #12;2 Introduction The Day Nursery was set up in 1969. It provides care for children of students and staff of Trinity College. The Nursery has a maximum of 52 full

  12. TRINITY COLLEGE CAMBRIDGE RICHARD MARLOW

    E-Print Network [OSTI]

    Lasenby, Joan

    TRINITY COLLEGE CAMBRIDGE RICHARD MARLOW Fellow of Trinity College 1968­2013 Director of Music, Trinity College 1968­2006 Born 26 July 1939 Died 16 June 2013 2.30 pm Saturday 23 November 2013 #12 read by Professor Adrian Poole Fellow in English, Trinity College Cambridge I leant upon a coppice gate

  13. The Impossible Trinity (aka The Policy Trilemma)

    E-Print Network [OSTI]

    Aizenman, Joshua

    2010-01-01T23:59:59.000Z

    May 2010 The Impossible Trinity (aka The Policy Trilemma)reserves and the impossible trinity The Trilemma and theintegration, Impossible Trinity, International Reserves,

  14. STRATEGIC PLAN 2010-16 TRINITY COLLEGE

    E-Print Network [OSTI]

    O'Mahony, Donal E.

    STRATEGIC PLAN 2010-16 TRINITY COLLEGE INSTITUTE OF NEUROSCIENCE FROM MOLECULES TO MIND #12;"TO? Trinity College Institute of Neuroscience Mission Transformative Neuroscience Context Trinity College Institute of Neuroscience Today Trinity College Institute of Neuroscience Tomorrow Research Focus 1

  15. final.trinity.indd

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

    is directly tied to the evolution of nuclear weapons. Simple computers were key to the design and development of the rst nuclear bombs, like the one detonated during the Trinity...

  16. Trinity / NERSC-8 SSP

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

    acquisitions is also available. Reference SSP The reference SSP calculation for the Trinity NERSC-8 benchmark suite on the NERSC CRAY XE6 "Hopper" system appears below. In the...

  17. UNIVERSITY OF DUBLIN TRINITY COLLEGE

    E-Print Network [OSTI]

    O'Mahony, Donal E.

    UNIVERSITY OF DUBLIN TRINITY COLLEGE APPLICATION FEE FORM An application fee of 53.00 is payable for this amount and made payable to: Account Name TRINITY COLLEGE DUBLIN - No 1 ACCOUNT Account Number 10027952 Bank Name Bank of Ireland, Trinity Branch, College Green, Dublin 2 IBAN IE 92 BOFI 9000 17100 27952 BIC

  18. Restoring the Trinity

    E-Print Network [OSTI]

    Wythe, Kathy

    2007-01-01T23:59:59.000Z

    to the restoration of the Trinity River.? Tarrant Regional Water District (TWRD) and the A&M System?s Spatial Sciences Laboratory (SSL) and the Agricultural Research and Extension Center at Dallas are combining efforts to develop a comprehensive urban water... Research Institute of Texas and others. The Web site for the project is http://trinitybasin. tamu.edu Another project funded by the TWDB, SSL will study how urbanization and other land-use changes in the Upper Trinity watershed have affected sediment...

  19. TRINITY HALL ACCOUNTS FOR THE YEAR ENDED

    E-Print Network [OSTI]

    Talbot, James P.

    TRINITY HALL CAMBRIDGE ACCOUNTS FOR THE YEAR ENDED 30 June 2011 #12;TRINITY HALL Index Balance Sheet 19 Cash Flow Statement 20 - 32 Notes to the Accounts #12;TRINITY HALL Governing Body;Status Trinity Hall, or The Master, Fellows and Scholars of the College or Hall of the Holy Trinity

  20. TRINITY HALL TRINITY LANE CAMBRIDGE CB2 1TJ conference@trinhall.cam.ac.uk 01223 764444

    E-Print Network [OSTI]

    Lasenby, Joan

    TRINITY HALL TRINITY LANE CAMBRIDGE CB2 1TJ conference@trinhall.cam.ac.uk 01223 764444 TRINITY HALL, minerally too with subtle nutty oak on a long finish. 1 #12;TRINITY HALL TRINITY LANE CAMBRIDGE CB2 1TJ

  1. CONFERENCES | EVENTS | FINE DINING TRINITY HALL

    E-Print Network [OSTI]

    Lasenby, Joan

    CONFERENCES | EVENTS | FINE DINING #12;32 WELCOME WELCOME TO TRINITY HALL CONFERENCE AND EVENTS "If and point the way to the gardens of Trinity Hall. "HENRY JAMES 1878 Trinity Hall is the fifth oldest college from the hustle and bustle of the City, Trinity Hall has a quiet, peaceful air making it perfect

  2. Trinity College Student Handbook 2013-2014

    E-Print Network [OSTI]

    Miyazaki, Takunari

    Trinity College Student Handbook 2013-2014 October 8, 2013 Trinity College 300 Summit Street to the 2013-2014 academic year and, to the Class of 2017, a special wel- come to Trinity. You will find a treasure trove of people and resources at Trinity devoted to your success, and I encourage you to reach out

  3. 2020 Vision The Trinity Access Programmes

    E-Print Network [OSTI]

    O'Mahony, Donal E.

    2020 Vision The Trinity Access Programmes Strategic Plan to 2020 #12;2020 VISION - THE TRINITY ACCESS PROGRAMMES STRATEGIC PLAN TO 20202020 VISION - THE TRINITY ACCESS PROGRAMMES STRATEGIC PLAN TO 2020 Trinity Access Programmes "Our vision for 2014 is of a university providing further leadership

  4. Trinity College Dublin Annual Report 2004 2005

    E-Print Network [OSTI]

    O'Mahony, Donal E.

    Trinity College Dublin Annual Report 2004 ­ 2005 The University of Dublin, Trinity College #12;Part 1: College Activities This, the first formal Annual Report published by Trinity College Dublin whose support is greatly valued. The College is also indebted to the Board and Executive of the Trinity

  5. Elm Fork of the Trinity River Floodplain Management Study

    E-Print Network [OSTI]

    Tickle, Greg; Clary, Melinda

    2001-01-01T23:59:59.000Z

    ELM FORK OF THE TRINITY RIVER FLOODPLAIN MANAGEMENT STUDYof the Elm Fork of the Trinity River, Dallas County, Dallas,

  6. Non-asymptotic Adaptive Prediction in Functional Linear Models Elodie Brunel, Andre Mas, and Angelina Roche

    E-Print Network [OSTI]

    Paris-Sud XI, Université de

    Non-asymptotic Adaptive Prediction in Functional Linear Models ´Elodie Brunel, Andr´e Mas, and Angelina Roche I3M, Universit´e Montpellier II Abstract Functional linear regression has recently attracted. Functional linear regression, functional principal components analysis, mean squared prediction error

  7. TRINITY HALL TRINITY LANE CAMBRIDGE CB2 1TJ conference@trinhall.cam.ac.uk 01223 764444

    E-Print Network [OSTI]

    Lasenby, Joan

    TRINITY HALL TRINITY LANE CAMBRIDGE CB2 1TJ conference@trinhall.cam.ac.uk 01223 764444 DINING MENUS with Coriander Cream Smoked Haddock Chowder with Poached Quail Egg #12;TRINITY HALL TRINITY LANE CAMBRIDGE CB2 1 & Caramelized Shallot Wellington, Basil Dressing #12;TRINITY HALL TRINITY LANE CAMBRIDGE CB2 1TJ conference

  8. GEOSPATIAL ANALYSIS OF REFLECTANCE AND NDVI VALUES IN THE ANGELINA FOREST Peter P. Siska and I. K. Hung

    E-Print Network [OSTI]

    Hung, I-Kuai

    GEOSPATIAL ANALYSIS OF REFLECTANCE AND NDVI VALUES IN THE ANGELINA FOREST ECOSYSTEM* Peter P. Siska International Conference on Geospatial Information in Agriculture and Forestry, Denver, Colorado, 5-7 November

  9. UNIVERSITY OF DUBLIN XMA12121 TRINITY COLLEGE

    E-Print Network [OSTI]

    Karageorgis, Paschalis

    UNIVERSITY OF DUBLIN XMA12121 TRINITY COLLEGE Faculty of Engineering, Mathematics and Science school of mathematics JF Maths/TP SF TSM Trinity Term 2012 MA1212 -- Linear Algebra II Thursday, May 3

  10. UNIVERSITY OF DUBLIN XMA11111 TRINITY COLLEGE

    E-Print Network [OSTI]

    Karageorgis, Paschalis

    UNIVERSITY OF DUBLIN XMA11111 TRINITY COLLEGE Faculty of Engineering, Mathematics and Science school of mathematics JF Mathematics JF Theoretical Physics JF Two Subject Mod Trinity Term 2011 Course

  11. UNIVERSITY OF DUBLIN XMA12121 TRINITY COLLEGE

    E-Print Network [OSTI]

    Karageorgis, Paschalis

    UNIVERSITY OF DUBLIN XMA12121 TRINITY COLLEGE Faculty of Engineering, Mathematics and Science school of mathematics JF Mathematics JF Theoretical Physics SF Two Subject Mod Trinity Term 2011 Course

  12. UNIVERSITY OF DUBLIN XMA1211 TRINITY COLLEGE

    E-Print Network [OSTI]

    Karageorgis, Paschalis

    UNIVERSITY OF DUBLIN XMA1211 TRINITY COLLEGE Faculty of Science school of mathematics JF Mathematics JF Theoretical Physics JF TSM, SF TSM Trinity Term 2007 Course 121 Tuesday, May 22 RDS 9

  13. UNIVERSITY OF DUBLIN XMA11111 TRINITY COLLEGE

    E-Print Network [OSTI]

    Karageorgis, Paschalis

    UNIVERSITY OF DUBLIN XMA11111 TRINITY COLLEGE Faculty of Engineering, Mathematics and Science school of mathematics JF Maths JF TP JF TSM Trinity Term 2012 Course MA1111 -- Linear Algebra I Dr

  14. UNIVERSITY OF DUBLIN XMA2161 TRINITY COLLEGE

    E-Print Network [OSTI]

    Karageorgis, Paschalis

    UNIVERSITY OF DUBLIN XMA2161 TRINITY COLLEGE Faculty of Engineering, Mathematics and Science school of mathematics SF Maths, SF TP JS TSM Trinity Term 2009 Course 216 Tuesday, May 19 Luce Hall 9:30 ­ 11:30 Dr. P

  15. UNIVERSITY OF DUBLIN XMA1211 TRINITY COLLEGE

    E-Print Network [OSTI]

    Karageorgis, Paschalis

    UNIVERSITY OF DUBLIN XMA1211 TRINITY COLLEGE Faculty of Engineering, Mathematics and Science school of mathematics JF Mathematics JF Theoretical Physics JF TSM, SF TSM Trinity Term 2008 Course 121 Tuesday, May 27

  16. UNIVERSITY OF DUBLIN XMA2121 TRINITY COLLEGE

    E-Print Network [OSTI]

    Karageorgis, Paschalis

    UNIVERSITY OF DUBLIN XMA2121 TRINITY COLLEGE Faculty of Science school of mathematics SF Mathematics JS Two Subject Moderatorship SS Two Subject Moderatorship Trinity Term 2006 Course 212 Saturday

  17. UNIVERSITY OF DUBLIN XMA11221 TRINITY COLLEGE

    E-Print Network [OSTI]

    Karageorgis, Paschalis

    UNIVERSITY OF DUBLIN XMA11221 TRINITY COLLEGE Faculty of Engineering, Mathematics and Science school of mathematics JF Maths, TP, TSM Trinity Term 2010 MA1121 Concepts of Analysis & MA1122 Analysis

  18. UNIVERSITY OF DUBLIN XMA12121 TRINITY COLLEGE

    E-Print Network [OSTI]

    Karageorgis, Paschalis

    UNIVERSITY OF DUBLIN XMA12121 TRINITY COLLEGE Faculty of Engineering, Mathematics and Science school of mathematics JF Mathematics JF Theoretical Physics Trinity Term 2010 MA1111/MA1212 ­ LINEAR

  19. UNIVERSITY OF DUBLIN XMA12121 TRINITY COLLEGE

    E-Print Network [OSTI]

    Karageorgis, Paschalis

    UNIVERSITY OF DUBLIN XMA12121 TRINITY COLLEGE Faculty of Engineering, Mathematics and Science school of mathematics JF Mathematics JF Theoretical Physics Trinity Term 2010 MA1111/MA1212 - LINEAR

  20. Trinity College Library Dublin University of Dublin

    E-Print Network [OSTI]

    O'Mahony, Donal E.

    Trinity College Library Dublin University of Dublin Know all men by these presents that I, am bound unto the Provost, Fellows and Scholars of the College of the Holy and Undivided Trinity of Queen

  1. UNIVERSITY OF DUBLIN XMA11221 TRINITY COLLEGE

    E-Print Network [OSTI]

    Karageorgis, Paschalis

    UNIVERSITY OF DUBLIN XMA11221 TRINITY COLLEGE Faculty of Engineering, Mathematics and Science school of mathematics JF Maths, TP, TSM Trinity Term 2011 MA1121 Concepts of Analysis -- MA1122 Analysis

  2. UNIVERSITY OF DUBLIN XMA1211 TRINITY COLLEGE

    E-Print Network [OSTI]

    Karageorgis, Paschalis

    UNIVERSITY OF DUBLIN XMA1211 TRINITY COLLEGE Faculty of Engineering, Mathematics and Science school of mathematics JF Maths, JF TP JF TSM Trinity Term 2009 Course 121 Tuesday, May 26 Upper Luce Hall 9:30 ­ 12

  3. UNIVERSITY OF DUBLIN XMA11111 TRINITY COLLEGE

    E-Print Network [OSTI]

    Karageorgis, Paschalis

    UNIVERSITY OF DUBLIN XMA11111 TRINITY COLLEGE Faculty of Engineering, Mathematics and Science school of mathematics JF Maths/TP/TSM Trinity Term 2012 MA1111 -- Linear Algebra I Tuesday, May 8 LUCE

  4. Brasenose College Library Bulletin Trinity 2014

    E-Print Network [OSTI]

    Oxford, University of

    Brasenose College Library Bulletin Trinity 2014 Welcome back to the busiest term of the academic know how busy the library is during Trinity term. We are acutely aware that this is very stressful term to be zealous about clearing desks each morning and this will be the case throughout Trinity from now on

  5. Brasenose College Library Bulletin Trinity 2012

    E-Print Network [OSTI]

    Oxford, University of

    Brasenose College Library Bulletin Trinity 2012 Welcome back to the busiest term of the academic in the Library Many of you already know how busy the library is during Trinity term. I am acutely aware to be zealous about clearing desks each morning and this will be the case throughout Trinity. Please remember

  6. THalumni.net Trinity Hall's online community

    E-Print Network [OSTI]

    Lasenby, Joan

    THalumni.net Trinity Hall's online community Joining THalumni.net allows members to: · Check or location and send a private message to other Trinity Hall members. · Join the careers directory if you or loca- tion and send Trinity Hall members a private message. · Book and pay for events online and see

  7. Brasenose College Library Bulletin Trinity 2013

    E-Print Network [OSTI]

    Oxford, University of

    Brasenose College Library Bulletin Trinity 2013 Welcome back to the busiest term of the academic of you already know how busy the library is during Trinity term. We are acutely aware that this is very throughout Trinity from now on; it is a necessary evil if we are to help as many people as possible benefit

  8. Trinity Technology Transfer News December 2012

    E-Print Network [OSTI]

    O'Mahony, Donal E.

    Trinity Technology Transfer News December 2012 SRS was set up by Dr Paul Sutton and Prof Linda contributes and benefits Campus Company Profile Mobro.co/trinity TTO The three gentlemen of the TTO U.S./Ireland Legal Symposium in Philadelphia on October 10-12, 2012. Dr. Emily Vereker (Trinity TTO

  9. TRINITY COLLEGE THE UNIVERSITY OF DUBLIN

    E-Print Network [OSTI]

    O'Mahony, Donal E.

    TRINITY COLLEGE THE UNIVERSITY OF DUBLIN POSTGRADUATE COURSES 2006 POSTGRADUATECOURSES2006 #12;It is almost twenty years since I became a postgraduate student in Trinity College Dublin. My motivation hope that you, as a prospective postgraduate student, will feel the same. Trinity College Dublin

  10. Trinity College Dublin Good Research Practice

    E-Print Network [OSTI]

    O'Mahony, Donal E.

    1 Trinity College Dublin Policy on Good Research Practice Update 1.0 ­ May 2009 Recommended conducted at Trinity College, Dublin for over four centuries. In that time, there has been no indication, to bring Trinity into line with best international practice the Board adopted a policy on Good Research

  11. Trinity: supercomputing into the future

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

    AFDC Printable Version Share this resource Send a link to EERE: Alternative Fuels Data Center Home Page to someone by E-mail Share EERE: Alternative Fuels Data Center Home Page on Facebook Tweet about EERE: Alternative Fuels Data Center Home Page on Twitter Bookmark EERE: Alternative1 First Use of Energy for All Purposes (Fuel and Nonfuel), 2002; Level: National5Sales for4,645 3,625 1,006 492 742EnergyOnItemResearch >Internship Program The NIF andPointsThrustTrinityTrinity: supercomputing

  12. MICHELE A. JOHNSON Trinity University, Department of Biology

    E-Print Network [OSTI]

    Johnson, Michele A.

    MICHELE A. JOHNSON Trinity University, Department of Biology One Trinity Place, San Antonio, Texas 78212 michele.johnson@trinity.edu http://www.trinity.edu/mjohnso9/ EDUCATION 2001-2007 Washington Professor, Department of Biology, Trinity University, San Antonio, Texas 2007-2009 Postdoctoral Fellow

  13. On the Doctrine of the Trinity Edwin K. P. Chong

    E-Print Network [OSTI]

    Chong, Edwin K. P.

    On the Doctrine of the Trinity Edwin K. P. Chong Version: July 25, 2003 The doctrine of the Trinity Spirit.1 The doctrine of the Trinity has been accused of being a covert invasion by pagan philosophical of the Trinity, it should be said that the Trinity is not a straightforward idea. As Christians, we refer to God

  14. Plus: Provost Andy Orchard passes the torch Trinity's eco-conscience TRINITY ALUMNI MAGAZINE sUMMER 2013

    E-Print Network [OSTI]

    Prodić, Aleksandar

    Plus: Provost Andy Orchard passes the torch · Trinity's eco-conscience TRINITY ALUMNI MAGAZINE sUMMER 2013 trinity building legacy Bill and Cathy Graham on their enduring connection to Trinity at Trinity simply flies by. But those four or five years of living and learning and growing and gaining still

  15. REQUESTS FOR INDEPENDENT STUDY Trinity College of Arts & Sciences

    E-Print Network [OSTI]

    Richardson, David

    REQUESTS FOR INDEPENDENT STUDY Trinity College of Arts & Sciences (GENOME 293/294, GENOME 293 form is available at http://trinity.duke.edu/academic- requirements adheres to academic standards, policies, and procedures pertaining to undergraduate students in Trinity

  16. TRINITY HALL HAS INSTALLED CCTV ON THESE PREMISES FOR

    E-Print Network [OSTI]

    Lasenby, Joan

    TRINITY HALL HAS INSTALLED CCTV ON THESE PREMISES FOR YOUR SAFETY AND PROTECTION #12; Trinity Hall Trinity Lane Cambridge CB2 1TJ Tel: 01223 33 25 00 For all enquiries and questions

  17. Distance Learning Pilots in Trinity College Summer 2010

    E-Print Network [OSTI]

    Dolbow, John

    Distance Learning Pilots in Trinity College Summer 2010 Kristen Stephens than other Trinity summer courses according to comparisons made by the Office

  18. A Meditation on the Trinity A Painting from Sancto Spirito

    E-Print Network [OSTI]

    Atkinson, Katie

    A Meditation on the Trinity #12;A Painting from Sancto Spirito · The Father cradles the crucified, the eyes and soul, completing the people of God, one in adoration of the Trinity. #12;The Trinity · The Trinity, there, entire complete. · Encompassing all that is in heaven and earth. · Joining all

  19. Trinity River Initiative Building partnerships for cooperative conservation

    E-Print Network [OSTI]

    Trinity River Initiative Building partnerships for cooperative conservation More people in Texas use the water, wildlife and recreational resources from the Trinity River Basin than from any other in the Trinity River Basin--the ecological resources along much of the Trinity are in poor condition. Despite

  20. Trinity University Portland State University Updated 3/21/2013

    E-Print Network [OSTI]

    Caughman, John

    Trinity University Portland State University Updated 3/21/2013 Transfer Worksheet College-level transferable academic courses taken at the Trinity University (Trinity) will transfer to Portland State and to help in planning your transfer. PSU is on a quarter system. Since Trinity is on a semester system, your

  1. Trinity Health Ireland AMNCH TCD St James's Hospital

    E-Print Network [OSTI]

    O'Mahony, Donal E.

    Page1 Trinity Health Ireland AMNCH TCD St James's Hospital THE UNIVERSITY OF DUBLIN Trinity College / Trinity College 3 3. The Faculty of Health Sciences and School of Medicine 4 4. Adelaide and Meath. Trinity College, Dublin ­ Discipline of Clinical Medicine 10 at St. James's Hospital 7. Position

  2. TRINITY COLLEGE OXFORD Stipendiary College Lecturership in Philosophy: Further Particulars

    E-Print Network [OSTI]

    Oxford, University of

    TRINITY COLLEGE OXFORD Stipendiary College Lecturership in Philosophy: Further Particulars Teaching of Philosophy at Trinity College Trinity College admits circa eight undergraduate students a year to read one about the College, including Equality Policy documents, please see the College website: http://www.trinity

  3. International Relations Programme Trinity College in the University of Toronto

    E-Print Network [OSTI]

    Sun, Yu

    International Relations Programme Trinity College in the University of Toronto Margaret MacMillan Trinity One Programme Trinity College in the University of Toronto PUBLICISSUESFORUM Panellists: Amir, and beyond. John Duncan, Director of the Ethics, Society, and Law programme at Trinity College

  4. TRINITY ACCESS PROGRAMMES (TAP) HIGHLIGHTS OF 2009-10

    E-Print Network [OSTI]

    O'Mahony, Donal E.

    TRINITY ACCESS PROGRAMMES (TAP) HIGHLIGHTS OF 2009-10 Trinity Access Programmes #12;INTRODUCTION Trinity is a university that strives to eliminate barriers and create opportunity; we want the best and brightest to know that Trinity is the university for them, regardless of socio-economic background

  5. Trinity College Dublin Procedures for recording media broadcasts on campus

    E-Print Network [OSTI]

    O'Mahony, Donal E.

    Trinity College Dublin Procedures for recording media broadcasts on campus Introduction: Trinity of communication through which the College can communicate with large audiences and Trinity welcomes arises. Trinity receives many requests to film and record programme material and in order to facilitate

  6. The Impossible Trinity – from the Policy Trilemma to the Policy Quadrilemma

    E-Print Network [OSTI]

    Aizenman, Joshua

    2011-01-01T23:59:59.000Z

    March 2011 The Impossible Trinity – from the Policy Trilemmaextends the entry “The Impossible Trinity,” prepared for theacknowledged. The Impossible Trinity (aka The Trilemma) The

  7. Important Trinity / NERSC-8 Documents

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

    AFDC Printable Version Share this resource Send a link to EERE: Alternative Fuels Data Center Home Page to someone by E-mail Share EERE: Alternative Fuels Data Center Home Page on Facebook Tweet about EERE: Alternative Fuels Data Center Home Page on Twitter Bookmark EERE: Alternative1 First Use of Energy for All Purposes (Fuel and Nonfuel), 2002; Level: National5Sales for4,645U.S. DOE Office of Science (SC) EnvironmentalGyroSolé(tm)HydrogenRFP » Important Trinity / NERSC-8 Documents

  8. Trinity College DUBLIN Annual Report 2005 -2006

    E-Print Network [OSTI]

    O'Mahony, Donal E.

    -2008) Elected Non-Academic Staff Mr Henry Kearns (2005-2010) Ms Mary Leahy (2005-2008) Dr Kieran J Mc Sweeney, nominated by Trinity College Dublin (2005-2008) Ms Geraldine Clarke, nominated by the Minister

  9. Trinity

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

    AFDC Printable Version Share this resource Send a link to EERE: Alternative Fuels Data Center Home Page to someone by E-mail Share EERE: Alternative Fuels Data Center Home Page on Facebook Tweet about EERE: Alternative Fuels Data Center Home Page on Twitter Bookmark EERE: Alternative1 First Use of Energy for All Purposes (Fuel and Nonfuel), 2002; Level: National5Sales for4,645U.S. DOE Office of ScienceandMesa del SolStrengthening a solidSynthesisAppliancesTrending:Schedule FY 2015Los Alamos

  10. Trinity College CambridgeTrinity College CambridgeTrinity College CambridgeTrinity College Cambridge Saturday 23 November 2013, 2.30pmSaturday 23 November 2013, 2.30pmSaturday 23 November 2013, 2.30pmSaturday 23 November 2013, 2.30pm

    E-Print Network [OSTI]

    Lasenby, Joan

    Trinity College CambridgeTrinity College CambridgeTrinity College CambridgeTrinity College and held the post of Director of Music at Trinity for somewhat longer than I have been alive. My own time. It was also around this time that he made his first visit to Trinity, to have tea with Hubert Middleton

  11. Oxford University Final Honour Schools Trinity Term 2007

    E-Print Network [OSTI]

    Goldschmidt, Christina

    Oxford University Final Honour Schools Trinity Term 2007 Mathematics and Statistics Part A: First and Friday of week 9 in Trinity Term, June 21nd and 22rd 2007, but these dates should be regarded

  12. Trinity College Graduation Information (M.A. & Higher)

    E-Print Network [OSTI]

    Lasenby, Joan

    Trinity College Graduation Information (M.A. & Higher) Contents Congregations of the Regent House ....................................................................................................................................................... 7 #12;2 | P a g e Congregations of the Regent House Any member of Trinity College who has fulfilled

  13. Oxford University Final Honour Schools Trinity Term 2007

    E-Print Network [OSTI]

    Goldschmidt, Christina

    Oxford University Final Honour Schools Trinity Term 2007 Mathematics and Statistics Part A: Second, the examination will be held on Thursday and Friday of week 9 in Trinity Term, June 21st and 22nd 2007, in Ewert

  14. UNIVERSITY OF DUBLIN MA1212-1 TRINITY COLLEGE

    E-Print Network [OSTI]

    Karageorgis, Paschalis

    UNIVERSITY OF DUBLIN MA1212-1 TRINITY COLLEGE Faculty of Engineering, Mathematics and Science school of mathematics JF Maths/TP SF TSM Trinity Term 2013 MA1212 -- Linear Algebra II Wednesday, May 1

  15. UNIVERSITY OF DUBLIN MA1111-1 TRINITY COLLEGE

    E-Print Network [OSTI]

    Karageorgis, Paschalis

    UNIVERSITY OF DUBLIN MA1111-1 TRINITY COLLEGE Faculty of Engineering, Mathematics and Science school of mathematics JF Maths/TP/TSM Trinity Term 2013 MA1111 -- Linear Algebra I Monday, April 29 RDS

  16. EIS-0389: Trinity Public Utility District Direct Interconnection, CA

    Broader source: Energy.gov [DOE]

    This EIS analyzes DOE's decision to construct and operate proposed power transmission facilities in Trinity County, California.

  17. REQUESTS FOR INDEPENDENT STUDY Trinity College of Arts & Sciences

    E-Print Network [OSTI]

    Zhou, Pei

    REQUESTS FOR INDEPENDENT STUDY Trinity College of Arts & Sciences !Independent study enables they are enrolled in the course. The request form is available at http://trinity.duke.edu/academic-requirements? p adheres to academic standards, policies, and procedures pertaining to undergraduate students in Trinity

  18. 2012-2013 Handbook Trinity College London Certificate in Teaching

    E-Print Network [OSTI]

    Mumby, Peter J.

    1 2012-2013 Handbook Trinity College London Certificate in Teaching English to Speakers of Other information 37 #12;3 Dear Student Welcome to your Trinity Certificate course in Teaching English to Speakers chosen field ­ but with a professional qualification as well. The Trinity Cert TESOL is well recognised

  19. REQUESTS FOR INDEPENDENT STUDY Trinity College of Arts & Sciences

    E-Print Network [OSTI]

    REQUESTS FOR INDEPENDENT STUDY Trinity College of Arts & Sciences Independent study enables-add period of semester they are enrolled in the course. The request form is available at http://trinity, policies, and procedures pertaining to undergraduate students in Trinity College of Arts & Sciences. 3

  20. Making a gift: Trinity Hall is a registered charity

    E-Print Network [OSTI]

    Lasenby, Joan

    Making a gift: Trinity Hall is a registered charity and gifts to the College can be made tax. For more information please see: www.trinhall.cam.ac.uk/giving2012 Development Office, Trinity Hall)1223 765157 Trinity Hall Cambridge registered charity number 1137458 "Receiving funding has made a huge

  1. TRINITY COLLEGE DUBLIN SPORTS CENTRE Cancellation & Refund Policy

    E-Print Network [OSTI]

    O'Mahony, Donal E.

    TRINITY COLLEGE DUBLIN SPORTS CENTRE Cancellation & Refund Policy The Department of Sport is happy and a medical certificate is required. The Sports Department Trinity College reserves the right to adjust or cancel the details of any booking/course and prices at their discretion without prior notice. Trinity

  2. Trinity College Dublin and CDVEC Pearse and Plunket Colleges

    E-Print Network [OSTI]

    O'Mahony, Donal E.

    Trinity College Dublin and CDVEC Pearse and Plunket Colleges FFoouunnddaattiioonn CCoouurrsseess. The courses are available in three venues: Trinity College Dublin, Pearse College Crumlin and Plunket College/3598 or email reynole@tcd.ie Further information and Application Forms are available from: The Trinity Access

  3. Trinity College, The university of Dublin Mature Student

    E-Print Network [OSTI]

    O'Mahony, Donal E.

    Trinity College, The university of Dublin Mature Student GUIDE www.tcd.ie #12;#12;Peer Support Email: disab@tcd.ie Trinity Access Programme: Foundation Course for Higher Education Mature Students Web: www.tcd.ie/Trinity_Access/courses/mature_students.php Email: iboydell@tcd.ie Phone: (01) 896 2754

  4. Final Honour School of Mathematics and Statistics Trinity Term 2007

    E-Print Network [OSTI]

    Goldschmidt, Christina

    Final Honour School of Mathematics and Statistics Trinity Term 2007 Guidance notes for 4th year of preferences) is Friday of week 9, Trinity Term. · The deadline for submission of the form for approval of personalised projects is Monday of week 6, Trinity Term. · · A selection of project suggestions is compiled

  5. TRINITY COLLEGE DUBLIN Annual Report 2006 -2007

    E-Print Network [OSTI]

    O'Mahony, Donal E.

    World University Rankings 3 Trinity Academic Medical Centre 4 Educational Matters Student Body 4 Admissions Statistics/Entrance Exhibitioners 4 Scholarships 4 The Curriculum ­ New Courses 4 Commencements Construction Projects 13 Energy Conservation 15 Fundraising 15 Financial Position 16 Conclusion 17 Appendix I

  6. Borax Lake Pattern Assemblages on the Shasta-Trinity National Forests, North-Central California

    E-Print Network [OSTI]

    Sundahl, Elaine; Henn, Winfield

    1993-01-01T23:59:59.000Z

    Assemblages on the Shasta-Trinity National Forests, North-I E L D H E N N , Shasta-Trinity National Forests, Redding,CA 96001. X HE Shasta-Trinity National Forests curve around

  7. Trinity College Sports Centre Terms and Conditions 1. As a member of Trinity College's Sports Centre you are agreeing to comply

    E-Print Network [OSTI]

    O'Mahony, Donal E.

    Trinity College Sports Centre Terms and Conditions 1. As a member of Trinity College's Sports Centre must cease 30 minutes before advertised closing times to allow for showers. 18. Trinity College. If a dispute arises between Trinity College Sports Centre and a member, the decision of the Head of Sport

  8. Behind the scenes of Trinity Waters project: Partnerships and technology deliver cooperative conservation in the Trinity River Basin

    E-Print Network [OSTI]

    Alldredge, Blake; Kalisek, Danielle

    2012-01-01T23:59:59.000Z

    coming soon. Native Grassland Restoration in the Middle Trinity River Basin was published early in August #30;#29;#28;#30; for landowners in the Blackland Prairie and Post Oak Savannah ecoregions. Publications currently available in the Texas A...20 tx H2O Fall 2012 Story by Blake Alldredge and Danielle Kalisek Behind the scenes of Trinity Waters project Partnerships and technology deliver cooperative conservation in the Trinity River Basin Fall 2012 tx H2O 21 ] The shores of Lake...

  9. Trinity and NERSC-8 Draft Technical Requirements, Version 1.x 1 Trinity and NERSC-8 Computing

    E-Print Network [OSTI]

    respond with a configuration and price for both systems. 1.1 Trinity The DOE NNSA ASC Program requires resources for the NNSA ASC tri-lab simulation community: Los Alamos National Laboratory (LANL), Sandia-2020 timeframe. In order to fulfill its mission, the NNSA Stockpile Stewardship Program requires higher

  10. Trinity Gas to explore for gas in Colombia

    SciTech Connect (OSTI)

    NONE

    1997-07-01T23:59:59.000Z

    Trinity Gas Corp. officials signed an agreement on May 20, 1997, with the Cauca Valley Corp. (CVC) allowing Trinity to use CVC data to explore for natural gas in the Cauca Valley of Colombia. CVC, Colombia`s Valle del Cauca water resources and environmental division, is evaluating Colombia`s underground water reserves to protect, control and preserve fresh water aquifers, some of which contain natural gas pockets that cause blowouts in farmers` water wells. Preparations now are underway for drilling Trinity`s first well at the Palmira 1 site on the San Jose Hacienda, the largest privately owned sugar cane plantation in the valley. Trinity also entered into an agreement with the Cauca Valley Natural Gas and Electricity Project to furnish natural gas, generated electricity and energy fuel for the industrial district in the region. According to this contract, many valley residents will have electric service for the first time.

  11. Trinity College DublinStrategic Plan 2009--2014 Chapter title --2

    E-Print Network [OSTI]

    O'Mahony, Donal E.

    Trinity College DublinStrategic Plan 2009--2014 Chapter title -- 2 Trinity College Dublin Strategic Plan 2009--2014 #12;Chapter title -- i Trinity College Dublin Contents Provost's Foreword iii Values iv Vision and Mission v Executive Summary vii 01 Trinity's Strategy for the Future 1 The strategic approach

  12. Plus: Reunion 2014 Introducing our new Provost TRINITY ALUMNI MAGAZINE spRING 2014

    E-Print Network [OSTI]

    Sokolowski, Marla

    Plus: Reunion 2014 · Introducing our new Provost TRINITY ALUMNI MAGAZINE spRING 2014 trinity remembering the great war #12;Dr. Michael ratcliffe Interim Provost it is spring (at last!) at Trinity. Just that Mayo Moran, Dean of the Faculty of Law, will become Trinity's 15th Provost. Dean Moran and I

  13. Trinity - ASC's First Advanced Technology System

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

    AFDC Printable Version Share this resource Send a link to EERE: Alternative Fuels Data Center Home Page to someone by E-mail Share EERE: Alternative Fuels Data Center Home Page on Facebook Tweet about EERE: Alternative Fuels Data Center Home Page on Twitter Bookmark EERE: Alternative1 First Use of Energy for All Purposes (Fuel and Nonfuel), 2002; Level:Energy: Grid Integration Redefining What'sis Taking Over OurThe Iron Spin Transition in2,EHSS A-Z Site MapTrends,TUNLTribalTrillionTrinity

  14. Trinity Thermal Systems | Open Energy Information

    Open Energy Info (EERE)

    AFDC Printable Version Share this resource Send a link to EERE: Alternative Fuels Data Center Home Page to someone by E-mail Share EERE: Alternative Fuels Data Center Home Page on Facebook Tweet about EERE: Alternative Fuels Data Center Home Page on Twitter Bookmark EERE: Alternative Fuels Data Center Home Page onYou are now leaving Energy.gov You are now leaving Energy.gov You are being directedAnnualProperty Edit withTianlin Baxin HydropowerTrinity Thermal Systems Jump to: navigation, search

  15. Advertisement for Donships at Trinity College for 2012-13 Applications are invited for the following donships at Trinity College in the University of

    E-Print Network [OSTI]

    Sun, Yu

    Advertisement for Donships at Trinity College for 2012-13 Applications are invited for the following donships at Trinity College in the University of Toronto for 2012-2013. One donship in each. General information Trinity College appoints academic dons in a variety of disciplines. Through formal

  16. Men open with No.8 ranked Trinity Western PRINCE GEORGE, BC -The men's soccer team will open at home with CIS No.8 ranked team, the Trinity Western

    E-Print Network [OSTI]

    Northern British Columbia, University of

    Men open with No.8 ranked Trinity Western PRINCE GEORGE, BC - The men's soccer team will open at home with CIS No.8 ranked team, the Trinity Western Spartans. Kickoff is set for 2:15 p.m. Sept. 22 into their first CIS home opener taking on the No.8 CIS ranked team, the Trinity Western Spartans. The stakes

  17. This article was downloaded by: [Trinity University Library], [Peter Olofsson] On: 28 January 2013, At: 13:06

    E-Print Network [OSTI]

    Olofsson, Peter

    This article was downloaded by: [Trinity University Library], [Peter Olofsson] On: 28 January 2013, University of California, Merced, California, USA b Department of Mathematics, Trinity University, San, California, USA Peter Olofsson Department of Mathematics, Trinity University, San Antonio, Texas, USA

  18. Postgraduate Research (PhD) Studentships at Trinity College Dublin http://www.dsg.scss.tcd.ie/FutureCities

    E-Print Network [OSTI]

    Wolfe, Kenneth H.

    Postgraduate Research (PhD) Studentships at Trinity College Dublin http Graduate Initiative (TGI) at Trinity College Dublin currently have a range of research studentships

  19. Estimation of Recharge to the Middle Trinity Aquifer of Central Texas Using Water-Level Fluctuations 

    E-Print Network [OSTI]

    Jennings, Marshall; Chad, Thomas; Burch, John; Creutzburg, Brian; Lambert, Lance

    2001-01-01T23:59:59.000Z

    A 23-site monitoring well network located in the Trinity Aquifer region of Central Texas, with all wells penetrating the Middle Trinity Aquifer, was used with available values of aquifer storativity and specific yield to estimate recharge...

  20. The Trinity of Equity, Equality and Poverty in the scenario of Economic Globalization: Which Institutions

    E-Print Network [OSTI]

    Paris-Sud XI, Université de

    The Trinity of Equity, Equality and Poverty in the scenario of Economic Globalization: Which-biased than equity principle at work in case of taxation, property rights, and land reforms. In the trinity

  1. Virginie PRIVAS -BRAUT The Trinity of a new Age: Three struggling Women in

    E-Print Network [OSTI]

    Paris-Sud XI, Université de

    1 Virginie PRIVAS - BRĂ?AUTĂ? The Trinity of a new Age: Three struggling Women in Anne Devlin Trinity of a New Age. Ultimately, Ourselves Alone and After Easter can lead us to wonder whether God might

  2. The prefaces to M R James' four volume catalogue of Trinity College Manuscripts

    E-Print Network [OSTI]

    Lasenby, Joan

    The prefaces to M R James' four volume catalogue of Trinity College Manuscripts Volume I. Manuscript in class B The manuscripts in the Library of Trinity College are kept in three locked classes. The first printed Catalogue of the MSS. belonging to Trinity College is to be found in #12;Thomas James

  3. Universit Blaise-Pascal, Clermont-Ferrand, France -Trinity College Dublin, Ireland

    E-Print Network [OSTI]

    Paris-Sud XI, Université de

    Université Blaise-Pascal, Clermont-Ferrand, France - Trinity College Dublin, Ireland Ecole Juillet 2010 Jury: John Walsh, University College Dublin, Ireland Dave Chew, Trinity College Dublin, Ireland John Graham, Trinity College Dublin, Ireland Jean-Christophe Komorowski, Institut de Physique du

  4. Significance of the concentration gradients associated with dunite bodies in the Josephine and Trinity ophiolites

    E-Print Network [OSTI]

    and Trinity ophiolites Zachary Morgan and Yan Liang Department of Geological Sciences, Brown University bodies in the Josephine and Trinity ophiolites. The major peridotite lithologies sampled in the Josephine transect are a sequence of dunite and harzburgite and in the Trinity transect a sequence of dunite

  5. Title of dissertation: Trinity: A Unified Treatment of Turbulence, Transport, and Heating

    E-Print Network [OSTI]

    Anlage, Steven

    ABSTRACT Title of dissertation: Trinity: A Unified Treatment of Turbulence, Transport, and Heating, Trinity, which is capable of evolv- #12;ing equilibrium profiles for multiple species, including. To demonstrate the utility of the coupled flux tube approach, preliminary results from Trinity simulations

  6. Trinity Centre for Biodiversity Research Strategic Plan 2012-2014 Strategic Plan 2012-2014

    E-Print Network [OSTI]

    O'Mahony, Donal E.

    Trinity Centre for Biodiversity Research Strategic Plan 2012-2014 1 Strategic Plan 2012-2014 www.tcd.ie/tcbr #12;Trinity Centre for Biodiversity Research Strategic Plan 2012-2014 2 TCBR Strategic Plan 2012-2014 Mission statement The mission of Trinity Centre for Biodiversity Research (TCBR) is to bring together

  7. Take a seat... Development Office, Trinity Hall, Cambridge, CB2 1TJ

    E-Print Network [OSTI]

    Lasenby, Joan

    Take a seat... Take a seat... Development Office, Trinity Hall, Cambridge, CB2 1TJ www.trinhall.cam.ac.uk fundraising@trinhall.cam.ac.uk Tel: 01223 766345 Fax: 01223 765157 Trinity Hall Cambridge registered charity the chair. GIFT AID DECLARATION I would like Trinity Hall, Cambridge to treat all donations that I have made

  8. Trinity Technology Transfer News In recent months Creme has been working with their customers

    E-Print Network [OSTI]

    O'Mahony, Donal E.

    Trinity Technology Transfer News April 2013 In recent months Creme has been working-year contract as Associate Director of Trinity Research & Innovation, Dr James Callaghan has moved-out companies in Ireland stem from Trinity, which he described as a remarkable figure. He went

  9. JAMES ROBERT LLOYD Address: Trinity College, Cambridge, CB2 1TQ, UK

    E-Print Network [OSTI]

    Kim, Tae-Kyun

    JAMES ROBERT LLOYD Address: Trinity College, Cambridge, CB2 1TQ, UK Telephone: +44 (0)7890 215148 Email: james.robert.lloyd@gmail.com EDUCATION 2011 ­ Trinity College, Cambridge University: Ph / pattern discovery. 2008 ­ 2009 Trinity College, Cambridge University: M.Phil in Statistical Science Exam

  10. To: All members of the Trinity College community From: Michael Ratcliffe, Interim Provost

    E-Print Network [OSTI]

    Sokolowski, Marla

    Memo To: All members of the Trinity College community From: Michael Ratcliffe, Interim Provost Re with Trinity College academically as teachers, may be appointed Associates of the College for a term of two to me by email via Cera Maugey (cera@trinity.utoronto.ca) and include the following information

  11. Undergraduate Admissions for the 21st Conference in the Trinity Long Room Hub

    E-Print Network [OSTI]

    O'Mahony, Donal E.

    Undergraduate Admissions for the 21st Century Conference in the Trinity Long Room Hub Friday 18 May Foghlú. Part I 9.25 a.m. Dr. Patrick Prendergast (Provost of Trinity College Dublin), on `Undergraduate.m. Lunch in the Trinity Long Room Hub. #12;Part II The afternoon panel sessions will be chaired by Dr. John

  12. NORT H CAROLINA TRINITY COLLEGE OF ARTS AND SCIENCES PH: (919) 684-5585

    E-Print Network [OSTI]

    Zhou, Pei

    DURHAM NORT H CAROLINA 27708-0057 TRINITY COLLEGE OF ARTS AND SCIENCES PH: (919) 684-5585 OFFICE: Ingeborg Walther, Associate Dean, Trinity College of Arts & Sciences and Director, Office of Curriculum, administrators, faculty, advisors, etc. 3. 2010-2011 academic year: Registrar, SISS, and Trinity offices in core

  13. DUBLIN The College & The City The Long Room, Trinity College Library Dublin

    E-Print Network [OSTI]

    O'Mahony, Donal E.

    DUBLIN The College & The City 1250­1950 The Long Room, Trinity College Library Dublin 5 November of the oldest cities in Europe, Dublin's settlement spans over 1000 years. The collections of Trinity College, churchmen, politicians, landowners, servants or students. Since its foundation in 1592, Trinity's identity

  14. Trinity College Dublin. The University of Dublin. UNDERGRADUATE COURSES, 2012. www.tcd.ie UNDERGRADUATE

    E-Print Network [OSTI]

    O'Mahony, Donal E.

    Trinity College Dublin. The University of Dublin. UNDERGRADUATE COURSES, 2012. www.tcd.ie UNDERGRADUATE COURSES 2012 www.tcd.ie #12;I hope that you will consider joining us as a student at Trinity College Dublin. Trinity College Dublin is recognised internationally as Ireland's premier university

  15. Alumni & Development Office, Trinity Hall, Trinity Lane, Cambridge, CB2 1TJ | Tel: +44 (0)1223 765265 Fax: +44 (0) 1223 765157 | www.trinhall.cam.ac.uk | merchandise@trinhall.cam.ac.uk | Registered Charity number: 1137458

    E-Print Network [OSTI]

    Lasenby, Joan

    Alumni & Development Office, Trinity Hall, Trinity Lane, Cambridge, CB2 1TJ | Tel: +44 (0 Charity number: 1137458 TRINITY HALL MERCHANDISE ORDER FORM FOR PRINTS OF DRAWINGS BY COLIN HAYES (TH prints of the entire collection of Colin Hayes' series of sepia pen and wash drawings, Trinity Hall

  16. P r o s P e c t u s Trinity CollegeO x f O r d

    E-Print Network [OSTI]

    Oxford, University of

    P r o s P e c t u s Trinity CollegeO x f O r d #12;1 Introduction Choosing a college Why choose Trinity? College environment What sort of students are we looking for? 4 Your life at Trinity ­ academic Library Computing 6 Your life at Trinity ­ social Sport Music, drama and debating Common Rooms Chapel

  17. Trinity College launches Computer Science Initiative for the 21st Century -Google supports next generation of technology leaders

    E-Print Network [OSTI]

    O'Mahony, Donal E.

    Trinity College launches Computer Science Initiative for the 21st Century Classroom - Google supports next generation of technology leaders Friday, 31 May 2013: Trinity College Dublin today announcedst Century Computer Science Teaching Skills, developed by the Trinity Access 21 network in Trinity

  18. Evaluation of supplemental aeration for the Trinity River System

    E-Print Network [OSTI]

    Reap, Edward John

    1974-01-01T23:59:59.000Z

    S. ra M 4- C3 O 40 rO CC p Thames Estuary Data ~ ~Aaksman Data 20 0 I 2 3 4 5 6 7 8 9 10 Dissolved Oxygen (mg/I) FIGURE 19. -Rate of nitrification versus dissolved oxygen levels. 11 TABLE II. -Present Waste Loading to the Trinity River... numerous reports of a total absence of any dissolved oxygen present in the water have been reported and verified by the Texas Water Development Board, the Trinity River Authority and the City of Dallas. 1 2 3 The situation is a result of limitations...

  19. Surprise Valley Electric Co-Op Trinity Shasta Lake

    E-Print Network [OSTI]

    Cove California Electric Utility Service Areas California Energy Commission Systems Assessment-Op PacifiCorp Trinity Shasta Lake Redding PG&E Area served by both Surprise Valley Electric Co-Op & Pacific Vernon Aha MacavAzusa Pasadena Glendale Burbank City and County of S.F. Palo Alto Silicon Valley Power

  20. The unholy trinity: taxonomy, species delimitation and DNA barcoding

    E-Print Network [OSTI]

    DeSalle, Rob

    The unholy trinity: taxonomy, species delimitation and DNA barcoding Rob DeSalle*, Mary G. Egan are clarified and resolved, before the use of DNA as a tool for taxonomy and species delimitation can framework for interweaving classical taxonomy with the goals of `DNA barcoding'. Keywords: DNA barcoding

  1. Field Optimization of Three Dimensional High Voltage C. Trinitis

    E-Print Network [OSTI]

    Stamatakis, Alexandros

    Field Optimization of Three Dimensional High Voltage Equipment C. Trinitis Lehrstuhl f The goal of finding an optimal electric field strength distribution for arbitrary three di­ mensional­ cal optimization algorithm. The package ob­ tained from these three components is then able

  2. Produced by Times Higher Education for Trinity College Dublin Arts and Humanities

    E-Print Network [OSTI]

    O'Mahony, Donal E.

    Produced by Times Higher Education for Trinity College Dublin Arts and Humanities enter a new phaseNew perspectives 001_TCD_SEP0910V2.qxp:Layout 1 12/8/10 15:25 Page 3 #12;he newest building on the Trinity College within Trinity College Dublin itself ­ which as a walled campus around which the city of Dublin grew has

  3. Day After Trinity: Oppenheimer and the Atomic Bomb

    SciTech Connect (OSTI)

    Documentary

    2005-10-31T23:59:59.000Z

    On October 31st at 4:00 pm in Panofsky Auditorium SLAC’s Colloquium Series will present the exceptional Oscar-nominated documentary The Day After Trinity. The film offers invaluable insight into historic events which have forever changed the face of our world – this screening should not to be missed. After witnessing the tremendous destructive power of the atomic bomb, J. Robert Oppenheimer declared “I have become death”. Still topically relevant a quarter of a century since its release, Director Jon Else’s documentary uses interviews, archival footage, and narration to reveal the internal landscape of the man whose leadership at Los Alamos, New Mexico, defined the rise of the Manhattan Project and the beginning of the Atomic Age. The Day After Trinity traces the unexpected path of Oppenheimer’s career - from his formation of the Los Alamos colony and the first successful atomic bomb detonation at the Trinity test site in 1945, to his final years spent branded as a security risk and excluded from the atomic energy research he pioneered due to his opposition to the development of the Hydrogen bomb.

  4. Physics and Physical Oceanography Data Report 2000-2 Tow-Yo and Temperature Data from Trinity Bay,

    E-Print Network [OSTI]

    deYoung, Brad

    Physics and Physical Oceanography Data Report 2000-2 Tow-Yo and Temperature Data from Trinity Bay Oeanography Memorial University of Newfoundland St. John's, Newfoundland A1B 3X7 #12;ii Abstract Trinity Bay

  5. PhD studentship in European Studies Trinity College Dublin Centre for European Studies (School of Languages, Literatures and

    E-Print Network [OSTI]

    O'Mahony, Donal E.

    PhD studentship in European Studies Trinity College Dublin ­ Centre for European Studies (School in the field of European Studies in the School of Languages, Literatures and Cultural Studies at Trinity College Dublin. European Studies is represented in Trinity College through undergraduate (BA

  6. slightly revised for Nuncius, 2003, 17(1): 331-344 Linear perspective in Masaccio's Trinity fresco

    E-Print Network [OSTI]

    Paris-Sud XI, Université de

    slightly revised for Nuncius, 2003, 17(1): 331-344 Linear perspective in Masaccio's Trinity fresco: The present paper discusses some new findings on the topic of Masaccio's Trinity fresco pers- pective strongly support the view that Masaccio's Trinity fresco is not a model of linear perspective. The thesis

  7. Trinity College Green Week 2012 Energy Competition Win a Domestic Energy Meter

    E-Print Network [OSTI]

    O'Mahony, Donal E.

    Trinity College Green Week 2012 Energy Competition ­ Win a Domestic Energy Meter As part of College Green Week the "e3" programme and Director of Buildings Office is promoting an energy related would you like to win a domestic whole house energy meter as part of Trinity College Green Week 2012

  8. IPC -Library Policy Document -2 12 08 Trinity College Library Dublin

    E-Print Network [OSTI]

    O'Mahony, Donal E.

    and international scholarship · to foster Trinity College's role as a custodian of national heritage material. 2- 1 ­ 25/11/2008 IPC - Library Policy Document - 2 12 08 Trinity College Library Dublin of readers, access to and use of the Library's collections and resources. 1.2. Aims The purpose of the policy

  9. TrinityHPCUserForum.9.8.14.pptx

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

    AFDC Printable Version Share this resource Send a link to EERE: Alternative Fuels Data Center Home Page to someone by E-mail Share EERE: Alternative Fuels Data Center Home Page on Facebook Tweet about EERE: Alternative Fuels Data Center Home Page on Twitter Bookmark EERE: Alternative1 First Use of Energy for All Purposes (Fuel and Nonfuel), 2002; Level:Energy: Grid Integration Redefining What'sis Taking Over OurThe Iron Spin Transition in2,EHSS A-Z SiteManhattan Project » SignatureTrinity:

  10. Trinity Valley Elec Coop Inc | Open Energy Information

    Open Energy Info (EERE)

    AFDC Printable Version Share this resource Send a link to EERE: Alternative Fuels Data Center Home Page to someone by E-mail Share EERE: Alternative Fuels Data Center Home Page on Facebook Tweet about EERE: Alternative Fuels Data Center Home Page on Twitter Bookmark EERE: Alternative Fuels Data Center Home Page onYou are now leaving Energy.gov You are now leaving Energy.gov You are being directedAnnualProperty Edit withTianlin Baxin HydropowerTrinity Thermal Systems Jump to: navigation,

  11. A Uses and Gratifications Case Study of Trinity Waters Facebook Page Followers

    E-Print Network [OSTI]

    Hunt, Pamela Sue

    2013-07-29T23:59:59.000Z

    . The use of social media outlets such as Facebook is one avenue of information delivery. The purpose of this study was to determine the uses and gratifications of the followers of the Trinity Waters Facebook page. A qualitative research design...

  12. Wind-wave measurements in a shallow estuary: Trinity Bay, Texas

    E-Print Network [OSTI]

    Dupuis, Keith Wade

    2009-05-15T23:59:59.000Z

    Acoustic current meter data collected in the shallow ( 3m depth) Trinity Bay, (TB a sub-bay in Galveston Bay), TX, estuary were used to characterize locally generated windwaves. Significant wave heights, periods, and directions were estimated from...

  13. Linking Water Conservation and Natural Resource Stewardship in the Trinity River Basin

    E-Print Network [OSTI]

    Cathey, James; Locke, Shawn; Feldpausch, A.M.; Parker, I.D.; Frentress, C.; Whiteside, J.; Mason, C.; Wagner, M.

    2007-09-04T23:59:59.000Z

    Water conservation is a critical issue in Texas today. This publication explores the relationship between ecosystem health and land stewardship in the Trinity River Basin. It also describes how responsible land stewardship can be applied in urban...

  14. Trinity and organism: towards a new reading of Herman Bavinck’s Organic motif 

    E-Print Network [OSTI]

    Eglinton, James Perman

    2010-11-26T23:59:59.000Z

    -revelation. The redemption and modification of the Augustinian notion of the vestigia trinitatis enables Bavinck to see the Trinity revealed in all of life. He thus commandeers the common organic language of nineteenth century Europe and, in so doing, loads...

  15. Weigel and Fredrickson: An Assessment of the Research Potential of 13 Ridgetop Archaeological Sites in Humboldt and Trinity Counties in Northwestern California; Hildebrandt and Hayes: Archaeological Investigations on Pilot Ridge, Six Rivers National Forest; Hildebrandt and Hayes: Archaeological Investigations on South Fork Mountain, Six Rivers and Shasta-Trinity National Forests; and Hildebrandt and Hayes: Archaeological Investigations on Pilot Ridge: Results of the 1984 Field Season

    E-Print Network [OSTI]

    Henn, Winfield G

    1988-01-01T23:59:59.000Z

    Sites in Humboldt and Trinity Counties in Northwestern Cali-Humboldt County and western Trinity County. Sponsored by theSix Rivers and Shasta-Trinity Na- preceded by extensive

  16. THE CHAPEL OF ST HUGH AND ST CHAD IN THE KING'S HALL AND COLLEGE OF BRASENOSE MUSIC LIST, TRINITY TERM 2013

    E-Print Network [OSTI]

    Oxford, University of

    THE CHAPEL OF ST HUGH AND ST CHAD IN THE KING'S HALL AND COLLEGE OF BRASENOSE MUSIC LIST, TRINITY Eucharist, 6pm Congregational Setting: Cullen Motet: Lead me, Lord - SS Wesley 6th Week - Trinity Sunday

  17. Dear Student, You have been offered a place at Trinity College Dublin for entry into a Postgraduate Programme for 2010/2011. Please find

    E-Print Network [OSTI]

    O'Mahony, Donal E.

    1 Dear Student, You have been offered a place at Trinity College Dublin for entry. This is important especially for the period between your departure from home and before you register at Trinity which have not been addressed. We look forward to meeting you when you arrive in Dublin! TRINITY COLLEGE

  18. Admissions Office, Trinity College, Dublin 2. Tel. 896 4000 Fax. 8722853 Email: admissions@tcd.ie Web-site: www.tcd.ie

    E-Print Network [OSTI]

    O'Mahony, Donal E.

    Admissions Office, Trinity College, Dublin 2. Tel. 896 4000 Fax. 8722853 Email: admissions@tcd.ie Web-site: www.tcd.ie Trinity College Dublin Language Waiver Application Form (School Record Form..................................................................... Note: Applicants to Trinity College Dublin are required to present a qualification in one language

  19. Gant secures Spartans win over Timberwolves PRINCE GEORGE, BC -Timberwolves men's soccer team fell 2-1 to the No.8 Trinity Western Spartans

    E-Print Network [OSTI]

    Northern British Columbia, University of

    2-1 to the No.8 Trinity Western Spartans Saturday, September 22 at the North Cariboo Senior Soccer through by finding the back of the net, giving Trinity Western a 1-0 lead in the 15th minute UNBC squad was not able to recover. Trinity Western improves to 4-0-1 while UNBC remains winless at 0

  20. NIID, Trinity College Dublin www.tcd.ie/niid Ph: 01 896 3885 Page 1 of 14 Certificate in Contemporary Living (CCL)

    E-Print Network [OSTI]

    O'Mahony, Donal E.

    NIID, Trinity College Dublin www.tcd.ie/niid Ph: 01 896 3885 Page 1 of 14 Certificate for support if needed. #12;NIID, Trinity College Dublin www.tcd.ie/niid Ph: 01 896 3885 Page 2 of 14 1 Address: Phone: Mobile: Email Address: #12;NIID, Trinity College Dublin www.tcd.ie/niid Ph: 01 896 3885

  1. doi:10.1016/j.gca.2004.08.004 Observations of Li isotopic variations in the Trinity Ophiolite: Evidence for isotopic

    E-Print Network [OSTI]

    doi:10.1016/j.gca.2004.08.004 Observations of Li isotopic variations in the Trinity Ophiolite; accepted in revised form August 11, 2004) Abstract--The Trinity peridotite (northern CA) contains numerous the Trinity peridotite. Specifically, measurements of average 7 Li for single thin sections along the traverse

  2. Development Office, Trinity Hall, Cambridge, CB2 1TJ www.trinhall.cam.ac.uk fundraising@trinhall.cam.ac.uk

    E-Print Network [OSTI]

    Lasenby, Joan

    Development Office, Trinity Hall, Cambridge, CB2 1TJ www.trinhall.cam.ac.uk fundraising@trinhall.cam.ac.uk Tel: 01223 766345 Fax: 01223 765157 Trinity Hall Cambridge registered charity number 1137458 Making of financial background, and we are committed to nurturing the talent of the diverse Trinity Hall community

  3. Trinity College isn't just a place for students and professors to study and learn ... it's also a treasure island in the middle of Dublin with lots of hidden corners to explore.

    E-Print Network [OSTI]

    O'Mahony, Donal E.

    Trinity College isn't just a place for students and professors to study and learn ... it's also through 15 of Trinity's secret spots and earn the right to call yourself a "Citizen of Trinity". You can may be closed at some times. Going to College should always be this much fun! Trinity's Treasure Trail

  4. TCD School of Education Record Achievements for the School of Education, Trinity

    E-Print Network [OSTI]

    O'Mahony, Donal E.

    TCD School of Education Record Achievements for the School of Education, Trinity At end. In the year in which the School, uniquely in Ireland, Subject Rankings - well ahead of many UK Russe Ph. Ed candidates, the total number of doctoral students regist programme in the School of Education

  5. Land Use in Relation to Sedimentation in Reservoirs : Trinity River Basin, Texas.

    E-Print Network [OSTI]

    Gabbard, L. P. (Letcher P.); Garin, Alexis N.

    1941-01-01T23:59:59.000Z

    cash in advance foY docks, fishing camps, et cetera. Few permanent. imprdvements, how- ever, and the period of time since the construction of the reservoir has been so short that not much road construction has been possible. *That is, annual...LIBRARY. ' A & M COLLEGE. 1 - k TEXAS AGRICULTURAL EXPERIMENT STATION A. B. CONNER, DIRECTOR, College Station, Texas 'ULLETIN NO. 597 JANUARY 1941 LAND USE IN RELATION TO SEDIMENTA- TION IN RESERVOIRS, TRINITY RIVER BASIN, TEXAS I I 1...

  6. RECORDINGS OF THE CHAPEL CHOIR OF TRINITY COLLEGE, CAMBRIDGE This is a comprehensive list of recordings made by the choir, and issued on CD, since its 'reformation' by the last Director of Music, Richard Marlow, as a mixed

    E-Print Network [OSTI]

    Lasenby, Joan

    RECORDINGS OF THE CHAPEL CHOIR OF TRINITY COLLEGE, CAMBRIDGE This is a comprehensive list `Trinity only' titles compiled from other recordings in the listing. Individual tracks also appear July 9-11 1993 Nov-93 CDCF 517 75605 515172 Conifer Silas Standage, Philip Rushforth A Trinity

  7. RECORDINGS OF THE CHAPEL CHOIR OF TRINITY COLLEGE, CAMBRIDGE This is a comprehensive list of recordings made by the choir, and issued on CD, since its 'reformation' by the last Director of Music, Richard Marlow, as a mixed

    E-Print Network [OSTI]

    Lasenby, Joan

    RECORDINGS OF THE CHAPEL CHOIR OF TRINITY COLLEGE, CAMBRIDGE This is a comprehensive list `Trinity only' titles compiled from other recordings in the listing. Individual tracks also appear for Trinity and his double choir Latin Magnificat No recording date given Jan-87 CDCF 155 75605 511552 Conifer

  8. The Library of Trinity College Dublin, as one of the UK Legal Deposit Libraries, welcomes the UK Government's response to the recent Public Consultation on Non-Print Legal

    E-Print Network [OSTI]

    O'Mahony, Donal E.

    The Library of Trinity College Dublin, as one of the UK Legal Deposit Libraries, welcomes the UK Libraries (including Trinity College Library Dublin) have welcomed the UK Government's response, Bodleian Library Oxford, Cambridge University Library and Trinity College Dublin. Robin Adams Librarian

  9. Spartans' team effort defeats Timberwolves PRINCE GEORGE, BC -The University of Northern BC was out played by No.8 Trinity Western

    E-Print Network [OSTI]

    Northern British Columbia, University of

    was out played by No.8 Trinity Western University in their match-up on Sunday afternoon. The Timberwolves by a charging Trinity Western keeper, with the keeper so far out of net Amani was able to head the rebound past

  10. Examination Schools Room Layout During Trinity Term use the Merton Street entrance and wait in the quad marquee until your examination is called. Outside of Trinity Term enter via the High Street entrance and

    E-Print Network [OSTI]

    Oxford, University of

    South SchoolEast School SI Student Information Desk wc wc wc PLEASE NOTE: THERE IS NO CAR PARKING until your examination is called. Outside of Trinity Term please go directly to the Exam Hall. Reception Exam Office EXAM HALL wc Exam Office Reception wc QUAD MARQUEE WAITING AREA Entrance ­ via car park

  11. TCD-UCD Innovation Academy As part of their recently-formed Innovation Alliance, Trinity College Dublin and University

    E-Print Network [OSTI]

    O'Mahony, Donal E.

    TCD-UCD Innovation Academy As part of their recently-formed Innovation Alliance, Trinity College Dublin and University College Dublin have launched the Innovation Academy to transform the brightest Academy brings together postgraduate students from the arts, humanities, business, sciences

  12. A Study to Determine the Feasibility of Diverting a Portion of the Red River into the Trinity, Neches and Sabine River Basins

    E-Print Network [OSTI]

    Cook, John Henry

    TR-1 1967 A Study to Determine the Feasibility of Diverting a Portion of the Red River into the Trinity, Neches and Sabine River Basins J.H. Cook Texas Water Resources Institute Texas A...

  13. Preon Trinity

    E-Print Network [OSTI]

    J. -J. Dugne; S. Fredriksson; J. Hansson; E. Predazzi

    1998-02-17T23:59:59.000Z

    We present a new minimal model for the substructure of all known quarks, leptons and weak gauge bosons, based on only three fundamental and stable spin-1/2 preons. As a consequence, we predict three new quarks, three new leptons, and six new vector bosons. One of the new quarks has charge $-4e/3$. The model explains the apparent conservation of three lepton numbers, as well as the so-called Cabibbo-mixing of the $d$ and $s$ quarks, and predicts electromagnetic decays or oscillations between the neutrinos $\\bar{\

  14. About Trinity

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

    AFDC Printable Version Share this resource Send a link to EERE: Alternative Fuels Data Center Home Page to someone by E-mail Share EERE: Alternative Fuels Data Center Home Page on Facebook Tweet about EERE: Alternative Fuels Data Center Home Page on Twitter Bookmark EERE: Alternative1 First Use of Energy for All Purposes (Fuel and Nonfuel), 2002; Level: National5Sales for4,645U.S. DOE Office511041cloth DocumentationProducts (VAP) VAP7-0973 1 Introduction In the design ThisLPO

  15. RECORDINGS OF THE CHAPEL CHOIR OF TRINITY COLLEGE, CAMBRIDGE This is a list of recordings made by the Choir under the direction of Richard Marlow, and issued on vinyl LP and/or cassette tape. It also includes two recordings of

    E-Print Network [OSTI]

    Lasenby, Joan

    RECORDINGS OF THE CHAPEL CHOIR OF TRINITY COLLEGE, CAMBRIDGE This is a list of recordings made by Richard Marlow on the new Metzler organ in Trinity Chapel. Includes Toccata, Adagio and Fugue in C Parry's 'Songs of Farewell', together with Stanford's three motets written for Trinity and his double

  16. A Uses and Gratifications Case Study of Trinity Waters Facebook Page Followers 

    E-Print Network [OSTI]

    Hunt, Pamela Sue

    2013-07-29T23:59:59.000Z

    Due to the advancement of the Internet, information delivery has been forever changed. Technology rapidly outpaces traditional methods of conveying educational material. As a result, educators must seek non-traditional methods to deliver information...

  17. Simulation information regarding Sandia National Laboratories%3CU%2B2019%3E trinity capability improvement metric.

    SciTech Connect (OSTI)

    Agelastos, Anthony Michael; Lin, Paul T.

    2013-10-01T23:59:59.000Z

    Sandia National Laboratories, Los Alamos National Laboratory, and Lawrence Livermore National Laboratory each selected a representative simulation code to be used as a performance benchmark for the Trinity Capability Improvement Metric. Sandia selected SIERRA Low Mach Module: Nalu, which is a uid dynamics code that solves many variable-density, acoustically incompressible problems of interest spanning from laminar to turbulent ow regimes, since it is fairly representative of implicit codes that have been developed under ASC. The simulations for this metric were performed on the Cielo Cray XE6 platform during dedicated application time and the chosen case utilized 131,072 Cielo cores to perform a canonical turbulent open jet simulation within an approximately 9-billion-elementunstructured- hexahedral computational mesh. This report will document some of the results from these simulations as well as provide instructions to perform these simulations for comparison.

  18. Wind-wave measurements in a shallow estuary: Trinity Bay, Texas 

    E-Print Network [OSTI]

    Dupuis, Keith Wade

    2009-05-15T23:59:59.000Z

    observations and follow the current proposed asymptotic limit to wave growth in shallow depth. The depth range for this empirical formulation is extended from 0.5–2m out to 3.5m. The model does not work for wind speeds less than 1m/s and during rapid wind...

  19. A study to determine the feasibility of diverting a portion of the Red River into the Trinity, Neches and Sabine River basins 

    E-Print Network [OSTI]

    Cook, John Henry

    1967-01-01T23:59:59.000Z

    outlook ~Pt t 1 Trinity River Basin EconoInic outlook ~Pt t 1 Neches River Basin 10 10 Economic outlook 10 ~Pt t 1 Sabine River Basin Economic outlook 12 I I I. THE WATER RESOURCES DF THE NECHES AND RED RIVER BASINS 14 Neches River Basin 14..., '' is a general discussion of the economic factors as they are related to demand for water in each basin. In addition to a statewide outlook, a separate discussion for each basin is presented which includes future population projections. In closing...

  20. Trinity (for Expanded Orchestra)

    E-Print Network [OSTI]

    Winokur, Robert Michael

    2011-01-01T23:59:59.000Z

    Cls. , Bsns. , o p v o p — ppp pp ppp pp F Horns Tpts. —;—;—b. r.c. r.c. D. S. f Vln. I PPP Vln. II over the fingerboardVia. pp Vc. PPP div. arco Bs. T r •— PPP nnn r r8 PPP

  1. Graeme Cameron Trinity, 2008

    E-Print Network [OSTI]

    Paxton, Anthony T.

    Engineering · Chemical Selection · Corrosion Monitoring; Design · Welding Specifications & Qualifications · Component Specification & Datasheet · Subsea, Structures & Plant Construction · Procurement Support · Vendor Maintenance · IMMR Planning & Implementation · Pipeline Repair Planning & ImplementationCorrosion Monitoring

  2. NERSC-8 / Trinity Benchmarks

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

    homogenous three dimensional domain. AMG AMG is a parallel algebraic multigrid solver for linear systems arising from problems on unstructured grids. UMT UMT is a 3-D,...

  3. NERSC-8 / Trinity Benchmarks

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

    AFDC Printable Version Share this resource Send a link to EERE: Alternative Fuels Data Center Home Page to someone by E-mail Share EERE: Alternative Fuels Data Center Home Page on Facebook Tweet about EERE: Alternative Fuels Data Center Home Page on Twitter Bookmark EERE: Alternative1 First Use of Energy for All Purposes (Fuel and Nonfuel), 2002; Level: National5Sales for4,645U.S. DOE Office of Science (SC)Integrated Codes |IsLove Your1AllocationsNOVAPlayedNERSC's ScienceBenchmarks NERSC-8 /

  4. final.trinity.indd

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

    AFDC Printable Version Share this resource Send a link to EERE: Alternative Fuels Data Center Home Page to someone by E-mail Share EERE: Alternative Fuels Data Center Home Page on Facebook Tweet about EERE: Alternative Fuels Data Center Home Page on Twitter Bookmark EERE: Alternative1 First Use of Energy for All Purposes (Fuel and Nonfuel), 2002; Level: National5Sales for4,645U.S. DOE Office of ScienceandMesa del SolStrengtheningWildfires mayYuan T. Lee'sdefault Sign Inemc2Bubbles andProject0th

  5. Trinity / NERSC-8 SSP

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

    AFDC Printable Version Share this resource Send a link to EERE: Alternative Fuels Data Center Home Page to someone by E-mail Share EERE: Alternative Fuels Data Center Home Page on Facebook Tweet about EERE: Alternative Fuels Data Center Home Page on Twitter Bookmark EERE: Alternative1 First Use of Energy for All Purposes (Fuel and Nonfuel), 2002; Level: National5Sales for4,645U.S. DOE Office of ScienceandMesa del SolStrengthening a solidSynthesisAppliancesTrending:Schedule FY 2015Los AlamosSSP

  6. Rapid road repair vehicle

    DOE Patents [OSTI]

    Mara, Leo M. (Livermore, CA)

    1999-01-01T23:59:59.000Z

    Disclosed are improvments to a rapid road repair vehicle comprising an improved cleaning device arrangement, two dispensing arrays for filling defects more rapidly and efficiently, an array of pre-heaters to heat the road way surface in order to help the repair material better bond to the repaired surface, a means for detecting, measuring, and computing the number, location and volume of each of the detected surface imperfection, and a computer means schema for controlling the operation of the plurality of vehicle subsystems. The improved vehicle is, therefore, better able to perform its intended function of filling surface imperfections while moving over those surfaces at near normal traffic speeds.

  7. Light disappears rapidly (exponentially)

    E-Print Network [OSTI]

    Kudela, Raphael M.

    #12;#12;#12;#12;Light disappears rapidly (exponentially) with depth At the same time, the color of the light shifts #12;#12;#12;#12;· Euphotic zone ­ plentiful light ­ 0-100 m (about) · Dysphotic zone ­ very, very little light ­ 100-1000 m (about) · Aphotic zone ­ no light ­ below 1000 m #12;Sunlight in Water

  8. Angelina County, Texas: Energy Resources | Open Energy Information

    Open Energy Info (EERE)

    AFDC Printable Version Share this resource Send a link to EERE: Alternative Fuels Data Center Home Page to someone by E-mail Share EERE: Alternative Fuels Data Center Home Page on Facebook Tweet about EERE: Alternative Fuels Data Center Home Page on Twitter Bookmark EERE: Alternative Fuels Data Center Home Page onYou are now leaving Energy.gov You are now leaving Energy.gov You are beingZealand Jump to:Ezfeedflag JumpID-fTriWildcat Place:Alvan2809328°,Anfu Guanshan HydropowerTexas: Energy

  9. Rapid road repair vehicle

    DOE Patents [OSTI]

    Mara, Leo M. (Livermore, CA)

    1998-01-01T23:59:59.000Z

    Disclosed is a rapid road repair vehicle capable of moving over a surface to be repaired at near normal posted traffic speeds to scan for and find an the high rate of speed, imperfections in the pavement surface, prepare the surface imperfection for repair by air pressure and vacuum cleaning, applying a correct amount of the correct patching material to effect the repair, smooth the resulting repaired surface, and catalog the location and quality of the repairs for maintenance records of the road surface. The rapid road repair vehicle can repair surface imperfections at lower cost, improved quality, at a higher rate of speed than was was heretofor possible, with significantly reduced exposure to safety and health hazards associated with this kind of road repair activities in the past.

  10. Rapid road repair vehicle

    DOE Patents [OSTI]

    Mara, L.M.

    1998-05-05T23:59:59.000Z

    Disclosed is a rapid road repair vehicle capable of moving over a surface to be repaired at near normal posted traffic speeds to scan for and find at the high rate of speed, imperfections in the pavement surface, prepare the surface imperfection for repair by air pressure and vacuum cleaning, applying a correct amount of the correct patching material to effect the repair, smooth the resulting repaired surface, and catalog the location and quality of the repairs for maintenance records of the road surface. The rapid road repair vehicle can repair surface imperfections at lower cost, improved quality, at a higher rate of speed than was not heretofor possible, with significantly reduced exposure to safety and health hazards associated with this kind of road repair activities in the past. 2 figs.

  11. Rapidly refuelable fuel cell

    DOE Patents [OSTI]

    Joy, R.W.

    1982-09-20T23:59:59.000Z

    A rapidly refuelable dual cell of an electrochemical type is described wherein a single anode cooperates with two cathodes and wherein the anode has a fixed position and the cathodes are urged toward opposite faces of the anodes at constant and uniform force. The associated cathodes are automatically retractable to permit the consumed anode remains to be removed from the housing and a new anode inserted between the two cathodes.

  12. The effects of the effluent from an electrical generating station on the phytoplankton of Trinity Bay, Texas

    E-Print Network [OSTI]

    Krejci, Mark Edward

    1979-01-01T23:59:59.000Z

    -third of the average daily freshwater runoff in the United States (Clark 1969). Saline water withdrawal by power plants in the coastal and estuarine areas of Texas is expected to increase from 3. 0 x 10 to 17. 0 x 10 gallons of water per day between the years 1975... and Coutant 1978; Uziel 1978) . Phytoplankton entrained in power plant cooling waters are sub- 0 jected to rapid increases in water temperature of 6-24 C above ambient that may adversely affect their survival (Naylor 1965; Warinner and Brehmer 1966...

  13. Radiological survey and evaluation of the fallout area from the Trinity test: Chupadera Mesa and White Sands Missile Range, New Mexico

    SciTech Connect (OSTI)

    Hansen, W.R.; Rodgers, J.C.

    1985-06-01T23:59:59.000Z

    Current radiological conditions were evaluated for the site of the first nuclear weapons test, the Trinity test, and the associated fallout zone. The test, located on White Sands Missile Range, was conducted as part of the research with nuclear materials for the World War II Manhattan Engineer District atomic bomb project. Some residual radioactivity attributable to the test was found in the soils of Ground Zero on White Sands Missile Range and the areas that received fallout from the test. The study considered relevant information including historical records, environmental data extending back to the 1940s, and new data acquired by field sampling and measurements. Potential exposures to radiation were evaluated for current land uses. Maximum estimated doses on Chupadera Mesa and other uncontrolled areas are less than 3% of the DOE Radiation Protection Standards (RPSs). Radiation exposures during visits to the US Army-controlled Ground Zero area are less than 1 mrem per annual visit or less than 0.2% of the RPS for a member of the public. Detailed data and interpretations are provided in appendixes. 14 figs., 45 tabs.

  14. Solid state rapid thermocycling

    DOE Patents [OSTI]

    Beer, Neil Reginald; Spadaccini, Christopher

    2014-05-13T23:59:59.000Z

    The rapid thermal cycling of a material is targeted. A solid state heat exchanger with a first well and second well is coupled to a power module. A thermoelectric element is coupled to the first well, the second well, and the power module, is configured to transfer thermal energy from the first well to the second well when current from the power module flows through the thermoelectric element in a first direction, and is configured to transfer thermal energy from the second well to the first well when current from the power module flows through the thermoelectric element in a second direction. A controller may be coupled to the thermoelectric elements, and may switch the direction of current flowing through the thermoelectric element in response to a determination by sensors coupled to the wells that the amount of thermal energy in the wells falls below or exceeds a pre-determined threshold.

  15. Advances in rapid prototyping

    SciTech Connect (OSTI)

    Atwood, C.L.; McCarty, G.D.; Pardo, B.T.; Bryce, E.A.

    1993-12-31T23:59:59.000Z

    Recent advances in stereolithography and selective laser sintering have had a significant impact on the overall quality of parts produced using these rapid prototyping processes. The development and implementation of 3D System`s QuickCast{trademark} resin and software for building investment casting patterns have proven to be major steps toward fabricating highly accurate patterns with very good surface finishes. Sandia uses patterns generated from rapid prototyping processes to reduce the cycle time and cost of fabricating prototype parts in support of a Sandia National Laboratories managed program called FASTCAST. As participants in the Beta test program for QuickCast{trademark} resin and software, they experienced a steep learning curve and were able to build accurate parts in a short period of time. It is now possible, using this technology, to produce highly accurate prototype parts as well as acceptable firs article and small lots size production parts. They use the Selective Laser Sintering (SLS) process to fabricate prototype wax patterns for investment casting. DTM Corporation recently introduced the use of their polycarbonate material for fabricating investment casting patterns. The polycarbonate material is processed significantly faster, with improved strength, dimensional stability, and without a support structure during the build process. Sandia is currently changing from investment casting wax to polycarbonate for the fabrication of investment casting patterns using the SLS process. This presentation will focus on the successes with these new materials from the standpoints of application, accuracy, surface finish, and post processing. Also presented will be examples of parts manufactured by these processes.

  16. Rapid prototyping of green composites

    E-Print Network [OSTI]

    Peek, Nadya (Nadya Meile)

    2010-01-01T23:59:59.000Z

    Rapid prototyping employs digital fabrication techniques to quickly manufacture parts. However, the available materials are not yet suitable for making strong, large or durable objects. Composites are materials which are ...

  17. Trinity College Dublin JS Handbook

    E-Print Network [OSTI]

    O'Mahony, Donal E.

    ............................................................................ 2 Course Overview .............................................................................. 2 Credit Transfer System (ECTS) ............................................. 4 Placement and Pre in course handbooks, the provisions of the General Regulations will prevail. Course Overview The JS year

  18. University of Dublin Trinity College

    E-Print Network [OSTI]

    O'Mahony, Donal E.

    and Statistics BAI Electronic Engineering (Stream C) BAI Computer Engineering (Stream D) BAI Electronic Sophister specializations: Electronic, Electronic and Computer Engineering and Computer Engineering. As you of the BAI degree offered by the Departments of Electronic and Electrical Engineering and Computer Science

  19. Trinity NERSC-8 Draft RFP

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

    AFDC Printable Version Share this resource Send a link to EERE: Alternative Fuels Data Center Home Page to someone by E-mail Share EERE: Alternative Fuels Data Center Home Page on Facebook Tweet about EERE: Alternative Fuels Data Center Home Page on Twitter Bookmark EERE: Alternative1 First Use of Energy for All Purposes (Fuel and Nonfuel), 2002; Level: National5Sales for4,645U.S. DOE Office of ScienceandMesa del SolStrengthening a solidSynthesisAppliancesTrending:Schedule FY 2015Los

  20. Trinity Hills | Open Energy Information

    Open Energy Info (EERE)

    AFDC Printable Version Share this resource Send a link to EERE: Alternative Fuels Data Center Home Page to someone by E-mail Share EERE: Alternative Fuels Data Center Home Page on Facebook Tweet about EERE: Alternative Fuels Data Center Home Page on Twitter Bookmark EERE: Alternative Fuels Data Center Home Page onYou are now leaving Energy.gov You are now leaving Energy.gov You are beingZealand Jump to:Ezfeedflag JumpID-fTri Global Energy LLC Place: Dallas, Texas Zip:Hills Jump to: navigation,

  1. Trinity Solar | Open Energy Information

    Open Energy Info (EERE)

    AFDC Printable Version Share this resource Send a link to EERE: Alternative Fuels Data Center Home Page to someone by E-mail Share EERE: Alternative Fuels Data Center Home Page on Facebook Tweet about EERE: Alternative Fuels Data Center Home Page on Twitter Bookmark EERE: Alternative Fuels Data Center Home Page onYou are now leaving Energy.gov You are now leaving Energy.gov YouKizildere IRaghuraji Agro IndustriesTown of Ladoga, Indiana (UtilityTri-State ElectricSolar Jump to: navigation, search

  2. Biomass Rapid Analysis Network (BRAN)

    SciTech Connect (OSTI)

    Not Available

    2003-10-01T23:59:59.000Z

    Helping the emerging biotechnology industry develop new tools and methods for real-time analysis of biomass feedstocks, process intermediates and The Biomass Rapid Analysis Network is designed to fast track the development of modern tools and methods for biomass analysis to accelerate the development of the emerging industry. The network will be led by industry and organized and coordinated through the National Renewable Energy Lab. The network will provide training and other activities of interest to BRAN members. BRAN members will share the cost and work of rapid analysis method development, validate the new methods, and work together to develop the training for the future biomass conversion workforce.

  3. Rapidity-Dependent Jet Vetoes

    E-Print Network [OSTI]

    Shireen Gangal; Maximilian Stahlhofen; Frank J. Tackmann

    2014-12-15T23:59:59.000Z

    Jet vetoes are a prominent part of the signal selection in various analyses at the LHC. We discuss jet vetoes for which the transverse momentum of a jet is weighted by a smooth function of the jet rapidity. With a suitable choice of the rapidity-weighting function, such jet-veto variables can be factorized and resummed allowing for precise theory predictions. They thus provide a complementary way to divide phase space into exclusive jet bins. In particular, they provide a natural and theoretically clean way to implement a tight veto on central jets with the veto constraint getting looser for jets at increasingly forward rapidities. We mainly focus our discussion on the 0-jet case in color-singlet processes, using Higgs production through gluon fusion as a concrete example. For one of our jet-veto variables we compare the resummed theory prediction at NLL'+NLO with the recent differential cross section measurement by the ATLAS experiment in the $H\\to\\gamma\\gamma$ channel, finding good agreement. We also propose that these jet-veto variables can be measured and tested against theory predictions in other SM processes, such as Drell-Yan, diphoton, and weak diboson production.

  4. Rapid thermal processing by stamping

    DOE Patents [OSTI]

    Stradins, Pauls; Wang, Qi

    2013-03-05T23:59:59.000Z

    A rapid thermal processing device and methods are provided for thermal processing of samples such as semiconductor wafers. The device has components including a stamp (35) having a stamping surface and a heater or cooler (40) to bring it to a selected processing temperature, a sample holder (20) for holding a sample (10) in position for intimate contact with the stamping surface; and positioning components (25) for moving the stamping surface and the stamp (35) in and away from intimate, substantially non-pressured contact. Methods for using and making such devices are also provided. These devices and methods allow inexpensive, efficient, easily controllable thermal processing.

  5. Notices 20 Miles Northwest of Rapid City SD Rapid City SD 57702

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

    Notices 20 Miles Northwest of Rapid City SD Rapid City SD 57702 Landholding Agency: Agriculture Property Number: 15201410016 Status: Excess Comments: off-site removal only; 55 sq....

  6. Rapid starting methanol reactor system

    DOE Patents [OSTI]

    Chludzinski, Paul J. (38 Berkshire St., Swampscott, MA 01907); Dantowitz, Philip (39 Nancy Ave., Peabody, MA 01960); McElroy, James F. (12 Old Cart Rd., Hamilton, MA 01936)

    1984-01-01T23:59:59.000Z

    The invention relates to a methanol-to-hydrogen cracking reactor for use with a fuel cell vehicular power plant. The system is particularly designed for rapid start-up of the catalytic methanol cracking reactor after an extended shut-down period, i.e., after the vehicular fuel cell power plant has been inoperative overnight. Rapid system start-up is accomplished by a combination of direct and indirect heating of the cracking catalyst. Initially, liquid methanol is burned with a stoichiometric or slightly lean air mixture in the combustion chamber of the reactor assembly. The hot combustion gas travels down a flue gas chamber in heat exchange relationship with the catalytic cracking chamber transferring heat across the catalyst chamber wall to heat the catalyst indirectly. The combustion gas is then diverted back through the catalyst bed to heat the catalyst pellets directly. When the cracking reactor temperature reaches operating temperature, methanol combustion is stopped and a hot gas valve is switched to route the flue gas overboard, with methanol being fed directly to the catalytic cracking reactor. Thereafter, the burner operates on excess hydrogen from the fuel cells.

  7. Rapid prototyping applications for manufacturing

    SciTech Connect (OSTI)

    Atwood, C.L.; Maguire, M.C.; Pardo, B.T.; Bryce, E.A. [Sandia National Labs., Albuquerque, NM (United States)

    1996-01-01T23:59:59.000Z

    Recent advances in stereolithography and selective laser sintering have had a significant impact on the overall quality of parts produced using these rapid prototyping processes. The development and implementation of 3D System`s QuickCast{sup TM} resin and software for building investment casting patterns have proven to be major steps toward fabricating highly accurate patterns with very good surface finishes. As participants in the Beta test program for QuickCast{sup TM} resin and software, we experienced a steep learning curve and were able to build accurate parts in a short period of time. It is now possible using this technology to produce highly accurate prototype parts as well as acceptable first article and small lot size production parts. We use the Selective Laser Sintering (SLS) process to fabricate prototype wax patterns for investment casting. DTM Corporation recently introduced the use of their polycarbonate material for fabricating investment casting patterns. The polycarbonate material is processed significantly faster with improved strength, dimensional stability, and without a support structure during the build process. Sandia is currently changing from investment casting wax to polycarbonate for the fabrication of investment casting patterns using the SLS process. This report will focus on our successes with these new materials from the standpoints of application, accuracy, surface finish, and post processing. Also presented will be examples of parts manufactured by these processes. 6 refs., 10 figs.

  8. Neuropsychologia xxx (2005) xxxxxx Rapid publication

    E-Print Network [OSTI]

    Gabrieli, John

    2005-01-01T23:59:59.000Z

    Neuropsychologia xxx (2005) xxx­xxx Rapid publication Making sense of another mind: The role. Wexler / Neuropsychologia xxx (2005) xxx­xxx LaBar, Crupain, V

  9. Charged particle rapidity distributions at relativistic energies 

    E-Print Network [OSTI]

    Lin, ZW; Pal, S.; Ko, Che Ming; Li, Ba; Zhang, B.

    2001-01-01T23:59:59.000Z

    Using a multiphase transport model (AMPT), which includes both initial partonic and final hadronic interactions, we study the rapidity distributions of charged particles such as protons, antiprotons, pions, and kaons in heavy ion collisions at RHIC...

  10. WVU Personal Rapid Transit Benefit Cost Analysis

    E-Print Network [OSTI]

    Mohaghegh, Shahab

    WVU Personal Rapid Transit Benefit Cost Analysis Morgantown, West Virginia Prepared For: West.......................................................................................... 15 Travel Time Value - Understanding Travel Time Costs................................................. 15 Travel Time Value - Understanding Travel Time Costs

  11. Angelina County, Texas ASHRAE 169-2006 Climate Zone | Open Energy

    Open Energy Info (EERE)

    AFDC Printable Version Share this resource Send a link to EERE: Alternative Fuels Data Center Home Page to someone by E-mail Share EERE: Alternative Fuels Data Center Home Page on Facebook Tweet about EERE: Alternative Fuels Data Center Home Page on Twitter Bookmark EERE: Alternative Fuels Data Center Home Page onYou are now leaving Energy.gov You are now leaving Energy.gov You are beingZealand Jump to:Ezfeedflag JumpID-fTriWildcat Place:Alvan2809328°,Anfu Guanshan Hydropower

  12. Bubbling Reactor Technology for Rapid Synthesis of Uniform, Small...

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

    Bubbling Reactor Technology for Rapid Synthesis of Uniform, Small MFI-Type Zeolite Crystals . Bubbling Reactor Technology for Rapid Synthesis of Uniform, Small MFI-Type Zeolite...

  13. RAPID COMMUNICATIONS IN MASS SPECTROMETRY Rapid Commun. Mass Spectrom. 2005; 19: 32483252

    E-Print Network [OSTI]

    Kim, Myung Soo

    to be that photofragment ions generated at this wavelength are similar to those from low- and high-energy CAD, and are thusRAPID COMMUNICATIONS IN MASS SPECTROMETRY Rapid Commun. Mass Spectrom. 2005; 19: 3248 of singly protonated peptides at 193 nm investigated with tandem time-of-flight mass spectrometry Jeong Hee

  14. RAPID COMMUNICATIONS IN MASS SPECTROMETRY Rapid Commun. Mass Spectrom. 2005; 19: 24812487

    E-Print Network [OSTI]

    Kim, Myung Soo

    chromophore dissociated efficiently when a suf- ficiently high laser pulse energy was used. Also, the pulseRAPID COMMUNICATIONS IN MASS SPECTROMETRY Rapid Commun. Mass Spectrom. 2005; 19: 2481 time-of- flight (TOF) mass spectrometry of ions generated by matrix-assisted laser desorption

  15. RAPID COMMUNICATION / COMMUNICATION RAPIDE Validation of Sr isotopes in otoliths by laser

    E-Print Network [OSTI]

    California at Santa Cruz, University of

    RAPID COMMUNICATION / COMMUNICATION RAPIDE Validation of Sr isotopes in otoliths by laser ablation ŕ plasma inductif avec multicollecteur aprčs ablation au laser (LA-MC-ICPMS) et par spectrométrie de ratios using laser abla- tion multicollector inductively coupled plasma mass spectrometry (LA

  16. The rapid tooling testbed: a distributed

    E-Print Network [OSTI]

    Chen, Yong

    the manufacturing activity, and that little additional communication between these activities is necessary. UnderThe rapid tooling testbed: a distributed design-for- manufacturing system David W. Rosen Yong Chen Engineer at 3D Systems, Valencia, California, USA. Shiva Sambu is a Manufacturing Engineer at Align

  17. High precision, rapid laser hole drilling

    DOE Patents [OSTI]

    Chang, Jim J.; Friedman, Herbert W.; Comaskey, Brian J.

    2013-04-02T23:59:59.000Z

    A laser system produces a first laser beam for rapidly removing the bulk of material in an area to form a ragged hole. The laser system produces a second laser beam for accurately cleaning up the ragged hole so that the final hole has dimensions of high precision.

  18. High precision, rapid laser hole drilling

    DOE Patents [OSTI]

    Chang, Jim J.; Friedman, Herbert W.; Comaskey, Brian J.

    2007-03-20T23:59:59.000Z

    A laser system produces a first laser beam for rapidly removing the bulk of material in an area to form a ragged hole. The laser system produces a second laser beam for accurately cleaning up the ragged hole so that the final hole has dimensions of high precision.

  19. High precision, rapid laser hole drilling

    DOE Patents [OSTI]

    Chang, Jim J.; Friedman, Herbert W.; Comaskey, Brian J.

    2005-03-08T23:59:59.000Z

    A laser system produces a first laser beam for rapidly removing the bulk of material in an area to form a ragged hole. The laser system produces a second laser beam for accurately cleaning up the ragged hole so that the final hole has dimensions of high precision.

  20. RAPID COMMUNICATION Navigational Skills Correlate With Hippocampal

    E-Print Network [OSTI]

    Iaria, Giuseppe

    ; topographical orientation; virtual environment; cognitive map INTRODUCTION Evidence from human and non-humanRAPID COMMUNICATION Navigational Skills Correlate With Hippocampal Fractional Anisotropy in Humans animals (O'Keefe and Nadel, 1978; Mellet et al., 2000) has shown that successful orientation within

  1. THE UNIVERSITY OF DUBLIN Trinity College

    E-Print Network [OSTI]

    O'Mahony, Donal E.

    ) School of Genetics and Microbiology: Progress report, dated 23 September 2011. 6. Academic Appeals of Discipline to note and approve the following nominations: (i) Clinical Medicine, AMNCH Professor D McNamara as Head of Clinical Medicine (pending a nomination to the Chair of Clinical Medicine, in place

  2. The Impossible Trinity (aka The Policy Trilemma)

    E-Print Network [OSTI]

    Aizenman, Joshua

    2010-01-01T23:59:59.000Z

    Exchr. Stab. , EMG Year Mon. Indep. , non-EMG LDC KAOPEN,non-EMG LDC Exchr. Stab. ,non-EMG LDC Definitions: The index for the extent of

  3. Trinity College Dublin Annual Report 2007 -2008

    E-Print Network [OSTI]

    O'Mahony, Donal E.

    Innovation Fund 3 THES World University Rankings 4 Quality 4 Educational Matters Student Body 5 Admissions Statistics/Entrance Exhibitioners 5 Scholarships 5 The Curriculum ­ New Courses 5 Commencements, Firsts Capital Development Programme Completed Projects 16 Proposed Construction Projects 17 Energy Conservation

  4. BYTHENUMBERS 2014 HTTP://TRINITY.DUKE.EDU

    E-Print Network [OSTI]

    Zhou, Pei

    , environmental science, law, medicine, public policy, and nursing. We award nearly 80 per- cent of undergraduate & Middle Eastern Studies, History, Financial Economics Top Five Certificates by Enrollment: Markets Studies Richard Lublin Award Denise Comer Thompson Writing Program Teaching with Technology Award Lewis

  5. Trinity Capability Improvement v2.4

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

    AFDC Printable Version Share this resource Send a link to EERE: Alternative Fuels Data Center Home Page to someone by E-mail Share EERE: Alternative Fuels Data Center Home Page on Facebook Tweet about EERE: Alternative Fuels Data Center Home Page on Twitter Bookmark EERE: Alternative1 First Use of Energy for All Purposes (Fuel and Nonfuel), 2002; Level:Energy: Grid Integration Redefining What'sis Taking Over OurThe Iron Spin Transition in2,EHSS A-Z Site

  6. AFS Trinity Power Corp | Open Energy Information

    Open Energy Info (EERE)

    AFDC Printable Version Share this resource Send a link to EERE: Alternative Fuels Data Center Home Page to someone by E-mail Share EERE: Alternative Fuels Data Center Home Page on Facebook Tweet about EERE: Alternative Fuels Data Center Home Page on Twitter Bookmark EERE: Alternative Fuels Data Center Home Page onYou are now leaving Energy.gov You are now leaving Energy.gov You are beingZealand Jump to:Ezfeedflag JumpID-fTriWildcat 1 WindtheEnergySulfonate asAEE Solar Jump to:AESAETAFCAFS

  7. Picture of the Week: The Trinity Test

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

    AFDC Printable Version Share this resource Send a link to EERE: Alternative Fuels Data Center Home Page to someone by E-mail Share EERE: Alternative Fuels Data Center Home Page on Facebook Tweet about EERE: Alternative Fuels Data Center Home Page on Twitter Bookmark EERE: Alternative1 First Use of Energy for All Purposes (Fuel and Nonfuel), 2002; Level: National5Sales for4,645 3,625 1,006 492 742EnergyOnItemResearch > TheNuclear AstrophysicsPayroll,Physics Physics An error occurred.0917

  8. Picture of the Week: The Trinity Test

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

    AFDC Printable Version Share this resource Send a link to EERE: Alternative Fuels Data Center Home Page to someone by E-mail Share EERE: Alternative Fuels Data Center Home Page on Facebook Tweet about EERE: Alternative Fuels Data Center Home Page on Twitter Bookmark EERE: Alternative1 First Use of Energy for All Purposes (Fuel and Nonfuel), 2002; Level: National5Sales for4,645U.S. DOE Office of Science (SC)IntegratedSpeeding accessPeptoidLabPhysics Physics Our sciencePhysics53

  9. Trinity CO2 LLC | Open Energy Information

    Open Energy Info (EERE)

    AFDC Printable Version Share this resource Send a link to EERE: Alternative Fuels Data Center Home Page to someone by E-mail Share EERE: Alternative Fuels Data Center Home Page on Facebook Tweet about EERE: Alternative Fuels Data Center Home Page on Twitter Bookmark EERE: Alternative Fuels Data Center Home Page onYou are now leaving Energy.gov You are now leaving Energy.gov You are beingZealand Jump to:Ezfeedflag JumpID-fTri Global Energy LLC Place: Dallas, Texas Zip:

  10. Trinity Public Utilities Dist | Open Energy Information

    Open Energy Info (EERE)

    AFDC Printable Version Share this resource Send a link to EERE: Alternative Fuels Data Center Home Page to someone by E-mail Share EERE: Alternative Fuels Data Center Home Page on Facebook Tweet about EERE: Alternative Fuels Data Center Home Page on Twitter Bookmark EERE: Alternative Fuels Data Center Home Page onYou are now leaving Energy.gov You are now leaving Energy.gov You are being directedAnnualProperty Edit withTianlin Baxin Hydropower

  11. Manhattan Project: Evaluations of Trinity, July 1945

    Office of Scientific and Technical Information (OSTI)

    AFDC Printable Version Share this resource Send a link to EERE: Alternative Fuels Data Center Home Page to someone by E-mail Share EERE: Alternative Fuels Data Center Home Page on Facebook Tweet about EERE: Alternative Fuels Data Center Home Page on Twitter Bookmark EERE: Alternative1 First Use of Energy for All Purposes (Fuel and Nonfuel), 2002; Level: National5Sales for4,645 3,625 1,006 492 742EnergyOnItem NotEnergy, science, and technology-- Energy, science, andDCP-1Army parade,Leslie

  12. Reconsidering Rapid Qubit Purification by Feedback

    E-Print Network [OSTI]

    H. M. Wiseman; J. F. Ralph

    2006-05-13T23:59:59.000Z

    This paper reconsiders the claimed rapidity of a scheme for the purification of the quantum state of a qubit, proposed recently in Jacobs 2003 Phys. Rev. A67 030301(R). The qubit starts in a completely mixed state, and information is obtained by a continuous measurement. Jacobs' rapid purification protocol uses Hamiltonian feedback control to maximise the average purity of the qubit for a given time, with a factor of two increase in the purification rate over the no-feedback protocol. However, by re-examining the latter approach, we show that it mininises the average time taken for a qubit to reach a given purity. In fact, the average time taken for the no-feedback protocol beats that for Jacobs' protocol by a factor of two. We discuss how this is compatible with Jacobs' result, and the usefulness of the different approaches.

  13. On seismic signatures of rapid variation

    E-Print Network [OSTI]

    G. Houdek; D. O. Gough

    2006-12-01T23:59:59.000Z

    We present an improved model for an asteroseismic diagnostic contained in the frequency spacing of low-degree acoustic modes. By modelling in a realistic manner regions of rapid variation of dynamically relevant quantities, which we call acoustic glitches, we can derive signatures of the gross properties of those glitches. In particular, we are interested in measuring properties that are related to the helium ionization zones and to the rapid variation in the background state associated with the lower boundary of the convective envelope. The formula for the seismic diagnostic is tested against a sequence of theoretical models of the Sun, and is compared with seismic diagnostics published previously by Monteiro & Thompson (1998, 2005) and by Basu et al. (2004).

  14. On the rapid intensification of typhoons

    E-Print Network [OSTI]

    Holliday, Charles Richard

    1977-01-01T23:59:59.000Z

    readings for typhoons typical of type 2 development (Virginia, . June 1957; and Anita, August 1970). Arrow indicates onset of rapid deepening (& 1. 75 mb h 1). s deep typhoons (& 920 mb) and the maximum 24-h pressure fall Central pressure fall rates... of typhoon Betty (12 August 1972) with cloudiness features south of the typhoon depicting outflow into the upper tropospheric easterli. es. 30. ITOS-1 satellite view of. typhoon Anita (20 August 1970) with cloudiress absent equatorward of the typhoon...

  15. Rapid determination of actinides in asphalt samples

    DOE Public Access Gateway for Energy & Science Beta (PAGES Beta)

    Maxwell, Sherrod L.; Culligan, Brian K.; Hutchison, Jay B.

    2014-01-12T23:59:59.000Z

    A new rapid method for the determination of actinides in asphalt samples has been developed that can be used in emergency response situations or for routine analysis If a radiological dispersive device (RDD), Improvised Nuclear Device (IND) or a nuclear accident such as the accident at the Fukushima Nuclear Power Plant in March, 2011 occurs, there will be an urgent need for rapid analyses of many different environmental matrices, including asphalt materials, to support dose mitigation and environmental clean up. The new method for the determination of actinides in asphalt utilizes a rapid furnace step to destroy bitumen and organicsmore »present in the asphalt and sodium hydroxide fusion to digest the remaining sample. Sample preconcentration steps are used to collect the actinides and a new stacked TRU Resin + DGA Resin column method is employed to separate the actinide isotopes in the asphalt samples. The TRU Resin plus DGA Resin separation approach, which allows sequential separation of plutonium, uranium, americium and curium isotopes in asphalt samples, can be applied to soil samples as well.« less

  16. Rapid determination of actinides in asphalt samples

    DOE Public Access Gateway for Energy & Science Beta (PAGES Beta)

    Maxwell, Sherrod L.; Culligan, Brian K.; Hutchison, Jay B.

    2014-01-12T23:59:59.000Z

    A new rapid method for the determination of actinides in asphalt samples has been developed that can be used in emergency response situations or for routine analysis If a radiological dispersive device (RDD), Improvised Nuclear Device (IND) or a nuclear accident such as the accident at the Fukushima Nuclear Power Plant in March, 2011 occurs, there will be an urgent need for rapid analyses of many different environmental matrices, including asphalt materials, to support dose mitigation and environmental clean up. The new method for the determination of actinides in asphalt utilizes a rapid furnace step to destroy bitumen and organics present in the asphalt and sodium hydroxide fusion to digest the remaining sample. Sample preconcentration steps are used to collect the actinides and a new stacked TRU Resin + DGA Resin column method is employed to separate the actinide isotopes in the asphalt samples. The TRU Resin plus DGA Resin separation approach, which allows sequential separation of plutonium, uranium, americium and curium isotopes in asphalt samples, can be applied to soil samples as well.

  17. Energy-beam-driven rapid fabrication system

    DOE Patents [OSTI]

    Keicher, David M. (Albuquerque, NM); Atwood, Clinton L. (Albuquerque, NM); Greene, Donald L. (Corrales, NM); Griffith, Michelle L. (Albuquerque, NM); Harwell, Lane D. (Albuquerque, NM); Jeantette, Francisco P. (Albuquerque, NM); Romero, Joseph A. (Albuquerque, NM); Schanwald, Lee P. (Albuquerque, NM); Schmale, David T. (Albuquerque, NM)

    2002-01-01T23:59:59.000Z

    An energy beam driven rapid fabrication system, in which an energy beam strikes a growth surface to form a molten puddle thereon. Feed powder is then injected into the molten puddle from a converging flow of feed powder. A portion of the feed powder becomes incorporated into the molten puddle, forcing some of the puddle contents to freeze on the growth surface, thereby adding an additional layer of material. By scanning the energy beam and the converging flow of feed powder across the growth surface, complex three-dimensional shapes can be formed, ready or nearly ready for use. Nearly any class of material can be fabricated using this system.

  18. Rapid and robust spin state amplification

    E-Print Network [OSTI]

    Tom Close; Femi Fadugba; Simon C. Benjamin; Joseph Fitzsimons; Brendon W. Lovett

    2011-05-24T23:59:59.000Z

    Electron and nuclear spins have been employed in many of the early demonstrations of quantum technology (QT). However applications in real world QT are limited by the difficulty of measuring single spins. Here we show that it is possible to rapidly and robustly amplify a spin state using a lattice of ancillary spins. The model we employ corresponds to an extremely simple experimental system: a homogenous Ising-coupled spin lattice in one, two or three dimensions, driven by a continuous microwave field. We establish that the process can operate at finite temperature (imperfect initial polarisation) and under the effects of various forms of decoherence.

  19. Category:RAPID Forms | Open Energy Information

    Open Energy Info (EERE)

    AFDC Printable Version Share this resource Send a link to EERE: Alternative Fuels Data Center Home Page to someone by E-mail Share EERE: Alternative Fuels Data Center Home Page on Facebook Tweet about EERE: Alternative Fuels Data Center Home Page on Twitter Bookmark EERE: Alternative Fuels Data Center Home Page onYou are now leaving Energy.gov You are now leaving Energy.gov You are beingZealand JumpConceptual Model, click here. Category:Conceptual ModelListsPolitical ActionQuantitativeThisRAPID

  20. RAPID/Roadmap/17 | Open Energy Information

    Open Energy Info (EERE)

    AFDC Printable Version Share this resource Send a link to EERE: Alternative Fuels Data Center Home Page to someone by E-mail Share EERE: Alternative Fuels Data Center Home Page on Facebook Tweet about EERE: Alternative Fuels Data Center Home Page on Twitter Bookmark EERE: Alternative Fuels Data Center Home Page onYou are now leaving Energy.gov You are now leaving Energy.gov You are being directedAnnualProperty Edit with form History Facebook iconQuito, Ecuador: EnergyRAPID/Roadmap/12-FD-h-CO-a

  1. RAPID/Roadmap/5 | Open Energy Information

    Open Energy Info (EERE)

    AFDC Printable Version Share this resource Send a link to EERE: Alternative Fuels Data Center Home Page to someone by E-mail Share EERE: Alternative Fuels Data Center Home Page on Facebook Tweet about EERE: Alternative Fuels Data Center Home Page on Twitter Bookmark EERE: Alternative Fuels Data Center Home Page onYou are now leaving Energy.gov You are now leaving Energy.gov You are being directedAnnualProperty Edit with form History Facebook iconQuito, Ecuador:RAPID/Roadmap/19-CO-c <dg <

  2. RRTT - Rapid Response Team for Transmission

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

    AFDC Printable Version Share this resource Send a link to EERE: Alternative Fuels Data Center Home Page to someone by E-mail Share EERE: Alternative Fuels Data Center Home Page on Facebook Tweet about EERE: Alternative Fuels Data Center Home Page on Twitter Bookmark EERE: Alternative1 First Use of Energy for All Purposes (Fuel and Nonfuel), 2002; Level: National5Sales for4,645 3,625 1,006 492 742EnergyOn April 23, 2014, an OHASeptember 2010In addition to 1 |D I S P URFIof Clean EnergyRapid

  3. RAPID/Roadmap/Geothermal | Open Energy Information

    Open Energy Info (EERE)

    AFDC Printable Version Share this resource Send a link to EERE: Alternative Fuels Data Center Home Page to someone by E-mail Share EERE: Alternative Fuels Data Center Home Page on Facebook Tweet about EERE: Alternative Fuels Data Center Home Page on Twitter Bookmark EERE: Alternative Fuels Data Center Home Page onYou are now leaving Energy.gov You are now leaving Energy.gov You are beingZealand Jump to:Ezfeedflag JumpID-f < RAPID‎ | Roadmap Jump to:b < RAPID‎ |RAPID/Roadmap/Geothermal

  4. Rapid Scan AERI Observations: Benefits and Analysis

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

    AFDC Printable Version Share this resource Send a link to EERE: Alternative Fuels Data Center Home Page to someone by E-mail Share EERE: Alternative Fuels Data Center Home Page on Facebook Tweet about EERE: Alternative Fuels Data Center Home Page on Twitter Bookmark EERE: Alternative1 First Use of Energy for All Purposes (Fuel and Nonfuel), 2002; Level:Energy: Grid Integration Redefining What's PossibleRadiation Protection Radiation ProtectionRaising funds for a cureEnergy StorageRapid Scan

  5. RAPID/About | Open Energy Information

    Open Energy Info (EERE)

    AFDC Printable Version Share this resource Send a link to EERE: Alternative Fuels Data Center Home Page to someone by E-mail Share EERE: Alternative Fuels Data Center Home Page on Facebook Tweet about EERE: Alternative Fuels Data Center Home Page on Twitter Bookmark EERE: Alternative Fuels Data Center Home Page onYou are now leaving Energy.gov You are now leaving Energy.gov YouKizildere I GeothermalPotentialBiopowerSolidGenerationMethod JumpGeorgia: Energy Resources JumpRAM CapitalRAPID/About

  6. RAPID/Outreach | Open Energy Information

    Open Energy Info (EERE)

    AFDC Printable Version Share this resource Send a link to EERE: Alternative Fuels Data Center Home Page to someone by E-mail Share EERE: Alternative Fuels Data Center Home Page on Facebook Tweet about EERE: Alternative Fuels Data Center Home Page on Twitter Bookmark EERE: Alternative Fuels Data Center Home Page onYou are now leaving Energy.gov You are now leaving Energy.gov YouKizildere I GeothermalPotentialBiopowerSolidGenerationMethodInformation Texas <Field <NewRAPID/Outreach <

  7. RAPID/Overview | Open Energy Information

    Open Energy Info (EERE)

    AFDC Printable Version Share this resource Send a link to EERE: Alternative Fuels Data Center Home Page to someone by E-mail Share EERE: Alternative Fuels Data Center Home Page on Facebook Tweet about EERE: Alternative Fuels Data Center Home Page on Twitter Bookmark EERE: Alternative Fuels Data Center Home Page onYou are now leaving Energy.gov You are now leaving Energy.gov YouKizildere I GeothermalPotentialBiopowerSolidGenerationMethodInformation Texas <Field <NewRAPID/Outreach

  8. RAPID/Roadmap/14 | Open Energy Information

    Open Energy Info (EERE)

    AFDC Printable Version Share this resource Send a link to EERE: Alternative Fuels Data Center Home Page to someone by E-mail Share EERE: Alternative Fuels Data Center Home Page on Facebook Tweet about EERE: Alternative Fuels Data Center Home Page on Twitter Bookmark EERE: Alternative Fuels Data Center Home Page onYou are now leaving Energy.gov You are now leaving Energy.gov YouKizildere I GeothermalPotentialBiopowerSolidGenerationMethodInformation TexasTexas)ID-a <RAPID/Roadmap/14 <

  9. RAPID/Roadmap/9 | Open Energy Information

    Open Energy Info (EERE)

    AFDC Printable Version Share this resource Send a link to EERE: Alternative Fuels Data Center Home Page to someone by E-mail Share EERE: Alternative Fuels Data Center Home Page on Facebook Tweet about EERE: Alternative Fuels Data Center Home Page on Twitter Bookmark EERE: Alternative Fuels Data Center Home Page onYou are now leaving Energy.gov You are now leaving Energy.gov YouKizildere I GeothermalPotentialBiopowerSolidGenerationMethodInformatione <RAPID/Roadmap/7-FD-kc < <

  10. RAPID/Roadmap/Coverage | Open Energy Information

    Open Energy Info (EERE)

    AFDC Printable Version Share this resource Send a link to EERE: Alternative Fuels Data Center Home Page to someone by E-mail Share EERE: Alternative Fuels Data Center Home Page on Facebook Tweet about EERE: Alternative Fuels Data Center Home Page on Twitter Bookmark EERE: Alternative Fuels Data Center Home Page onYou are now leaving Energy.gov You are now leaving Energy.gov YouKizildere I GeothermalPotentialBiopowerSolidGenerationMethodInformatione <RAPID/Roadmap/7-FD-kcFD-i

  11. RAPID/Roadmap/Geo | Open Energy Information

    Open Energy Info (EERE)

    AFDC Printable Version Share this resource Send a link to EERE: Alternative Fuels Data Center Home Page to someone by E-mail Share EERE: Alternative Fuels Data Center Home Page on Facebook Tweet about EERE: Alternative Fuels Data Center Home Page on Twitter Bookmark EERE: Alternative Fuels Data Center Home Page onYou are now leaving Energy.gov You are now leaving Energy.gov YouKizildere I GeothermalPotentialBiopowerSolidGenerationMethodInformatione <RAPID/Roadmap/7-FD-kcFD-iGeo <

  12. RAPID/Solar | Open Energy Information

    Open Energy Info (EERE)

    AFDC Printable Version Share this resource Send a link to EERE: Alternative Fuels Data Center Home Page to someone by E-mail Share EERE: Alternative Fuels Data Center Home Page on Facebook Tweet about EERE: Alternative Fuels Data Center Home Page on Twitter Bookmark EERE: Alternative Fuels Data Center Home Page onYou are now leaving Energy.gov You are now leaving Energy.gov YouKizildere I GeothermalPotentialBiopowerSolidGenerationMethodInformatione <RAPID/Roadmap/7-FD-kcFD-iGeo

  13. Rapid prototyping in early stages of architectural design

    E-Print Network [OSTI]

    Simondetti, Alvise

    1997-01-01T23:59:59.000Z

    This thesis shows how architects can use Rapid Prototyping and what the advantages and disadvantages are in different manipulations of the tool. Chapter two attempts to chart a road map of the rapid prototyping media. The ...

  14. Light curves from rapidly rotating neutron stars

    E-Print Network [OSTI]

    Numata, Kazutoshi

    2010-01-01T23:59:59.000Z

    We calculate light curves produced by a hot spot of a rapidly rotating neutron star, assuming that the spot is perturbed by a core $r$-mode, which is destabilized by emitting gravitational waves. To calculate light curves, we take account of relativistic effects such as the Doppler boost due to the rapid rotation and light bending assuming the Schwarzschild metric around the neutron star. We assume that the core $r$-modes penetrate to the surface fluid ocean to have sufficiently large amplitudes to disturb the spot. For a $l'=m$ core $r$-mode, the oscillation frequency $\\omega\\approx2m\\Omega/[l'(l'+1)]$ defined in the co-rotating frame of the star will be detected by a distant observer, where $l'$ and $m$ are respectively the spherical harmonic degree and the azimuthal wave number of the mode, and $\\Omega$ is the spin frequency of the star. In a linear theory of oscillation, using a parameter $A$ we parametrize the mode amplitudes such that ${\\rm max}\\left(|\\xi_\\theta|,|\\xi_\\phi|\\right)/R=A$ at the surface, w...

  15. RAPID DETERMINATION OF RADIOSTRONTIUM IN SEAWATER SAMPLES

    SciTech Connect (OSTI)

    Maxwell, S.

    2013-01-16T23:59:59.000Z

    A new method for the determination of radiostrontium in seawater samples has been developed at the Savannah River National Laboratory (SRNL) that allows rapid preconcentration and separation of strontium and yttrium isotopes in seawater samples for measurement. The new SRNL method employs a novel and effective pre-concentration step that utilizes a blend of calcium phosphate with iron hydroxide to collect both strontium and yttrium rapidly from the seawater matrix with enhanced chemical yields. The pre-concentration steps, in combination with rapid Sr Resin and DGA Resin cartridge separation options using vacuum box technology, allow seawater samples up to 10 liters to be analyzed. The total {sup 89}Sr + {sup 90}Sr activity may be determined by gas flow proportional counting and recounted after ingrowth of {sup 90}Y to differentiate {sup 89}Sr from {sup 90}Sr. Gas flow proportional counting provides a lower method detection limit than liquid scintillation or Cerenkov counting and allows simultaneous counting of samples. Simultaneous counting allows for longer count times and lower method detection limits without handling very large aliquots of seawater. Seawater samples up to 6 liters may be analyzed using Sr Resin for {sup 89}Sr and {sup 90}Sr with a Minimum Detectable Activity (MDA) of 1-10 mBq/L, depending on count times. Seawater samples up to 10 liters may be analyzed for {sup 90}Sr using a DGA Resin method via collection and purification of {sup 90}Y only. If {sup 89}Sr and other fission products are present, then {sup 91}Y (beta energy 1.55 MeV, 58.5 day half-life) is also likely to be present. {sup 91}Y interferes with attempts to collect {sup 90}Y directly from the seawater sample without initial purification of Sr isotopes first and {sup 90}Y ingrowth. The DGA Resin option can be used to determine {sup 90}Sr, and if {sup 91}Y is also present, an ingrowth option with using DGA Resin again to collect {sup 90}Y can be performed. An MDA for {sup 90}Sr of <1 mBq/L for an 8 hour count may be obtained using 10 liter seawater sample aliquots.

  16. Metals Production Requirements for Rapid Photovoltaics Deployment

    E-Print Network [OSTI]

    Kavlak, Goksin; Jaffe, Robert L; Trancik, Jessika E

    2015-01-01T23:59:59.000Z

    If global photovoltaics (PV) deployment grows rapidly, the required input materials need to be supplied at an increasing rate. In this paper, we quantify the effect of PV deployment levels on the scale of metals production. For example, we find that if cadmium telluride {copper indium gallium diselenide} PV accounts for more than 3% {10%} of electricity generation by 2030, the required growth rates for the production of indium and tellurium would exceed historically-observed production growth rates for a large set of metals. In contrast, even if crystalline silicon PV supplies all electricity in 2030, the required silicon production growth rate would fall within the historical range. More generally, this paper highlights possible constraints to the rate of scaling up metals production for some PV technologies, and outlines an approach to assessing projected metals growth requirements against an ensemble of past growth rates from across the metals production sector. The framework developed in this paper may be...

  17. Rapidly Moving Divertor Plates In A Tokamak

    SciTech Connect (OSTI)

    S. Zweben

    2011-05-16T23:59:59.000Z

    It may be possible to replace conventional actively cooled tokamak divertor plates with a set of rapidly moving, passively cooled divertor plates on rails. These plates would absorb the plasma heat flux with their thermal inertia for ~10-30 sec, and would then be removed from the vessel for processing. When outside the tokamak, these plates could be cooled, cleaned, recoated, inspected, and then returned to the vessel in an automated loop. This scheme could provide nearoptimal divertor surfaces at all times, and avoid the need to stop machine operation for repair of damaged or eroded plates. We describe various possible divertor plate designs and access geometries, and discuss an initial design for a movable and removable divertor module for NSTX-U.

  18. L01204050009 L01204050008

    E-Print Network [OSTI]

    7280 7280 stormdrain stormdrain stormdrain 1 LOMA VISTA DR 2201 TRINITY DR 2201 TRINITY DR 2155 TRINITY DR 2101 TRINITY DR 2237 TRINITY DR 2201 TRINITY DR 1 LOS ARBOLES DR 2201 TRINITY DR 2101 TRINITY DR 2075 TRINITY DR 1 LOS ARBOLES DR 2075 TRINITY DR 1925 TRINITY DR 2075 TRINITY DR 1624000 1624000

  19. Accelerated Lambda Iteration in Rapidly Expanding Envelopes

    E-Print Network [OSTI]

    P. Hoeflich

    2002-07-04T23:59:59.000Z

    We discuss the current implementation of the ALI method into our HYDrodynamical RAdiation(HYDRA) code for rapidly expanding, low density envelopes commonly found in core collapse and thermonuclear supernovae, novae and WR stars. Due to the low densities, non-thermal excitation by high energy photons (e.g. by radioactive decays) and the time dependence of the problem, large departures from LTE are common throughout the envelope even at large optical depths. ALI is instrumental for both the coupling of the statistical equations and the hydrodynamical equations with the radiation transport (RT). We employ several concepts to improve the stability, and convergence rate/control including the concept of leading elements, the use of net rates, level locking, reconstruction of global photon redistribution functions, equivalent-2-level approach, and predictive corrector methods. For appropriate conditions, the solution of the time-dependent rate equations can be reduced to the time-independent problem plus an analytic solution of an ODE For the 3-D problem, we solve the radiation transport via the moment equations. To construct the Eddington tensor elements, we use a Monte Carlo scheme to determine the deviation of the solution of the RT equation from the diffusion approximation (ALI of second kind). At the example of a thermonuclear supernova (SN99by),we show an analysis of light light curves, flux and polarization spectra and discuss the limitations of our approach.

  20. RAPID DYNAMICAL CHAOS IN AN EXOPLANETARY SYSTEM

    SciTech Connect (OSTI)

    Deck, Katherine M.; Winn, Joshua N. [Department of Physics and Kavli Institute for Astrophysics and Space Research, Massachusetts Institute of Technology, 77 Massachusetts Avenue, Cambridge, MA 02139 (United States); Holman, Matthew J.; Carter, Joshua A.; Ragozzine, Darin [Harvard-Smithsonian Center for Astrophysics, 60 Garden Street, Cambridge, MA 02138 (United States); Agol, Eric [Department of Astronomy, Box 351580, University of Washington, Seattle, WA 98195 (United States); Lissauer, Jack J. [NASA Ames Research Center, Moffet Field, CA 94035 (United States)

    2012-08-10T23:59:59.000Z

    We report on the long-term dynamical evolution of the two-planet Kepler-36 system, which consists of a super-Earth and a sub-Neptune in a tightly packed orbital configuration. The orbits of the planets, which we studied through numerical integrations of initial conditions that are consistent with observations of the system, are chaotic with a Lyapunov time of only {approx}10 years. The chaos is a consequence of a particular set of orbital resonances, with the inner planet orbiting 34 times for every 29 orbits of the outer planet. The rapidity of the chaos is due to the interaction of the 29:34 resonance with the nearby first-order 6:7 resonance, in contrast to the usual case in which secular terms in the Hamiltonian play a dominant role. Only one contiguous region of phase space, accounting for {approx}4.5% of the sample of initial conditions studied, corresponds to planetary orbits that do not show large-scale orbital instabilities on the timescale of our integrations ({approx}200 million years). Restricting the orbits to this long-lived region allows a refinement of estimates of the masses and radii of the planets. We find that the long-lived region consists of the initial conditions that satisfy the Hill stability criterion by the largest margin. Any successful theory for the formation of this system will need to account for why its current state is so close to unstable regions of phase space.

  1. Rapid Characterization of Drill Core and Cutting Mineralogy using...

    Open Energy Info (EERE)

    Characterization of Drill Core and Cutting Mineralogy using Infrared Spectroscopy Jump to: navigation, search OpenEI Reference LibraryAdd to library Journal Article: Rapid...

  2. area rapid transit: Topics by E-print Network

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

    AWARD FOR RAPID TRANSITION (BSTART) (R03) Funding Opportunity Number: PAR-12-251. CFDA Number(s): 93.279. Engineering Websites Summary: Services, National Institutes of...

  3. Rapid electron exchange between surface-exposed bacterial cytochromes...

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

    electron exchange between surface-exposed bacterial cytochromes and Fe(III) minerals. Rapid electron exchange between surface-exposed bacterial cytochromes and Fe(III) minerals....

  4. Rapid Modeling of Power Electronics Thermal Management Technologies: Preprint

    SciTech Connect (OSTI)

    Bennion, K.; Kelly, K.

    2009-08-01T23:59:59.000Z

    Describes a method of rapidly evaluating trade-offs associated with alternative packaging configurations and thermal management technologies for power electronics packaging.

  5. City of Grand Rapids- Green Building Requirements for Municipal Buildings

    Broader source: Energy.gov [DOE]

    In January 2006, the City of Grand Rapids approved a resolution detailing the city's sustainability policy for public buildings. The resolution directed city personnel to implement the principles...

  6. Rapid characterization of drill core and cutting mineralogy using...

    Open Energy Info (EERE)

    characterization of drill core and cutting mineralogy using infrared spectroscopy Jump to: navigation, search OpenEI Reference LibraryAdd to library Journal Article: Rapid...

  7. Sustainable Urban Development Priorities - Development of a Rapid...

    Open Energy Info (EERE)

    in Cities with Data Scarcity Jump to: navigation, search Tool Summary LAUNCH TOOL Name: Sustainable Urban Development Priorities - Development of a Rapid Assessment Tool for...

  8. Productive Economy InternetMobilephonesBudgetanalysisGreeneconomyRapid

    E-Print Network [OSTI]

    Berzins, M.

    manufacturing work 1990s A new process, `Selective Laser Sintering', paves way for rapid manufacture of productsProductive Economy InternetMobilephonesBudgetanalysisGreeneconomyRapid manufacturing 1967 UK computer design files ­ using plastic lays foundation for new low-cost, low- waste manufacturing techniques

  9. Photogrammetry Assisted Rapid Measurement of Earthquake-Induced Building Damage

    E-Print Network [OSTI]

    Kamat, Vineet R.

    Photogrammetry Assisted Rapid Measurement of Earthquake-Induced Building Damage Fei Dai, PhD Hong for rapidly measuring structural damage induced in tall buildings by seismic events such as earthquakes) sustained at key floors along the edge of a damaged building. The measured drift can then be used to compute

  10. Rapid Scan Humidified Growth Cloud Condensation Nuclei Counter

    SciTech Connect (OSTI)

    Gregory L. Kok; Athanasios Nenes

    2013-03-13T23:59:59.000Z

    This research focused on enhancements to the streamwise thermal gradient cloud condensation nuclei counter to support the rapid scan mode and to enhance the capability for aerosol humidified growth measurements. The research identified the needs for flow system modifications and range of capability for operating the conventional instrument in the rapid scan and humidified growth modes.

  11. Phenotypic plasticity facilitates recurrent rapid adaptation to introduced predators

    E-Print Network [OSTI]

    Pfrender, Michael

    Phenotypic plasticity facilitates recurrent rapid adaptation to introduced predators Alison G) A central role for phenotypic plasticity in adaptive evolution is often posited yet lacks empirical support of preexisting developmental pathways, producing rapid adaptive change. We examined the role of plasticity

  12. Rapidity gaps in jet events at D0

    SciTech Connect (OSTI)

    Abbott, B. [New York Univ., NY (United States); Abolins, M. [Michigan State Univ., East Lansing, MI (United States); Acharya, B.S. [Delhi Univ. (India)] [and others; D0 Collaboration

    1997-07-01T23:59:59.000Z

    Preliminary results from the D0 experiment on jet production with rapidity gaps in p{anti p} collisions are presented. A class of dijet events with a forward rapidity gap is observed at center-of-mass energies {radical}s = 1800 GeV and 630 GeV. The number of events with rapidity gaps at both center-of-mass energies is significantly greater than the expectation from multiplicity fluctuations and is consistent with a hard diffractive process. A class of events with two forward gaps and central dijets is also observed at 1800 GeV. This topology is consistent with hard double pomeron exchange.

  13. METHOD Open Access Rapid haplotype inference for nuclear families

    E-Print Network [OSTI]

    Gifford, David K.

    METHOD Open Access Rapid haplotype inference for nuclear families Amy L Williams1* , David E-recombinant and maximum likelihood haplotypes. When applied to a dataset con- taining 103 families, Hapi performs 3

  14. Growth in metals production for rapid photovoltaics deployment

    E-Print Network [OSTI]

    Kavlak, Goksin

    If global photovoltaics (PV) deployment grows rapidly, the required input materials need to be supplied at an increasing rate. We quantify the effect of PV deployment levels on the scale of annual metals production. If a ...

  15. Update on Breakout Sessions: Rapid City & Oklahoma City

    Broader source: Energy.gov [DOE]

    Presentation covers an update on the Rapid City and Oklahoma breakout sessions and is given at the FUPWG 2006 Spring meeting, held on May 3-4, 2006 in Atlanta, Georgia.

  16. Title of dissertation: TURBULENT SHEAR FLOW IN A RAPIDLY ROTATING

    E-Print Network [OSTI]

    Lathrop, Daniel P.

    ABSTRACT Title of dissertation: TURBULENT SHEAR FLOW IN A RAPIDLY ROTATING SPHERICAL ANNULUS Daniel S. Zimmerman, Doctor of Philosophy, 2010 Dissertation directed by: Professor Daniel P. Lathrop Department of Physics This dissertation presents experimental measurements of torque, wall shear stress

  17. Rapid screening of novel nanoporous materials for carbon capture separations 

    E-Print Network [OSTI]

    Mangano, Enzo

    2013-07-01T23:59:59.000Z

    In this work the experimental results from the rapid screening and ranking of a wide range of novel adsorbents for carbon capture are presented. The samples were tested using the Zero Length Column (ZLC) method which has ...

  18. Production of jets at forward rapidities in hadronic collisions

    E-Print Network [OSTI]

    F. Hautmann

    2009-09-07T23:59:59.000Z

    We discuss high-pT production processes at forward rapidities in hadron-hadron collisions, and describe recent results from using QCD high-energy factorization in forward jet production at the LHC.

  19. Discreteness and resolution effects in rapidly rotating turbulence

    E-Print Network [OSTI]

    Bourouiba, Lydia

    Rotating turbulence is characterized by the nondimensional Rossby number Ro, which is a measure of the strength of the Coriolis term relative to that of the nonlinear term. For rapid rotation (Ro?0), nonlinear interactions ...

  20. Rapidity evolution of gluon TMD from low to moderate x

    E-Print Network [OSTI]

    I. Balitsky; A. Tarasov

    2015-05-08T23:59:59.000Z

    We study how the rapidity evolution of gluon transverse momentum dependent distribution changes from nonlinear evolution at small $x \\ll 1$ to linear evolution at moderate $x \\sim 1$.

  1. Rapid Replication of High Aspect Ratio Molds for UV Embossing

    E-Print Network [OSTI]

    Yan, Yehai

    This paper describes a promising fabrication technique for rapid replication of high aspect ratio microstructured molds for UV embossing. The process involves casting silicone rubber on a microstructured master, replicating ...

  2. City of Grand Rapids- Green Power Purchasing Policy

    Broader source: Energy.gov [DOE]

    In 2005, the City of Grand Rapids established a goal of purchasing 20% of its municipal power demand from renewable energy by 2008. In November 2007, the city signed a three-year agreement with a...

  3. Development of an advanced nanocalorimetry system for rapid material characterizations

    E-Print Network [OSTI]

    Liu, Yen-Shan

    2007-04-25T23:59:59.000Z

    The development of a versatile system capable of providing rapid, portable, and inexpensive detection of explosives and energetic compounds is needed critically to offer an enhanced level of protection against current and future threats to homeland...

  4. RAPID DETERMINATION OF {sup 210} PO IN WATER SAMPLES

    SciTech Connect (OSTI)

    Maxwell, S.

    2013-05-22T23:59:59.000Z

    A new rapid method for the determination of {sup 210}Po in water samples has been developed at the Savannah River National Laboratory (SRNL) that can be used for emergency response or routine water analyses. If a radiological dispersive device (RDD) event or a radiological attack associated with drinking water supplies occurs, there will be an urgent need for rapid analyses of water samples, including drinking water, ground water and other water effluents. Current analytical methods for the assay of {sup 210}Po in water samples have typically involved spontaneous auto-deposition of {sup 210}Po onto silver or other metal disks followed by counting by alpha spectrometry. The auto-deposition times range from 90 minutes to 24 hours or more, at times with yields that may be less than desirable. If sample interferences are present, decreased yields and degraded alpha spectrums can occur due to unpredictable thickening in the deposited layer. Separation methods have focused on the use of Sr Resin?, often in combination with 210Pb analysis. A new rapid method for {sup 210}Po in water samples has been developed at the Savannah River National Laboratory (SRNL) that utilizes a rapid calcium phosphate co-precipitation method, separation using DGA Resin? (N,N,N?,N? tetraoctyldiglycolamide extractant-coated resin, Eichrom Technologies or Triskem-International), followed by rapid microprecipitation of {sup 210}Po using bismuth phosphate for counting by alpha spectrometry. This new method can be performed quickly with excellent removal of interferences, high chemical yields and very good alpha peak resolution, eliminating any potential problems with the alpha source preparation for emergency or routine samples. A rapid sequential separation method to separate {sup 210} Po and actinide isotopes was also developed. This new approach, rapid separation with DGA Resin plus microprecipitation for alpha source preparation, is a significant advance in radiochemistry for the rapid determination of {sup 210}Po.

  5. Rapid prototyping: A paradigm shift in investment casting

    SciTech Connect (OSTI)

    Atwood, C.L.; Maguire, M.C.; Baldwin, M.D.; Pardo, B.T.

    1996-09-01T23:59:59.000Z

    The quest for fabricating complex metal parts rapidly and with minimal cost has brought rapid prototyping (RP) processes to the forefront of the investment casting industry. Relatively recent advances in DTM Corporation`s selective laser sintering (SLS) and 3D Systems stereolithography (SL) processes have had a significant impact on the overall quality of patterns produced using these rapid prototyping processes. Sandia National Laboratories uses patterns generated from rapid prototyping processes to reduce the cycle time and cost of fabricating prototype and small lot production parts in support of a program called FASTCAST. The SLS process is used to fabricate patterns from materials such as investment casting wax, polycarbonate, and a new material called TrueForm PM{trademark}. With the timely introduction of each of these materials, the quality of patterns fabricated has improved. The development and implementation of SL QuickCast{trademark} software has enabled this process to produce highly accurate patterns for use in investment casting. This paper focuses on the successes with these new pattern materials and the infrastructure required to cast rapid prototyping patterns successfully. In addition, a brief overview of other applications of rapid prototyping at Sandia will be discussed.

  6. Rapidity resummation for $B$-meson wave functions

    E-Print Network [OSTI]

    Yue-Long Shen; Yu-Ming Wang

    2014-09-03T23:59:59.000Z

    Transverse-momentum dependent (TMD) hadronic wave functions develop light-cone divergences under QCD corrections, which are commonly regularized by the rapidity $\\zeta$ of gauge vector defining the non-light-like Wilson lines. The yielding rapidity logarithms from infrared enhancement need to be resummed for both hadronic wave functions and short-distance functions, to achieve scheme-independent calculations of physical quantities. We briefly review the recent progress on the rapidity resummation for $B$-meson wave functions which are the key ingredients of TMD factorization formulae for radiative-leptonic, semi-leptonic and non-leptonic $B$-meson decays. The crucial observation is that rapidity resummation induces a strong suppression of $B$-meson wave functions at small light-quark momentum, strengthening the applicability of TMD factorization in exclusive $B$-meson decays. The phenomenological consequence of rapidity-resummation improved $B$-meson wave functions is further discussed in the context of $B \\to \\pi$ transition form factors at large hadronic recoil.

  7. Regulatory and Permitting Information Desktop (RAPID) Toolkit (Poster)

    SciTech Connect (OSTI)

    Young, K. R.; Levine, A.

    2014-09-01T23:59:59.000Z

    The Regulatory and Permitting Information Desktop (RAPID) Toolkit combines the former Geothermal Regulatory Roadmap, National Environmental Policy Act (NEPA) Database, and other resources into a Web-based tool that gives the regulatory and utility-scale geothermal developer communities rapid and easy access to permitting information. RAPID currently comprises five tools - Permitting Atlas, Regulatory Roadmap, Resource Library, NEPA Database, and Best Practices. A beta release of an additional tool, the Permitting Wizard, is scheduled for late 2014. Because of the huge amount of information involved, RAPID was developed in a wiki platform to allow industry and regulatory agencies to maintain the content in the future so that it continues to provide relevant and accurate information to users. In 2014, the content was expanded to include regulatory requirements for utility-scale solar and bulk transmission development projects. Going forward, development of the RAPID Toolkit will focus on expanding the capabilities of current tools, developing additional tools, including additional technologies, and continuing to increase stakeholder involvement.

  8. Methods and systems for rapid prototyping of high density circuits

    DOE Patents [OSTI]

    Palmer, Jeremy A. (Albuquerque, NM); Davis, Donald W. (Albuquerque, NM); Chavez, Bart D. (Albuquerque, NM); Gallegos, Phillip L. (Albuquerque, NM); Wicker, Ryan B. (El Paso, TX); Medina, Francisco R. (El Paso, TX)

    2008-09-02T23:59:59.000Z

    A preferred embodiment provides, for example, a system and method of integrating fluid media dispensing technology such as direct-write (DW) technologies with rapid prototyping (RP) technologies such as stereolithography (SL) to provide increased micro-fabrication and micro-stereolithography. A preferred embodiment of the present invention also provides, for example, a system and method for Rapid Prototyping High Density Circuit (RPHDC) manufacturing of solderless connectors and pilot devices with terminal geometries that are compatible with DW mechanisms and reduce contact resistance where the electrical system is encapsulated within structural members and manual electrical connections are eliminated in favor of automated DW traces. A preferred embodiment further provides, for example, a method of rapid prototyping comprising: fabricating a part layer using stereolithography and depositing thermally curable media onto the part layer using a fluid dispensing apparatus.

  9. RAPID METHOD FOR DETERMINATION OF RADIOSTRONTIUM IN EMERGENCY MILK SAMPLES

    SciTech Connect (OSTI)

    Maxwell, S.; Culligan, B.

    2008-07-17T23:59:59.000Z

    A new rapid separation method for radiostrontium in emergency milk samples was developed at the Savannah River Site (SRS) Environmental Bioassay Laboratory (Aiken, SC, USA) that will allow rapid separation and measurement of Sr-90 within 8 hours. The new method uses calcium phosphate precipitation, nitric acid dissolution of the precipitate to coagulate residual fat/proteins and a rapid strontium separation using Sr Resin (Eichrom Technologies, Darien, IL, USA) with vacuum-assisted flow rates. The method is much faster than previous method that use calcination or cation exchange pretreatment, has excellent chemical recovery, and effectively removes beta interferences. When a 100 ml sample aliquot is used, the method has a detection limit of 0.5 Bq/L, well below generic emergency action levels.

  10. Staged venting of fuel cell system during rapid shutdown

    DOE Patents [OSTI]

    Clingerman, Bruce J. (Palmyra, NY); Doan, Tien M. (Columbia, MD); Keskula, Donald H. (Webster, NY)

    2002-01-01T23:59:59.000Z

    A venting methodology and system for rapid shutdown of a fuel cell apparatus of the type used in a vehicle propulsion system. H.sub.2 and air flows to the fuel cell stack are slowly bypassed to the combustor upon receipt of a rapid shutdown command. The bypass occurs over a period of time (for example one to five seconds) using conveniently-sized bypass valves. Upon receipt of the rapid shutdown command, the anode inlet of the fuel cell stack is instantaneously vented to a remote vent to remove all H.sub.2 from the stack. Airflow to the cathode inlet of the fuel cell stack gradually diminishes over the bypass period, and when the airflow bypass is complete the cathode inlet is also instantaneously vented to a remote vent to eliminate pressure differentials across the stack.

  11. Staged venting of fuel cell system during rapid shutdown

    DOE Patents [OSTI]

    Keskula, Donald H.; Doan, Tien M.; Clingerman, Bruce J.

    2004-09-14T23:59:59.000Z

    A venting methodology and system for rapid shutdown of a fuel cell apparatus of the type used in a vehicle propulsion system. H.sub.2 and air flows to the fuel cell stack are slowly bypassed to the combustor upon receipt of a rapid shutdown command. The bypass occurs over a period of time (for example one to five seconds) using conveniently-sized bypass valves. Upon receipt of the rapid shutdown command, the anode inlet of the fuel cell stack is instantaneously vented to a remote vent to remove all H.sub.2 from the stack. Airflow to the cathode inlet of the fuel cell stack gradually diminishes over the bypass period, and when the airflow bypass is complete the cathode inlet is also instantaneously vented to a remote vent to eliminate pressure differentials across the stack.

  12. Supernova Seismology: Gravitational Wave Signatures of Rapidly Rotating Core Collapse

    E-Print Network [OSTI]

    Fuller, Jim; Abdikamalov, Ernazar; Ott, Christian

    2015-01-01T23:59:59.000Z

    Gravitational waves (GW) generated during a core-collapse supernova open a window into the heart of the explosion. At core bounce, progenitors with rapid core rotation rates exhibit a characteristic GW signal which can be used to constrain the properties of the core of the progenitor star. We investigate the dynamics of rapidly rotating core collapse, focusing on hydrodynamic waves generated by the core bounce and the GW spectrum they produce. The centrifugal distortion of the rapidly rotating proto-neutron star (PNS) leads to the generation of axisymmetric quadrupolar oscillations within the PNS and surrounding envelope. Using linear perturbation theory, we estimate the frequencies, amplitudes, damping times, and GW spectra of the oscillations. Our analysis provides a qualitative explanation for several features of the GW spectrum and shows reasonable agreement with nonlinear hydrodynamic simulations, although a few discrepancies due to non-linear/rotational effects are evident. The dominant early postbounce...

  13. Rapid Gas Hydrate Formation Processes: Will They Work?

    SciTech Connect (OSTI)

    Brown, T.D.; Taylor, C.E.; Bernardo, M.P.

    2010-01-01T23:59:59.000Z

    Researchers at DOE’s National Energy Technology Laboratory (NETL) have been investigating the formation of synthetic gas hydrates, with an emphasis on rapid and continuous hydrate formation techniques. The investigations focused on unconventional methods to reduce dissolution, induction, nucleation and crystallization times associated with natural and synthetic hydrates studies conducted in the laboratory. Numerous experiments were conducted with various high-pressure cells equipped with instrumentation to study rapid and continuous hydrate formation. The cells ranged in size from 100 mL for screening studies to proof-of-concept studies with NETL’s 15-Liter Hydrate Cell. Results from this work demonstrate that the rapid and continuous formation of methane hydrate is possible at predetermined temperatures and pressures within the stability zone of a Methane Hydrate Stability Curve (see Figure 1).

  14. Rapid Gas Hydrate Formation Processes: Will They Work?

    DOE Public Access Gateway for Energy & Science Beta (PAGES Beta)

    Brown, Thomas D.; Taylor, Charles E.; Bernardo, Mark P.

    2010-06-01T23:59:59.000Z

    Researchers at DOE’s National Energy Technology Laboratory (NETL) have been investigating the formation of synthetic gas hydrates, with an emphasis on rapid and continuous hydrate formation techniques. The investigations focused on unconventional methods to reduce dissolution, induction, nucleation and crystallization times associated with natural and synthetic hydrates studies conducted in the laboratory. Numerous experiments were conducted with various high-pressure cells equipped with instrumentation to study rapid and continuous hydrate formation. The cells ranged in size from 100 mL for screening studies to proof-of-concept studies with NETL’s 15-Liter Hydrate Cell. Results from this work demonstrate that the rapid and continuous formationmore »of methane hydrate is possible at predetermined temperatures and pressures within the stability zone of a Methane Hydrate Stability Curve.« less

  15. Rapidity gap survival in the black-disk regime

    SciTech Connect (OSTI)

    Leonid Frankfurt; Charles Hyde; Mark Strikman; Christian Weiss

    2007-04-16T23:59:59.000Z

    We summarize how the approach to the black-disk regime (BDR) of strong interactions at TeV energies influences rapidity gap survival in exclusive hard diffraction pp -> p + H + p (H = dijet, Qbar Q, Higgs). Employing a recently developed partonic description of such processes, we discuss (a) the suppression of diffraction at small impact parameters by soft spectator interactions in the BDR; (b) further suppression by inelastic interactions of hard spectator partons in the BDR; (c) correlations between hard and soft interactions. Hard spectator interactions substantially reduce the rapidity gap survival probability at LHC energies compared to previously reported estimates.

  16. Property:RAPID/Contact/ID8/Website | Open Energy Information

    Open Energy Info (EERE)

    AFDC Printable Version Share this resource Send a link to EERE: Alternative Fuels Data Center Home Page to someone by E-mail Share EERE: Alternative Fuels Data Center Home Page on Facebook Tweet about EERE: Alternative Fuels Data Center Home Page on Twitter Bookmark EERE: Alternative Fuels Data Center Home Page onYou are now leaving Energy.gov You are now leaving Energy.gov You are beingZealand Jump to:Ezfeedflag Jump to:ID8/Organization RAPID/Contact/ID8/Position RAPID/Contact/ID8/Name

  17. Rapid Re-Housing and Short-Term Rental

    E-Print Network [OSTI]

    Snider, Barry B.

    Rapid Re-Housing and Short-Term Rental Vouchers for Homeless Families: Summary Report of a Pilot of numerous reports and publications, such as Bridges and Barriers to Housing for Chronically Homeless Street Dwellers; Accessing Housing: Exploring the Impact of Medical and Substance Abuse Services; The First Two

  18. RAPID COMMUNICATIONS PHYSICAL REVIEW A 87, 031801(R) (2013)

    E-Print Network [OSTI]

    Kuzmich, Alex

    2013-01-01T23:59:59.000Z

    for long-term light storage. The differential ac Stark shift of the ground-level microwave transition usedRAPID COMMUNICATIONS PHYSICAL REVIEW A 87, 031801(R) (2013) Light storage on the time scale, Georgia 30332-0430, USA (Received 20 December 2012; published 6 March 2013) Light storage on the minute

  19. Nursery Practices and Planting Stock: Aiming Towards Rapid

    E-Print Network [OSTI]

    low ­ Rapid pathogen buildup during storage at temps above 37F #12;Seedling handling: Cold storage. ­ Cold storage with careful handling and no desiccation reduced RGP by 18%; adding desiccation reduced in storage. #12;Seedling handling review: cold storage · Carbohydrates deplete over time, accelerated by heat

  20. Rapid location of mount points JONATHAN M. SMITH

    E-Print Network [OSTI]

    ­­ ­­ Rapid location of mount points JONATHAN M. SMITH Computer Science Department, Columbia ``core'' is ``/u2/smith/core''. The current directory is a directory­valued variable. It is an implied traversal; the root contains itself. This scheme is extensible across multiple media through mount points

  1. Icosahedral phase formation in rapidly quenched aluminum-ruthenium alloys

    E-Print Network [OSTI]

    Anlage, Steven

    Icosahedral phase formation in rapidly quenched aluminum- ruthenium alloys Steven M. Anlagea phases as a function of composition. We have chosen the aluminum-ruthenium alloy system because. %. The solidified alloys have been studied by electron microscopy and x-ray diffraction to determine

  2. RAPID COMMUNICATIONS PHYSICAL REVIEW B 84, 121410(R) (2011)

    E-Print Network [OSTI]

    2011-01-01T23:59:59.000Z

    RAPID COMMUNICATIONS PHYSICAL REVIEW B 84, 121410(R) (2011) Pairing in graphene: A quantum Monte superconductivity in graphene, we perform a systematic quantum Monte Carlo study of the pairing correlation in the t.10.Fd, 74.70.Wz, 74.20.Mn, 74.20.Rp Recently, graphene has attracted the attention of experimen- talists

  3. Rapid mapping of protein functional epitopes by combinatorial alanine scanning

    E-Print Network [OSTI]

    Weiss, Gregory A.

    Rapid mapping of protein functional epitopes by combinatorial alanine scanning Gregory A. Weiss for review March 2, 2000) A combinatorial alanine-scanning strategy was used to determine simultaneously previously determined by conventional alanine-scanning mutagenesis and suggest that this technology should

  4. A Rapid Scanning Inspection Method for Insulated Ferromagnetic Tubing

    E-Print Network [OSTI]

    Marsh, G. M.; Milewits, M.

    1984-01-01T23:59:59.000Z

    Until the present there has been no effective way to rapidly scan thermally insulated refinery or process piping for corrosion or thin wall. Such defects, if left unattended, can lead to wasteful losses of time, energy and money. To date the most...

  5. RAPID SEPARATION METHOD FOR ACTINIDES IN EMERGENCY SOIL SAMPLES

    SciTech Connect (OSTI)

    Maxwell, S.; Culligan, B.; Noyes, G.

    2009-11-09T23:59:59.000Z

    A new rapid method for the determination of actinides in soil and sediment samples has been developed at the Savannah River Site Environmental Lab (Aiken, SC, USA) that can be used for samples up to 2 grams in emergency response situations. The actinides in soil method utilizes a rapid sodium hydroxide fusion method, a lanthanum fluoride soil matrix removal step, and a streamlined column separation process with stacked TEVA, TRU and DGA Resin cartridges. Lanthanum was separated rapidly and effectively from Am and Cm on DGA Resin. Vacuum box technology and rapid flow rates are used to reduce analytical time. Alpha sources are prepared using cerium fluoride microprecipitation for counting by alpha spectrometry. The method showed high chemical recoveries and effective removal of interferences. This new procedure was applied to emergency soil samples received in the NRIP Emergency Response exercise administered by the National Institute for Standards and Technology (NIST) in April, 2009. The actinides in soil results were reported within 4-5 hours with excellent quality.

  6. RAPID SEPARATION OF ACTINIDES AND RADIOSTRONTIUM IN VEGETATION SAMPLES

    SciTech Connect (OSTI)

    Maxwell, S.

    2010-06-01T23:59:59.000Z

    A new rapid method for the determination of actinides and radiostrontium in vegetation samples has been developed at the Savannah River Site Environmental Lab (Aiken, SC, USA) that can be used in emergency response situations or for routine analysis. The actinides in vegetation method utilizes a rapid sodium hydroxide fusion method, a lanthanum fluoride matrix removal step, and a streamlined column separation process with stacked TEVA, TRU and DGA Resin cartridges. Lanthanum was separated rapidly and effectively from Am and Cm on DGA Resin. Alpha emitters are prepared using rare earth microprecipitation for counting by alpha spectrometry. The purified {sup 90}Sr fractions are mounted directly on planchets and counted by gas flow proportional counting. The method showed high chemical recoveries and effective removal of interferences. The actinide and {sup 90}Sr in vegetation sample analysis can be performed in less than 8 h with excellent quality for emergency samples. The rapid fusion technique is a rugged sample digestion method that ensures that any refractory actinide particles or vegetation residue after furnace heating is effectively digested.

  7. Expressive Visualization and Rapid Interpretation of Seismic Volumes

    E-Print Network [OSTI]

    Expressive Visualization and Rapid Interpretation of Seismic Volumes Daniel Patel Thesis, Christopher Giertsen, John Thurmond, Eduard Gr¨oller The Seismic Analyzer: Interpreting and Illustrating 2D of Seismic Data Published in: Vision, Modelling and Visualization (VMV) 2007 Authors: Daniel Patel

  8. China's rapid deployment of SO2 scrubbers Robert H. Williamsb

    E-Print Network [OSTI]

    at coal power plants in 2006 and 2007. Scrubbers were installed in each of these years at plants with more emissions control at coal power plants. This paper describes and seeks to understand China's recent rapid deployment of SO2 scrubbers at coal power plants. For perspective this activity in China is compared

  9. Early Events in Protein Folding Explored by Rapid Mixing Methods

    E-Print Network [OSTI]

    Roder, Heinrich

    15 Early Events in Protein Folding Explored by Rapid Mixing Methods Heinrich Roder, Kosuke Maki for Understanding Protein Folding As with any complex reaction, time-resolved data are essential for elucidating the mechanism of protein folding. Even in cases where the whole process of folding occurs in a single step

  10. Rapid Communications Strong piezoelectricity in individual GaN nanowires

    E-Print Network [OSTI]

    Espinosa, Horacio D.

    Rapid Communications Strong piezoelectricity in individual GaN nanowires Majid Minary@northwestern.edu (Received 12 July 2011; accepted 15 September 2011) Abstract GaN nanowires are promising building blocks piezoelectricity in individual single-crystal GaN nanowires revealed by direct measurement of the piezoelectric

  11. Rapid Determination Of Radiostrontium In Large Soil Samples

    SciTech Connect (OSTI)

    Maxwell, Sherrod L.; Culligan, Brian K.; Shaw, Patrick J.

    2012-05-24T23:59:59.000Z

    A new method for the determination of radiostrontium in large soil samples has been developed at the Savannah River Environmental Laboratory (Aiken, SC, USA) that allows rapid preconcentration and separation of strontium in large soil samples for the measurement of strontium isotopes by gas flow proportional counting. The need for rapid analyses in the event of a Radiological Dispersive Device (RDD) or Improvised Nuclear Device (IND) event is well-known. In addition, the recent accident at Fukushima Nuclear Power Plant in March, 2011 reinforces the need to have rapid analyses for radionuclides in environmental samples in the event of a nuclear accident. The method employs a novel pre-concentration step that utilizes an iron hydroxide precipitation (enhanced with calcium phosphate) followed by a final calcium fluoride precipitation to remove silicates and other matrix components. The pre-concentration steps, in combination with a rapid Sr Resin separation using vacuum box technology, allow very large soil samples to be analyzed for {sup 89,90}Sr using gas flow proportional counting with a lower method detection limit. The calcium fluoride precipitation eliminates column flow problems typically associated with large amounts of silicates in large soil samples.

  12. Rapid Recolonisation of Agricultural Soil by Microarthropods After Steam Disinfestation

    E-Print Network [OSTI]

    Cucco, Marco

    Rapid Recolonisation of Agricultural Soil by Microarthropods After Steam Disinfestation Stefano Fenoglio Paolo Gay Giorgio Malacarne Marco Cucco ABSTRACT. Steam disinfestation of soil is attracting. In this study, we assessed the effect of steam applica- tion on the microarthropod community, a fundamental

  13. Rapid and Efficient Detection of Distributed Anomalous Aggregates

    E-Print Network [OSTI]

    Wetherall, David

    be halted and require administrative action, e.g., consider the consequences of a DDoS attack launched via case of normal behavior. In this paper, we study the problem of rapid and efficient detection quickly and with orders of magnitude lower communication overhead than periodic queries in the common case

  14. A search for rapid pulsations among 9 luminous Ap stars

    E-Print Network [OSTI]

    L. M. Freyhammer; D. W. Kurtz; M. S. Cunha; G. Mathys; V. G. Elkin; J. D. Riley

    2008-01-03T23:59:59.000Z

    The rapidly oscillating Ap stars are of importance for studying the atmospheric structure of stars where the process of chemical element diffusion is significant. We have performed a survey for rapid oscillations in a sample of 9 luminous Ap stars, selected from their location in the colour-magnitude diagram as more evolved main-sequence Ap stars that are inside the instability strip for rapidly oscillating Ap (roAp) stars. Until recently this region was devoid of stars with observed rapid pulsations. We used the VLT UV-Visual Echelle Spectrograph (UVES) to obtain high time resolution spectroscopy to make the first systematic spectroscopic search for rapid oscillations in this region of the roAp instability strip. We report 9 null-detections with upper limits for radial-velocity amplitudes of 20 - 65 m/s and precisions of 7 - 20 m/s for combinations of Nd and Pr lines. Cross-correlations confirm these null-results. At least six stars are magnetic and we provide magnetic field measurements for four of them, of which three are newly discovered magnetic stars. It is found that four stars have magnetic fields smaller than ~ 2 kG, which according to theoretical predictions might be insufficient for suppressing envelope convection around the magnetic poles for more evolved Ap stars. Suppression of convection is expected to be essential for the opacity mechanism acting in the hydrogen ionisation zone to drive the high-overtone roAp pulsations efficiently. Our null-results suggest that the more evolved roAp stars may require particularly strong magnetic fields to pulsate. Three of the studied stars do, however, have magnetic fields stronger than 5 kG.

  15. RAPID DETERMINATION OF RA-226 IN ENVIRONMENTAL SAMPLES

    SciTech Connect (OSTI)

    Maxwell, S.

    2012-01-03T23:59:59.000Z

    A new rapid method for the determination of {sup 226}Ra in environmental samples has been developed at the Savannah River Site Environmental Lab (Aiken, SC, USA) that can be used for emergency response or routine sample analyses. The need for rapid analyses in the event of a Radiological Dispersive Device or Improvised Nuclear Device event is well-known. In addition, the recent accident at Fukushima Nuclear Power Plant in March, 2011 reinforces the need to have rapid analyses for radionuclides in environmental samples in the event of a nuclear accident. {sup 226}Ra (T1/2 = 1,620 years) is one of the most toxic of the long-lived alpha-emitters present in the environment due to its long life and its tendency to concentrate in bones, which increases the internal radiation dose of individuals. The new method to determine {sup 226}Ra in environmental samples utilizes a rapid sodium hydroxide fusion method for solid samples, calcium carbonate precipitation to preconcentrate Ra, and rapid column separation steps to remove interferences. The column separation process uses cation exchange resin to remove large amounts of calcium, Sr Resin to remove barium and Ln Resin as a final purification step to remove {sup 225}Ac and potential interferences. The purified {sup 226}Ra sample test sources are prepared using barium sulfate microprecipitation in the presence of isopropanol for counting by alpha spectrometry. The method showed good chemical recoveries and effective removal of interferences. The determination of {sup 226}Ra in environmental samples can be performed in less than 16 h for vegetation, concrete, brick, soil, and air filter samples with excellent quality for emergency or routine analyses. The sample preparation work takes less than 6 h. {sup 225}Ra (T1/2 = 14.9 day) tracer is used and the {sup 225}Ra progeny {sup 217}At is used to determine chemical yield via alpha spectrometry. The rapid fusion technique is a rugged sample digestion method that ensures that any refractory radium particles are effectively digested. The preconcentration and column separation steps can also be applied to aqueous samples with good results.

  16. Dark matter transport properties and rapidly rotating neutron stars

    E-Print Network [OSTI]

    C. J. Horowitz

    2012-05-16T23:59:59.000Z

    Neutron stars are attractive places to look for dark matter because their high densities allow repeated interactions. Weakly interacting massive particles (WIMPs) may scatter efficiently in the core or in the crust of a neutron star. In this paper we focus on WIMP contributions to transport properties, such as shear viscosity or thermal conductivity, because these can be greatly enhanced by long mean free paths. We speculate that WIMPs increase the shear viscosity of neutron star matter and help stabilize r-mode oscillations. These are collective oscillations where the restoring force is the Coriolis force. At present r-modes are thought to be unstable in many observed rapidly rotating stars. If WIMPs stabilize the r-modes, this would allow neutron stars to spin rapidly. This likely requires WIMP-nucleon cross sections near present experimental limits and an appropriate density of WIMPs in neutron stars.

  17. City of Grand Rapids Building Solar Roof Demonstration

    SciTech Connect (OSTI)

    DeClercq, Mark; Martinez, Imelda

    2012-08-31T23:59:59.000Z

    Grand Rapids, Michigan is striving to reduce it environmental footprint. The municipal government organization has established environmental sustainability policies with the goal of securing 100% of its energy from renewable sources by 2020. This report describes the process by which the City of Grand Rapids evaluated, selected and installed solar panels on the Water/Environmental Services Building. The solar panels are the first to be placed on a municipal building. Its new power monitoring system provides output data to assess energy efficiency and utilization. It is expected to generate enough clean solar energy to power 25 percent of the building. The benefit to the public includes the economic savings from reduced operational costs for the building; an improved environmentally sustainable area in which to live and work; and increased knowledge about the use of solar energy. It will serve as a model for future energy saving applications.

  18. Local thermodynamic equilibrium in rapidly heated high energy density plasmas

    SciTech Connect (OSTI)

    Aslanyan, V.; Tallents, G. J. [York Plasma Institute, Department of Physics, University of York, Heslington, York YO10 5DD (United Kingdom)

    2014-06-15T23:59:59.000Z

    Emission spectra and the dynamics of high energy density plasmas created by optical and Free Electron Lasers (FELs) depend on the populations of atomic levels. Calculations of plasma emission and ionization may be simplified by assuming Local Thermodynamic Equilibrium (LTE), where populations are given by the Saha-Boltzmann equation. LTE can be achieved at high densities when collisional processes are much more significant than radiative processes, but may not be valid if plasma conditions change rapidly. A collisional-radiative model has been used to calculate the times taken by carbon and iron plasmas to reach LTE at varying densities and heating rates. The effect of different energy deposition methods, as well as Ionization Potential Depression are explored. This work shows regimes in rapidly changing plasmas, such as those created by optical lasers and FELs, where the use of LTE is justified, because timescales for plasma changes are significantly longer than the times needed to achieve an LTE ionization balance.

  19. Rapid cycling medical synchrotron and beam delivery system

    DOE Patents [OSTI]

    Peggs, Stephen G. (Port Jefferson, NY); Brennan, J. Michael (East Northport, NY); Tuozzolo, Joseph E. (Sayville, NY); Zaltsman, Alexander (Commack, NY)

    2008-10-07T23:59:59.000Z

    A medical synchrotron which cycles rapidly in order to accelerate particles for delivery in a beam therapy system. The synchrotron generally includes a radiofrequency (RF) cavity for accelerating the particles as a beam and a plurality of combined function magnets arranged in a ring. Each of the combined function magnets performs two functions. The first function of the combined function magnet is to bend the particle beam along an orbital path around the ring. The second function of the combined function magnet is to focus or defocus the particle beam as it travels around the path. The radiofrequency (RF) cavity is a ferrite loaded cavity adapted for high speed frequency swings for rapid cycling acceleration of the particles.

  20. Rapidly rotating neutron stars in $R$-squared gravity

    E-Print Network [OSTI]

    Yazadjiev, Stoytcho S; Kokkotas, Kostas D

    2015-01-01T23:59:59.000Z

    $f(R)$ theories of gravity are one of the most popular alternative explanations for dark energy and therefore studying the possible astrophysical implications of these theories is an important task. In the present paper we make a substantial advance in this direction by considering rapidly rotating neutron stars in $R^2$ gravity. The results are obtained numerically and the method we use is non-perturbative and self-consistent. The neutron star properties, such as mass, radius and moment of inertia, are studied in detail and the results show that rotation magnifies the deviations from general relativity and the maximum mass and moment of inertia can reach very high values. This observation is similar to previous studies of rapidly rotating neutron stars in other alternative theories of gravity, such as the scalar-tensor theories, and it can potentially lead to strong astrophysical manifestations.

  1. Rapid mapping tool : an ArcMap extension /

    SciTech Connect (OSTI)

    Linger, S. P. (Steve P.); Rich, P. M. (Paul M.); Walther, D. (Douglas); Witkowski, M. S. (Marc S.); Jones, M. A. (Marcia A.); Khalsa, H. S. (Hari S.)

    2002-01-01T23:59:59.000Z

    Cartographic production laboratories produce large volumes of maps for diverse customers. Turnaround time and consistency are key concerns. The Rapid Mapping Tool is an ArcMap based tool that enables rapid creation of maps to meet customer needs. This tool was constructed using VB/VBA, ArcObjects, and ArcGIS templates. The core capability of ArcMap is extended for custom map production by storing specifications associated with a map or template in a companion XML document. These specifications include settings and preferences used to create custom maps. The tool was developed as a component of an enterprise GIS, which enables spatial data management and delivery using ArcSDE, ArcIMS, Oracle, and a web-based request tracking system.

  2. Mold susceptibility of rapidly renewable materials used in wall construction

    E-Print Network [OSTI]

    Cooper, Aaron McGill

    2009-05-15T23:59:59.000Z

    ..................................................................................................................................70 viii viii LIST OF FIGURES Page Figure 1. Mold remediation work following Hurricane Katrina (Szabo, 2006). ............... 6 Figure 2. Mushroom/perlite composite insulation growing in a dish (Chua, 2007)........ 14 Figure 3... & Sterling, 1997; Pugliese, 2006). Rapidly renewable products, due to their high cellulose and carbohydrate content, are highly susceptible to mold when exposed to moisture. Therefore, these materials may not be a part of a good long-term solution...

  3. Rapid consumption of bromine oxidants in river and estuarine waters

    SciTech Connect (OSTI)

    Jaworske, D.A.; Helz, G.R.

    1985-12-01T23:59:59.000Z

    Fluvial and estuarine waters possess a substantial reductive capacity that rapidly destroys strong oxidants introduced from natural or anthropogenic sources. The rapid reduction of bromine oxidants, which in marine waters are intermediates in the decomposition of both chlorine and ozone, has been studied electrochemically in the field and the laboratory with a rotating ring disk electrode. Patuxent estuary water was found to contain about 10/sup -5/ M of substances that reacted extremely rapidly with bromine. Estimated second-order rate constants were on the order of 10/sup 7/ M/sup -1/ s/sup -1/ or higher. Bromine consumption did not correlate with salinity, nor was it altered by addition of 10/sup -4/ M ethylenediaminetetraacetic acid or by ultrafiltration. However, destruction of organic matter by UV photolysis eliminated bromine consumption on the 10/sup -2/ s time scale of the experiments. Likewise, the bromine-consuming components could be titrated away with HOBr, indicating that they are not catalysts. Commercially available humic acid behaved qualitatively in a similar fashion to the natural reductants.

  4. RAPID SEPARATION METHOD FOR ACTINIDES IN EMERGENCY AIR FILTER SAMPLES

    SciTech Connect (OSTI)

    Maxwell, S.; Noyes, G.; Culligan, B.

    2010-02-03T23:59:59.000Z

    A new rapid method for the determination of actinides and strontium in air filter samples has been developed at the Savannah River Site Environmental Lab (Aiken, SC, USA) that can be used in emergency response situations. The actinides and strontium in air filter method utilizes a rapid acid digestion method and a streamlined column separation process with stacked TEVA, TRU and Sr Resin cartridges. Vacuum box technology and rapid flow rates are used to reduce analytical time. Alpha emitters are prepared using cerium fluoride microprecipitation for counting by alpha spectrometry. The purified {sup 90}Sr fractions are mounted directly on planchets and counted by gas flow proportional counting. The method showed high chemical recoveries and effective removal of interferences. This new procedure was applied to emergency air filter samples received in the NRIP Emergency Response exercise administered by the National Institute for Standards and Technology (NIST) in April, 2009. The actinide and {sup 90}Sr in air filter results were reported in {approx}4 hours with excellent quality.

  5. Rapidity losses in heavy-ion collisions from AGS to RHIC energies

    E-Print Network [OSTI]

    F. C. Zhou; Z. B. Yin; D. C. Zhou

    2009-09-28T23:59:59.000Z

    We study the rapidity losses in central heavy-ion collisions from AGS to RHIC energies with the mean rapidity determined from the projectile net-baryon distribution after collisions. The projectile net-baryon distribution in the full rapidity range was obtained by removing the target contribution phenomenologically at forward rapidity region from the experimental net-baryon measurements and taking into account the projectile contribution at backward rapidity region. Based on the full projectile net-baryon distributions, calculation results show that the rapidity loss stops increasing from the SPS top energy to RHIC energies, indicating that baryon transport does not depend strongly on energy at high energies.

  6. Rapid Radiochemical Analyses in Support of Fukushima Nuclear Accident - 13196

    SciTech Connect (OSTI)

    Maxwell, Sherrod L.; Culligan, Brian K.; Hutchison, Jay B. [Savannah River National Laboratory, Building 735-B, Aiken, SC 29808 (United States)] [Savannah River National Laboratory, Building 735-B, Aiken, SC 29808 (United States)

    2013-07-01T23:59:59.000Z

    There is an increasing need to develop faster analytical methods for emergency response, including emergency soil and air filter samples [1, 2]. The Savannah River National Laboratory (SRNL) performed analyses on samples received from Japan in April, 2011 as part of a U.S. Department of Energy effort to provide assistance to the government of Japan, following the nuclear event at Fukushima Daiichi, resulting from the earthquake and tsunami on March 11, 2011. Of particular concern was whether it was safe to plant rice in certain areas (prefectures) near Fukushima. The primary objectives of the sample collection, sample analysis, and data assessment teams were to evaluate personnel exposure hazards, identify the nuclear power plant radiological source term and plume deposition, and assist the government of Japan in assessing any environmental and agricultural impacts associated with the nuclear event. SRNL analyzed approximately 250 samples and reported approximately 500 analytical method determinations. Samples included soil from farmland surrounding the Fukushima reactors and air monitoring samples of national interest, including those collected at the U.S. Embassy and American military bases. Samples were analyzed for a wide range of radionuclides, including strontium-89, strontium-90, gamma-emitting radionuclides, and plutonium, uranium, americium and curium isotopes. Technical aspects of the rapid soil and air filter analyses will be described. The extent of radiostrontium contamination was a significant concern. For {sup 89,90}Sr analyses on soil samples, a rapid fusion technique using 1.5 gram soil aliquots to enable a Minimum Detectable Activity (MDA) of <1 pCi {sup 89,90}Sr /g of soil was employed. This sequential technique has been published recently by this laboratory for actinides and radiostrontium in soil and vegetation [3, 4]. It consists of a rapid sodium hydroxide fusion, pre-concentration steps using iron hydroxide and calcium fluoride precipitations, followed by Sr-Resin separation and gas flow proportional counting. To achieve a lower detection limit for analysis of some of the Japanese soil samples, a 10 gram aliquot of soil was taken, acid-leached and processed with similar preconcentration chemistry. The MDA using this approach was ?0.03 pCi/g (1.1 mBq/g)/, which is less than the 0.05-0.10 pCi/g {sup 90}Sr levels found in soil as a result of global fallout. The chemical yields observed for the Japanese soil samples was typically 75-80% and the laboratory control sample (LCS) and matrix spike (MS) results looked very good for this work Individual QC results were well within the ± 25% acceptable range and the average of these results does not show significant bias. Additional data for a radiostrontium in soil method for 50 gram samples will also be presented, which appears to be a significant step forward based on looking at the current literature, with higher chemical yields for even larger sample aliquots and lower MDA [5, 6, 7] Hou et al surveyed a wide range of separation methods for Pu in waters and environmental solid samples [8]. While there are many actinide methods in the scientific literature, few would be considered rapid due to the tedious and time-consuming steps involved. For actinide analyses in soil, a new rapid method for the determination of actinide isotopes in soil samples using both alpha spectrometry and inductively-coupled plasma mass spectrometry was employed. The new rapid soil method utilizes an acid leaching method, iron/titanium hydroxide precipitation, a lanthanum fluoride soil matrix removal step, and a rapid column separation process with TEVA Resin. The large soil matrix is removed easily and rapidly using these two simple precipitations with high chemical recoveries and effective removal of interferences. [9, 10] Vacuum box technology and rapid flow rates were used to reduce analytical time. Challenges associated with the mineral content in the volcanic soil will be discussed. Air filter samples were reported within twenty-four (24) hours of receipt using rapid te

  7. RAPID RADIOCHEMICAL ANALYSES IN SUPPORT OF FUKUSHIMA NUCLEAR ACCIDENT

    SciTech Connect (OSTI)

    Maxwell, S.

    2012-11-07T23:59:59.000Z

    There is an increasing need to develop faster analytical methods for emergency response, including emergency soil and air filter samples. The Savannah River National Laboratory (SRNL) performed analyses on samples received from Japan in April, 2011 as part of a U.S. Department of Energy effort to provide assistance to the government of Japan, following the nuclear event at Fukushima Daiichi, resulting from the earthquake and tsunami on March 11, 2011. Of particular concern was whether it was safe to plant rice in certain areas (prefectures) near Fukushima. The primary objectives of the sample collection, sample analysis, and data assessment teams were to evaluate personnel exposure hazards, identify the nuclear power plant radiological source term and plume deposition, and assist the government of Japan in assessing any environmental and agricultural impacts associated with the nuclear event. SRNL analyzed approximately 250 samples and reported approximately 500 analytical method determinations. Samples included soil from farmland surrounding the Fukushima reactors and air monitoring samples of national interest, including those collected at the U.S. Embassy and American military bases. Samples were analyzed for a wide range of radionuclides, including strontium-89, strontium-90, gamma-emitting radionuclides, and plutonium, uranium, americium and curium isotopes. Technical aspects of the rapid soil and air filter analyses will be described. The extent of radiostrontium contamination was a significant concern. For {sup 89,90}Sr analyses on soil samples, a rapid fusion technique using 1.5 gram soil aliquots to enable a Minimum Detectable Activity (MDA) of <1 pCi {sup 89,90} Sr /g of soil was employed. This sequential technique has been published recently by this laboratory for actinides and radiostrontium in soil and vegetation. It consists of a rapid sodium hydroxide fusion, pre-concentration steps using iron hydroxide and calcium fluoride precipitations, followed by Sr-Resin separation and gas flow proportional counting. To achieve a lower detection limit for analysis of some of the Japanese soil samples, a 10 gram aliquot of soil was taken, acid-leached and processed with similar preconcentration chemistry. The MDA using this approach was ~0.03 pCi/g (1.1 mBq/g)/, which is less than the 0.05-0.10 pCi/g {sup 90}Sr levels found in soil as a result of global fallout. The chemical yields observed for the Japanese soil samples was typically 75-80% and the laboratory control sample (LCS) and matrix spike (MS) results looked very good for this work Individual QC results were well within the ± 25% acceptable range and the average of these results does not show significant bias. Additional data for a radiostrontium in soil method for 50 gram samples will also be presented, which appears to be a significant step forward based on looking at the current literature, with higher chemical yields for even larger sample aliquots and lower MDA. Hou et al surveyed a wide range of separation methods for Pu in waters and environmental solid samples. While there are many actinide methods in the scientific literature, few would be considered rapid due to the tedious and time-consuming steps involved. For actinide analyses in soil, a new rapid method for the determination of actinide isotopes in soil samples using both alpha spectrometry and inductively-coupled plasma mass spectrometry was employed. The new rapid soil method utilizes an acid leaching method, iron/titanium hydroxide precipitation, a lanthanum fluoride soil matrix removal step, and a rapid column separation process with TEVA Resin. The large soil matrix is removed easily and rapidly using these two simple precipitations with high chemical recoveries and effective removal of interferences. Vacuum box technology and rapid flow rates were used to reduce analytical time. Challenges associated with the mineral content in the volcanic soil will be discussed. Air filter samples were reported within twenty-four (24) hours of receipt using rapid techniques published previously. The r

  8. ISSUE No 1 | DECEMBER 2009 Trinity College Dublin

    E-Print Network [OSTI]

    O'Mahony, Donal E.

    . Located in the heart of our Dublin city campus, right next to the famous old library, the Long Room, about fabulous location in the heart of one of the most creative capitals of the world to broker knowledge of the future.Part of what went wrong in the current world crisis was arguably that we lost our moral and mental

  9. Trinity College of Arts & Sciences Bass Connections Summary

    E-Print Network [OSTI]

    Ferrari, Silvia

    and the Changing Brain Education, Poverty, and Economic Inequality in Rural Appalachia Energy Efficiency and Collective Efficacy: Routes to Energy Saving Interventions to Increase Healthy Eating on College Campuses

  10. Investigating the Site of Newton's Laboratory in Trinity College, Cambridge

    E-Print Network [OSTI]

    Spargo, P E

    was usually produced from hardwoods such as oak, is that when used as a fuel it generates only a very small quantity of ash — as opposed to coal, which, depending of course upon its quality, frequently produces a substantial amount of ash. Seventeenth... of the laboratory as well as that of the rubbish pit in which Newton would have disposed of the waste materials generated in his chemical experiments. The results are believed to be of sufficient interest to justify continuation of the investigation. Historical...

  11. Net Benefits to Agriculture from the Trinity River Project, Texas

    E-Print Network [OSTI]

    Fish, B.; Williford, G.; Elling, H.; Lacewell, R. D.; Hosch, P.; Griffin, W.; Reddell, D. L.; Hiler, E. A.; Bausch, W.

    by applying published seasonal flood damage factors and flood frequency as developed from a producer survey to annual gross returns. Annual net benefits were calculated as net returns with flood protection less net returns without flood protection...

  12. Trinity Sunday Queen's College 19/06/2011

    E-Print Network [OSTI]

    Capdeboscq, Yves

    . Hitler said, `I cannot see why we should not be as cruel as nature.' Cruelty is basic. The cruelty, in order to avoid ending up where Hitler and Mussolini did ­ but we have to admit that the evidence

  13. Trinity Site - World's First Nuclear Explosion | Department of Energy

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

    AFDC Printable Version Share this resource Send a link to EERE: Alternative Fuels Data Center Home Page to someone by E-mail Share EERE: Alternative Fuels Data Center Home Page on Facebook Tweet about EERE: Alternative Fuels Data Center Home Page on Twitter Bookmark EERE: Alternative1 First Use of Energy for All Purposes (Fuel and Nonfuel), 2002; Level:Energy: Grid Integration Redefining What'sis Taking Over OurThe Iron Spin Transition in2,EHSS A-Z SiteManhattan Project » Signature

  14. Preon Trinity - a new model of leptons and quarks

    E-Print Network [OSTI]

    Jean-Jacques Dugne; Sverker Fredriksson; Johan Hansson; Enrico Predazzi

    1999-10-12T23:59:59.000Z

    A new model for the substructure of quarks, leptons and weak gauge bosons is discussed. It is based on three fundamental and absolutely stable spin-1/2 preons. Its preon flavour SU(3) symmetry leads to a prediction of nine quarks, nine leptons and nine heavy vector bosons. One of the quarks has charge $-4e/3$, and is speculated to be the top quark (whose charge has not been measured). The flavour symmetry leads to three conserved lepton numbers in all known weak processes, except for some neutrinos, which might either oscillate or decay. There is also a (Cabibbo) mixing of the $d$ and $s$ quarks due to an internal preon-antipreon annihilation channel. An identical channel exists inside the composite $Z^0$, leading to a relation between the Cabibbo and Weinberg mixing angles.

  15. trinity-aa-use-case-v1.2a

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

    AFDC Printable Version Share this resource Send a link to EERE: Alternative Fuels Data Center Home Page to someone by E-mail Share EERE: Alternative Fuels Data Center Home Page on Facebook Tweet about EERE: Alternative Fuels Data Center Home Page on Twitter Bookmark EERE: Alternative1 First Use of Energy for All Purposes (Fuel and Nonfuel), 2002; Level:Energy: Grid Integration Redefining What'sis Taking Over OurThe Iron4 Self-Scrubbing:,, ,Development1U C L E A R Etest andW HA.7WeakT

  16. First Trinity supercomputer test beds delivered to Los Alamos, Sandia |

    National Nuclear Security Administration (NNSA)

    AFDC Printable Version Share this resource Send a link to EERE: Alternative Fuels Data Center Home Page to someone by E-mail Share EERE: Alternative Fuels Data Center Home Page on Facebook Tweet about EERE: Alternative Fuels Data Center Home Page on Twitter Bookmark EERE: Alternative1 First Use of Energy for All Purposes (Fuel and Nonfuel), 2002; Level: National5Sales for4,645 3,625 1,006 492 742EnergyOn AprilA groupTubahq.na.gov Office ofDepartment ofr EEONuclearNuclearNational Nuclear

  17. July 16, 1945: Trinity Test | Department of Energy

    Office of Energy Efficiency and Renewable Energy (EERE) Indexed Site

    AFDC Printable Version Share this resource Send a link to EERE: Alternative Fuels Data Center Home Page to someone by E-mail Share EERE: Alternative Fuels Data Center Home Page on Facebook Tweet about EERE: Alternative Fuels Data Center Home Page on Twitter Bookmark EERE: Alternative Fuels Data Center Home Page on Google Bookmark EERE: Alternative Fuels Data Center Home Page onYouTube YouTube Note: Since the.pdfBreaking ofOil & Gas » MethaneJohnson ControlsJoyce Yang About Us6, 1945:

  18. Picture of the Week: Cooling new Trinity supercomputer

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

    AFDC Printable Version Share this resource Send a link to EERE: Alternative Fuels Data Center Home Page to someone by E-mail Share EERE: Alternative Fuels Data Center Home Page on Facebook Tweet about EERE: Alternative Fuels Data Center Home Page on Twitter Bookmark EERE: Alternative1 First Use of Energy for All Purposes (Fuel and Nonfuel), 2002; Level: National5Sales for4,645U.S. DOE Office of Science (SC)IntegratedSpeeding accessPeptoidLabPhysics Physics Our sciencePhysics

  19. DOE - Office of Legacy Management -- Trinity Test Site - NM 17

    Office of Legacy Management (LM)

    AFDC Printable Version Share this resource Send a link to EERE: Alternative Fuels Data Center Home Page to someone by E-mail Share EERE: Alternative Fuels Data Center Home Page on Facebook Tweet about EERE: Alternative Fuels Data Center Home Page on Twitter Bookmark EERE: Alternative1 First Use of Energy for All Purposes (Fuel and Nonfuel), 2002; Level: National5Sales for4,645 3,625 1,006 492 742EnergyOn AprilA group currentBradleyTableSelling Corp -K LeDowntown SiteTracerlab Inc -

  20. Science On Tap - From Trinity to Artificial Joints

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

    AFDC Printable Version Share this resource Send a link to EERE: Alternative Fuels Data Center Home Page to someone by E-mail Share EERE: Alternative Fuels Data Center Home Page on Facebook Tweet about EERE: Alternative Fuels Data Center Home Page on Twitter Bookmark EERE: Alternative1 First Use of Energy for All Purposes (Fuel and Nonfuel), 2002; Level:Energy: Grid Integration Redefining What's PossibleRadiationImplementingnpitcheResearch BriefsTenney, OfficeScienceEarly

  1. Trinity County, California: Energy Resources | Open Energy Information

    Open Energy Info (EERE)

    AFDC Printable Version Share this resource Send a link to EERE: Alternative Fuels Data Center Home Page to someone by E-mail Share EERE: Alternative Fuels Data Center Home Page on Facebook Tweet about EERE: Alternative Fuels Data Center Home Page on Twitter Bookmark EERE: Alternative Fuels Data Center Home Page onYou are now leaving Energy.gov You are now leaving Energy.gov YouKizildere IRaghuraji Agro IndustriesTown of Ladoga, Indiana (UtilityTri-State Electric MemberEnergyChangeCalifornia:

  2. Trinity County, Texas: Energy Resources | Open Energy Information

    Open Energy Info (EERE)

    AFDC Printable Version Share this resource Send a link to EERE: Alternative Fuels Data Center Home Page to someone by E-mail Share EERE: Alternative Fuels Data Center Home Page on Facebook Tweet about EERE: Alternative Fuels Data Center Home Page on Twitter Bookmark EERE: Alternative Fuels Data Center Home Page onYou are now leaving Energy.gov You are now leaving Energy.gov YouKizildere IRaghuraji Agro IndustriesTown of Ladoga, Indiana (UtilityTri-State Electric

  3. Manhattan Project: Safety and the Trinity Test, July 1945

    Office of Scientific and Technical Information (OSTI)

    AFDC Printable Version Share this resource Send a link to EERE: Alternative Fuels Data Center Home Page to someone by E-mail Share EERE: Alternative Fuels Data Center Home Page on Facebook Tweet about EERE: Alternative Fuels Data Center Home Page on Twitter Bookmark EERE: Alternative1 First Use of Energy for All Purposes (Fuel and Nonfuel), 2002; Level: National5Sales for4,645 3,625 1,006 492 742EnergyOnItem NotEnergy, science, and technology-- Energy,

  4. Manhattan Project: The Trinity Test, July 16, 1945

    Office of Scientific and Technical Information (OSTI)

    AFDC Printable Version Share this resource Send a link to EERE: Alternative Fuels Data Center Home Page to someone by E-mail Share EERE: Alternative Fuels Data Center Home Page on Facebook Tweet about EERE: Alternative Fuels Data Center Home Page on Twitter Bookmark EERE: Alternative1 First Use of Energy for All Purposes (Fuel and Nonfuel), 2002; Level: National5Sales for4,645 3,625 1,006 492 742EnergyOnItem NotEnergy, science, and technology-- Energy,Science In theWest BerlinerTHE

  5. Rapid Risk Assessment: FY05 Annual Summary Report

    SciTech Connect (OSTI)

    Whelan, Gene; Millard, W. David; Gelston, Gariann M.; Pelton, Mitch A.; Yang, Zhaoqing; Strenge, Dennis L.; Lee, Cheegwan; Sivaraman, Chitra; Simpson, Mary J.; Young, Joan K.; Khangaonkar, Tarang P.; Downing, Timothy R.; Hoopes, Bonnie L.; Hachmeister, Lon E.

    2006-03-06T23:59:59.000Z

    The Pacific Northwest National Laboratory (PNNL) is developing decision support tools that will assist in the transition of incident information into Protective Action Recommendations (PARs) that are understandable and can be executed in a real-world, operational environment. During emergencies, responders must rapidly assess risks and decide on the best course of action—all within minutes to hours. PNNL is blending existing modeling and decision support technology to develop new methods for transitioning science-based threat assessment to PARs. The rapid risk assessment tool will be both understandable and applicable to the emergency management community and would be a valuable tool during any water security-related incident. In 2005, PNNL demonstrated the integration of the multi-thematic modeling with emergency management decision support tools to create a Rapid Risk Assessment (RRA) tool that will transition risk to PARs that assist in responding to or mitigating the direct and indirect impacts of the incident(s). The RRA tool does this by aligning multi-thematic modeling capabilities with real-world response zones established by emergency and site operations managers. The RRA tool uses the risk assessment tool to drive prognostic models that use the type of incident, time of impact, severity of impact, and duration of impact to select the most appropriate PAR. Because PARs (and the thresholds by which they are selected) are jointly established by the technologists and the emergency management and operations decision makers, the science-based risk assessment can transition into a recommendation that can be understood and executed by people in the field.

  6. The azimuthal decorrelation of jets widely separated in rapidity

    SciTech Connect (OSTI)

    Abbott, B.; D0 Collaboration

    1997-11-01T23:59:59.000Z

    We study the azimuthal decorrelation between jets with pseudorapidity separation up to six units. The data were accumulated using the D0 detector during the 1994-1995 collider run of the Fermilab Tevatron at {radical}s = 1.8 TeV. The data are compared to two parton shower Monte Carlos (HERWIG and PYTHIA) and an analytical prediction using the leading logarithmic BFKL resummation. The final state jets as predicted by the parton showering Monte Carlos describe the data over the entire pseudorapidity range studied. The prediction based on the leading logarithmic BFKL resummation shows more decorrelation than the data as the rapidity interval increases.

  7. Rapid Proton Transfer Mediated by a Strong Laser Field

    SciTech Connect (OSTI)

    Markevitch, Alexei N.; Levis, Robert J. [Department of Chemistry, Center for Advanced Photonics Research, Temple University, Philadelphia, Pennsylvania 19122 (United States); Romanov, Dmitri A. [Department of Physics, Center for Advanced Photonics Research, Temple University, Philadelphia, Pennsylvania 19122 (United States); Smith, Stanley M. [Department of Chemistry, Wayne State University, Detroit, Michigan 48202 (United States)

    2006-04-28T23:59:59.000Z

    Kinetic energy distributions of H{sup +} ejected from a polyatomic molecule, anthraquinone, subjected to 60 fs, 800 nm laser pulses of intensity between 0.2 and 4.0x10{sup 14} W{center_dot}cm{sup -2}, reveal field-driven restructuring of the molecule prior to Coulomb explosion. Calculations demonstrate fast intramolecular proton migration into a field-dressed metastable potential energy minimum. The proton migration occurs in the direction perpendicular to the polarization of the laser field. Rapid field-mediated isomerization is an important new phenomenon in coupling of polyatomic molecules with intense lasers.

  8. Rapid automatic keyword extraction for information retrieval and analysis

    DOE Patents [OSTI]

    Rose, Stuart J (Richland, WA); Cowley,; Wendy E (Richland, WA); Crow, Vernon L (Richland, WA); Cramer, Nicholas O (Richland, WA)

    2012-03-06T23:59:59.000Z

    Methods and systems for rapid automatic keyword extraction for information retrieval and analysis. Embodiments can include parsing words in an individual document by delimiters, stop words, or both in order to identify candidate keywords. Word scores for each word within the candidate keywords are then calculated based on a function of co-occurrence degree, co-occurrence frequency, or both. Based on a function of the word scores for words within the candidate keyword, a keyword score is calculated for each of the candidate keywords. A portion of the candidate keywords are then extracted as keywords based, at least in part, on the candidate keywords having the highest keyword scores.

  9. A stable, rapidly converging conjugate gradient method for energy minimization

    SciTech Connect (OSTI)

    Watowich, S.J.; Meyer, E.S.; Hagstrom, R.; Josephs, R.

    1989-01-01T23:59:59.000Z

    We apply Shanno's conjugate gradient algorithm to the problem of minimizing the potential energy function associated with molecular mechanical calculations. Shanno's algorithm is stable with respect to roundoff errors and inexact line searches and converges rapidly to a minimum. Equally important, this algorithm can improve the rate of convergence to a minimum by a factor of 5 relative to Fletcher-Reeves or Polak-Ribiere minimizers when used within the molecular mechanics package AMBER. Comparable improvements are found for a limited number of simulations when the Polak-Ribiere direction vector is incorporated into the Shanno algorithm. 24 refs., 4 figs., 3 tabs.

  10. Unmanned Aerial Vehicle Instrumentation for Rapid Aerial Photo System

    E-Print Network [OSTI]

    Adiprawita, Widyawardana; Semibiring, Jaka

    2008-01-01T23:59:59.000Z

    This research will proposed a new kind of relatively low cost autonomous UAV that will enable farmers to make just in time mosaics of aerial photo of their crop. These mosaics of aerial photo should be able to be produced with relatively low cost and within the 24 hours of acquisition constraint. The autonomous UAV will be equipped with payload management system specifically developed for rapid aerial mapping. As mentioned before turn around time is the key factor, so accuracy is not the main focus (not orthorectified aerial mapping). This system will also be equipped with special software to post process the aerial photos to produce the mosaic aerial photo map

  11. Medial-Axis Biased Rapidly-Exploring Random Trees 

    E-Print Network [OSTI]

    Greco, Evan

    2012-05-09T23:59:59.000Z

    , 1998, 1998. [3] S. A. Wilmarth, N. M. Amato, and P. F. Stiller, MAPRM: A probabilistic roadmap planner with sampling on the medial axis of the free space. In Proc. IEEE Int. Conf. Robot. Autom. (ICRA), vol. 2, pp. 1024{1031, 1999. [4] J. J. Ku?ner and S.... M. LaValle, RRT-Connect: An eĆcient approach to single- query path planning. In Proc. IEEE Int. Conf. Robot. Autom. (ICRA), pp. 995{1001, 2000. [5] S. Rodriguez, X. Tang, J. M. Lien, and N. M. Amato, An obstacle-based rapidly- exploring random tree...

  12. Rapid heating and cooling in two-dimensional Yukawa systems

    E-Print Network [OSTI]

    Yan Feng; Bin Liu; J. Goree

    2011-04-19T23:59:59.000Z

    Simulations are reported to investigate solid superheating and liquid supercooling of two-dimensional (2D) systems with a Yukawa interparticle potential. Motivated by experiments where a dusty plasma is heated and then cooled suddenly, we track particle motion using a simulation with Langevin dynamics. Hysteresis is observed when the temperature is varied rapidly in a heating and cooling cycle. As in the experiment, transient solid superheating, but not liquid supercooling, is observed. Solid superheating, which is characterized by solid structure above the melting point, is found to be promoted by a higher rate of temperature increase.

  13. Rapid transport of East Asian pollution to the deep tropics

    E-Print Network [OSTI]

    Ashfold, M. J.; Pyle, J. A.; Robinson, A. D.; Nadzir, M. S. M.; Phang, S. M.; Samah, A. A.; Ong, S.; Ung, H. E.; Peng, L. K.; Yong, S. E.; Harris, N. R. P.

    2014-12-05T23:59:59.000Z

    ., 2003; Hudman et al., 2004). East Asian pollution has also been shown to affect atmospheric composition further afield,25 in both western North America (Cooper et al., 2010) and Hawaii (Lin et al., 2014). 30707 ACPD 14, 30705–30726, 2014 Rapid transport... – 2010, doi:10.1029/95JD00025, 1996. 30707 Aschmann, J., Sinnhuber, B.-M., Atlas, E. L., and Schauffler, S. M.: Modeling the transport of very short-lived substances into the tropical upper troposphere and lower stratosphere,10 Atmos. Chem. Phys., 9, 9237...

  14. Rapid substitution of gold for aluminum metallization on integrated circuits

    SciTech Connect (OSTI)

    Krasopoulos, A.V. [Washington State Univ., Pullman, WA (United States). Dept. of Chemical Engineering; Li, J.; Josowicz, M.; Janata, J. [Pacific Northwest National Lab., Richland, WA (United States)

    1997-03-01T23:59:59.000Z

    A rapid procedure for substitution of gold for aluminum metallization on integrated solid-state circuits, such as solid-state chemical multisensor chips, has been developed. The final product consists of original aluminum overlaid with nickel and gold, both deposited by an electroless process. The final metallization is chemically inert and the resistance of the contacts remains ohmic and unchanged from the original value. The substitution can be performed either at the wafer or at the chip level. After the plasma etching, the metallization process takes only 25 min.

  15. Method for rapidly producing microporous and mesoporous materials

    DOE Patents [OSTI]

    Coronado, P.R.; Poco, J.F.; Hrubesh, L.W.; Hopper, R.W.

    1997-11-11T23:59:59.000Z

    An improved, rapid process is provided for making microporous and mesoporous materials, including aerogels and pre-ceramics. A gel or gel precursor is confined in a sealed vessel to prevent structural expansion of the gel during the heating process. This confinement allows the gelation and drying processes to be greatly accelerated, and significantly reduces the time required to produce a dried aerogel compared to conventional methods. Drying may be performed either by subcritical drying with a pressurized fluid to expel the liquid from the gel pores or by supercritical drying. The rates of heating and decompression are significantly higher than for conventional methods. 3 figs.

  16. Method for rapidly producing microporous and mesoporous materials

    DOE Patents [OSTI]

    Coronado, Paul R. (Livermore, CA); Poco, John F. (Livermore, CA); Hrubesh, Lawrence W. (Pleasanton, CA); Hopper, Robert W. (Danville, CA)

    1997-01-01T23:59:59.000Z

    An improved, rapid process is provided for making microporous and mesoporous materials, including aerogels and pre-ceramics. A gel or gel precursor is confined in a sealed vessel to prevent structural expansion of the gel during the heating process. This confinement allows the gelation and drying processes to be greatly accelerated, and significantly reduces the time required to produce a dried aerogel compared to conventional methods. Drying may be performed either by subcritical drying with a pressurized fluid to expel the liquid from the gel pores or by supercritical drying. The rates of heating and decompression are significantly higher than for conventional methods.

  17. File:RAPID Toolkit Flyer.pdf | Open Energy Information

    Open Energy Info (EERE)

    AFDC Printable Version Share this resource Send a link to EERE: Alternative Fuels Data Center Home Page to someone by E-mail Share EERE: Alternative Fuels Data Center Home Page on Facebook Tweet about EERE: Alternative Fuels Data Center Home Page on Twitter Bookmark EERE: Alternative Fuels Data Center Home Page onYou are now leaving Energy.gov You are now leaving Energy.gov You are being directedAnnualPropertyd8c-a9ae-f8521cbb8489 NoEuropeStrat.pdf Jump to:student-HS.pdf Jump to:RAPID Toolkit

  18. File:RAPID Toolkit Flyer.pdf | Open Energy Information

    Open Energy Info (EERE)

    AFDC Printable Version Share this resource Send a link to EERE: Alternative Fuels Data Center Home Page to someone by E-mail Share EERE: Alternative Fuels Data Center Home Page on Facebook Tweet about EERE: Alternative Fuels Data Center Home Page on Twitter Bookmark EERE: Alternative Fuels Data Center Home Page onYou are now leaving Energy.gov You are now leaving Energy.gov You are being directedAnnual SiteofEvaluating A PotentialJumpGermanFife Energy Park at Methil JumpPrimer.pdf Jump to:RAPID

  19. Wisconsin Rapids, Wisconsin: Energy Resources | Open Energy Information

    Open Energy Info (EERE)

    AFDC Printable Version Share this resource Send a link to EERE: Alternative Fuels Data Center Home Page to someone by E-mail Share EERE: Alternative Fuels Data Center Home Page on Facebook Tweet about EERE: Alternative Fuels Data Center Home Page on Twitter Bookmark EERE: Alternative Fuels Data Center Home Page onYou are now leaving Energy.gov You are now leaving Energy.gov YouKizildere IRaghuraji Agro IndustriesTownDells, Wisconsin: Energy Resources Jump to: navigation, searchRapids, Wisconsin:

  20. RAPID/Roadmap/12-FD-h | Open Energy Information

    Open Energy Info (EERE)

    AFDC Printable Version Share this resource Send a link to EERE: Alternative Fuels Data Center Home Page to someone by E-mail Share EERE: Alternative Fuels Data Center Home Page on Facebook Tweet about EERE: Alternative Fuels Data Center Home Page on Twitter Bookmark EERE: Alternative Fuels Data Center Home Page onYou are now leaving Energy.gov You are now leaving Energy.gov You are being directedAnnualProperty Edit with form History Facebook iconQuito, Ecuador: EnergyRAPID/Roadmap/12-FD-h <

  1. RAPID/Roadmap/13-FD-a | Open Energy Information

    Open Energy Info (EERE)

    AFDC Printable Version Share this resource Send a link to EERE: Alternative Fuels Data Center Home Page to someone by E-mail Share EERE: Alternative Fuels Data Center Home Page on Facebook Tweet about EERE: Alternative Fuels Data Center Home Page on Twitter Bookmark EERE: Alternative Fuels Data Center Home Page onYou are now leaving Energy.gov You are now leaving Energy.gov You are being directedAnnualProperty Edit with form History Facebook iconQuito, Ecuador: EnergyRAPID/Roadmap/12-FD-h

  2. RAPID/Roadmap/15-CO-a | Open Energy Information

    Open Energy Info (EERE)

    AFDC Printable Version Share this resource Send a link to EERE: Alternative Fuels Data Center Home Page to someone by E-mail Share EERE: Alternative Fuels Data Center Home Page on Facebook Tweet about EERE: Alternative Fuels Data Center Home Page on Twitter Bookmark EERE: Alternative Fuels Data Center Home Page onYou are now leaving Energy.gov You are now leaving Energy.gov You are being directedAnnualProperty Edit with form History Facebook iconQuito, Ecuador: EnergyRAPID/Roadmap/12-FD-h-CO-a

  3. RAPID/Roadmap/19-CO-c | Open Energy Information

    Open Energy Info (EERE)

    AFDC Printable Version Share this resource Send a link to EERE: Alternative Fuels Data Center Home Page to someone by E-mail Share EERE: Alternative Fuels Data Center Home Page on Facebook Tweet about EERE: Alternative Fuels Data Center Home Page on Twitter Bookmark EERE: Alternative Fuels Data Center Home Page onYou are now leaving Energy.gov You are now leaving Energy.gov You are being directedAnnualProperty Edit with form History Facebook iconQuito, Ecuador:RAPID/Roadmap/19-CO-c < RAPID‎

  4. RAPID/Roadmap/19-CO-d | Open Energy Information

    Open Energy Info (EERE)

    AFDC Printable Version Share this resource Send a link to EERE: Alternative Fuels Data Center Home Page to someone by E-mail Share EERE: Alternative Fuels Data Center Home Page on Facebook Tweet about EERE: Alternative Fuels Data Center Home Page on Twitter Bookmark EERE: Alternative Fuels Data Center Home Page onYou are now leaving Energy.gov You are now leaving Energy.gov You are being directedAnnualProperty Edit with form History Facebook iconQuito, Ecuador:RAPID/Roadmap/19-CO-c <

  5. RAPID/Roadmap/19-TX-d | Open Energy Information

    Open Energy Info (EERE)

    AFDC Printable Version Share this resource Send a link to EERE: Alternative Fuels Data Center Home Page to someone by E-mail Share EERE: Alternative Fuels Data Center Home Page on Facebook Tweet about EERE: Alternative Fuels Data Center Home Page on Twitter Bookmark EERE: Alternative Fuels Data Center Home Page onYou are now leaving Energy.gov You are now leaving Energy.gov You are being directedAnnualProperty Edit with form History Facebook iconQuito, Ecuador:RAPID/Roadmap/19-CO-c <d <

  6. RAPID/Roadmap/3-CO-a | Open Energy Information

    Open Energy Info (EERE)

    AFDC Printable Version Share this resource Send a link to EERE: Alternative Fuels Data Center Home Page to someone by E-mail Share EERE: Alternative Fuels Data Center Home Page on Facebook Tweet about EERE: Alternative Fuels Data Center Home Page on Twitter Bookmark EERE: Alternative Fuels Data Center Home Page onYou are now leaving Energy.gov You are now leaving Energy.gov You are being directedAnnualProperty Edit with form History Facebook iconQuito, Ecuador:RAPID/Roadmap/19-CO-c <d <a

  7. RAPID/Roadmap/3-CO-b | Open Energy Information

    Open Energy Info (EERE)

    AFDC Printable Version Share this resource Send a link to EERE: Alternative Fuels Data Center Home Page to someone by E-mail Share EERE: Alternative Fuels Data Center Home Page on Facebook Tweet about EERE: Alternative Fuels Data Center Home Page on Twitter Bookmark EERE: Alternative Fuels Data Center Home Page onYou are now leaving Energy.gov You are now leaving Energy.gov You are being directedAnnualProperty Edit with form History Facebook iconQuito, Ecuador:RAPID/Roadmap/19-CO-c <d <ab

  8. RAPID/Roadmap/3-FD-e | Open Energy Information

    Open Energy Info (EERE)

    AFDC Printable Version Share this resource Send a link to EERE: Alternative Fuels Data Center Home Page to someone by E-mail Share EERE: Alternative Fuels Data Center Home Page on Facebook Tweet about EERE: Alternative Fuels Data Center Home Page on Twitter Bookmark EERE: Alternative Fuels Data Center Home Page onYou are now leaving Energy.gov You are now leaving Energy.gov You are being directedAnnualProperty Edit with form History Facebook iconQuito, Ecuador:RAPID/Roadmap/19-CO-c <d <abe

  9. RAPID/Roadmap/3-TX-b | Open Energy Information

    Open Energy Info (EERE)

    AFDC Printable Version Share this resource Send a link to EERE: Alternative Fuels Data Center Home Page to someone by E-mail Share EERE: Alternative Fuels Data Center Home Page on Facebook Tweet about EERE: Alternative Fuels Data Center Home Page on Twitter Bookmark EERE: Alternative Fuels Data Center Home Page onYou are now leaving Energy.gov You are now leaving Energy.gov You are being directedAnnualProperty Edit with form History Facebook iconQuito, Ecuador:RAPID/Roadmap/19-CO-c <d

  10. RAPID/Roadmap/3-TX-g | Open Energy Information

    Open Energy Info (EERE)

    AFDC Printable Version Share this resource Send a link to EERE: Alternative Fuels Data Center Home Page to someone by E-mail Share EERE: Alternative Fuels Data Center Home Page on Facebook Tweet about EERE: Alternative Fuels Data Center Home Page on Twitter Bookmark EERE: Alternative Fuels Data Center Home Page onYou are now leaving Energy.gov You are now leaving Energy.gov You are being directedAnnualProperty Edit with form History Facebook iconQuito, Ecuador:RAPID/Roadmap/19-CO-c <dg <

  11. RAPID/Roadmap/8 (1) | Open Energy Information

    Open Energy Info (EERE)

    AFDC Printable Version Share this resource Send a link to EERE: Alternative Fuels Data Center Home Page to someone by E-mail Share EERE: Alternative Fuels Data Center Home Page on Facebook Tweet about EERE: Alternative Fuels Data Center Home Page on Twitter Bookmark EERE: Alternative Fuels Data Center Home Page onYou are now leaving Energy.gov You are now leaving Energy.gov You are being directedAnnualProperty Edit with form History Facebook iconQuito, Ecuador:RAPID/Roadmap/19-CO-c <dg <

  12. RAPID/Roadmap/8-TX-f | Open Energy Information

    Open Energy Info (EERE)

    AFDC Printable Version Share this resource Send a link to EERE: Alternative Fuels Data Center Home Page to someone by E-mail Share EERE: Alternative Fuels Data Center Home Page on Facebook Tweet about EERE: Alternative Fuels Data Center Home Page on Twitter Bookmark EERE: Alternative Fuels Data Center Home Page onYou are now leaving Energy.gov You are now leaving Energy.gov You are being directedAnnualProperty Edit with form History Facebook iconQuito, Ecuador:RAPID/Roadmap/19-CO-c <dg <f

  13. RAPID/Roadmap/9 (1) | Open Energy Information

    Open Energy Info (EERE)

    AFDC Printable Version Share this resource Send a link to EERE: Alternative Fuels Data Center Home Page to someone by E-mail Share EERE: Alternative Fuels Data Center Home Page on Facebook Tweet about EERE: Alternative Fuels Data Center Home Page on Twitter Bookmark EERE: Alternative Fuels Data Center Home Page onYou are now leaving Energy.gov You are now leaving Energy.gov You are being directedAnnualProperty Edit with form History Facebook iconQuito, Ecuador:RAPID/Roadmap/19-CO-c <dg <f

  14. RAPID/Roadmap/Geo/Getting Started | Open Energy Information

    Open Energy Info (EERE)

    AFDC Printable Version Share this resource Send a link to EERE: Alternative Fuels Data Center Home Page to someone by E-mail Share EERE: Alternative Fuels Data Center Home Page on Facebook Tweet about EERE: Alternative Fuels Data Center Home Page on Twitter Bookmark EERE: Alternative Fuels Data Center Home Page onYou are now leaving Energy.gov You are now leaving Energy.gov You are being directedAnnualProperty Edit with form History Facebook iconQuito, Ecuador:RAPID/Roadmap/19-CO-c <dg

  15. RAPID/Roadmap/14-ID-f | Open Energy Information

    Open Energy Info (EERE)

    AFDC Printable Version Share this resource Send a link to EERE: Alternative Fuels Data Center Home Page to someone by E-mail Share EERE: Alternative Fuels Data Center Home Page on Facebook Tweet about EERE: Alternative Fuels Data Center Home Page on Twitter Bookmark EERE: Alternative Fuels Data Center Home Page onYou are now leaving Energy.gov You are now leaving Energy.gov You are beingZealand Jump to:Ezfeedflag JumpID-f < RAPID‎ | Roadmap Jump to: navigation, search RAPID Regulatory and

  16. RAPID/Roadmap/14-MT-b | Open Energy Information

    Open Energy Info (EERE)

    AFDC Printable Version Share this resource Send a link to EERE: Alternative Fuels Data Center Home Page to someone by E-mail Share EERE: Alternative Fuels Data Center Home Page on Facebook Tweet about EERE: Alternative Fuels Data Center Home Page on Twitter Bookmark EERE: Alternative Fuels Data Center Home Page onYou are now leaving Energy.gov You are now leaving Energy.gov You are beingZealand Jump to:Ezfeedflag JumpID-f < RAPID‎ | Roadmap Jump to: navigation, search RAPID Regulatory andb

  17. RAPID/Roadmap/14-MT-c | Open Energy Information

    Open Energy Info (EERE)

    AFDC Printable Version Share this resource Send a link to EERE: Alternative Fuels Data Center Home Page to someone by E-mail Share EERE: Alternative Fuels Data Center Home Page on Facebook Tweet about EERE: Alternative Fuels Data Center Home Page on Twitter Bookmark EERE: Alternative Fuels Data Center Home Page onYou are now leaving Energy.gov You are now leaving Energy.gov You are beingZealand Jump to:Ezfeedflag JumpID-f < RAPID‎ | Roadmap Jump to: navigation, search RAPID Regulatory andbc

  18. RAPID/Roadmap/14-MT-d | Open Energy Information

    Open Energy Info (EERE)

    AFDC Printable Version Share this resource Send a link to EERE: Alternative Fuels Data Center Home Page to someone by E-mail Share EERE: Alternative Fuels Data Center Home Page on Facebook Tweet about EERE: Alternative Fuels Data Center Home Page on Twitter Bookmark EERE: Alternative Fuels Data Center Home Page onYou are now leaving Energy.gov You are now leaving Energy.gov You are beingZealand Jump to:Ezfeedflag JumpID-f < RAPID‎ | Roadmap Jump to: navigation, search RAPID Regulatory

  19. RAPID/Roadmap/14-NM-a | Open Energy Information

    Open Energy Info (EERE)

    AFDC Printable Version Share this resource Send a link to EERE: Alternative Fuels Data Center Home Page to someone by E-mail Share EERE: Alternative Fuels Data Center Home Page on Facebook Tweet about EERE: Alternative Fuels Data Center Home Page on Twitter Bookmark EERE: Alternative Fuels Data Center Home Page onYou are now leaving Energy.gov You are now leaving Energy.gov You are beingZealand Jump to:Ezfeedflag JumpID-f < RAPID‎ | Roadmap Jump to: navigation, search RAPID Regulatorya <

  20. RAPID/Roadmap/14-NM-b | Open Energy Information

    Open Energy Info (EERE)

    AFDC Printable Version Share this resource Send a link to EERE: Alternative Fuels Data Center Home Page to someone by E-mail Share EERE: Alternative Fuels Data Center Home Page on Facebook Tweet about EERE: Alternative Fuels Data Center Home Page on Twitter Bookmark EERE: Alternative Fuels Data Center Home Page onYou are now leaving Energy.gov You are now leaving Energy.gov You are beingZealand Jump to:Ezfeedflag JumpID-f < RAPID‎ | Roadmap Jump to: navigation, search RAPID Regulatorya

  1. RAPID/Roadmap/14-NM-d | Open Energy Information

    Open Energy Info (EERE)

    AFDC Printable Version Share this resource Send a link to EERE: Alternative Fuels Data Center Home Page to someone by E-mail Share EERE: Alternative Fuels Data Center Home Page on Facebook Tweet about EERE: Alternative Fuels Data Center Home Page on Twitter Bookmark EERE: Alternative Fuels Data Center Home Page onYou are now leaving Energy.gov You are now leaving Energy.gov You are beingZealand Jump to:Ezfeedflag JumpID-f < RAPID‎ | Roadmap Jump to: navigation, search RAPID Regulatoryad

  2. RAPID/Roadmap/14-NV-a | Open Energy Information

    Open Energy Info (EERE)

    AFDC Printable Version Share this resource Send a link to EERE: Alternative Fuels Data Center Home Page to someone by E-mail Share EERE: Alternative Fuels Data Center Home Page on Facebook Tweet about EERE: Alternative Fuels Data Center Home Page on Twitter Bookmark EERE: Alternative Fuels Data Center Home Page onYou are now leaving Energy.gov You are now leaving Energy.gov You are beingZealand Jump to:Ezfeedflag JumpID-f < RAPID‎ | Roadmap Jump to: navigation, search RAPID Regulatoryada

  3. RAPID/Roadmap/14-NV-b | Open Energy Information

    Open Energy Info (EERE)

    AFDC Printable Version Share this resource Send a link to EERE: Alternative Fuels Data Center Home Page to someone by E-mail Share EERE: Alternative Fuels Data Center Home Page on Facebook Tweet about EERE: Alternative Fuels Data Center Home Page on Twitter Bookmark EERE: Alternative Fuels Data Center Home Page onYou are now leaving Energy.gov You are now leaving Energy.gov You are beingZealand Jump to:Ezfeedflag JumpID-f < RAPID‎ | Roadmap Jump to: navigation, search RAPID

  4. RAPID/Roadmap/9-FD-c | Open Energy Information

    Open Energy Info (EERE)

    AFDC Printable Version Share this resource Send a link to EERE: Alternative Fuels Data Center Home Page to someone by E-mail Share EERE: Alternative Fuels Data Center Home Page on Facebook Tweet about EERE: Alternative Fuels Data Center Home Page on Twitter Bookmark EERE: Alternative Fuels Data Center Home Page onYou are now leaving Energy.gov You are now leaving Energy.gov You are beingZealand Jump to:Ezfeedflag JumpID-f < RAPID‎ | Roadmap Jump to: navigation,c <RAPID/Roadmap/9-FD-c

  5. RAPID/Roadmap/9-FD-e | Open Energy Information

    Open Energy Info (EERE)

    AFDC Printable Version Share this resource Send a link to EERE: Alternative Fuels Data Center Home Page to someone by E-mail Share EERE: Alternative Fuels Data Center Home Page on Facebook Tweet about EERE: Alternative Fuels Data Center Home Page on Twitter Bookmark EERE: Alternative Fuels Data Center Home Page onYou are now leaving Energy.gov You are now leaving Energy.gov You are beingZealand Jump to:Ezfeedflag JumpID-f < RAPID‎ | Roadmap Jump to: navigation,cRAPID/Roadmap/9-FD-e <

  6. RAPID/Roadmap/9-FD-g | Open Energy Information

    Open Energy Info (EERE)

    AFDC Printable Version Share this resource Send a link to EERE: Alternative Fuels Data Center Home Page to someone by E-mail Share EERE: Alternative Fuels Data Center Home Page on Facebook Tweet about EERE: Alternative Fuels Data Center Home Page on Twitter Bookmark EERE: Alternative Fuels Data Center Home Page onYou are now leaving Energy.gov You are now leaving Energy.gov You are beingZealand Jump to:Ezfeedflag JumpID-f < RAPID‎ | Roadmap Jump to: navigation,cRAPID/Roadmap/9-FD-e

  7. Rapid Deployment Shelter System | Y-12 National Security Complex

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

    AFDC Printable Version Share this resource Send a link to EERE: Alternative Fuels Data Center Home Page to someone by E-mail Share EERE: Alternative Fuels Data Center Home Page on Facebook Tweet about EERE: Alternative Fuels Data Center Home Page on Twitter Bookmark EERE: Alternative1 First Use of Energy for All Purposes (Fuel and Nonfuel), 2002; Level: National5Sales for4,645U.S. DOE Office of Science (SC)IntegratedSpeedingTechnicalPurchase, Delivery,Assistance ProgramLivingstonRandallRapid

  8. East Grand Rapids, Michigan: Energy Resources | Open Energy Information

    Open Energy Info (EERE)

    AFDC Printable Version Share this resource Send a link to EERE: Alternative Fuels Data Center Home Page to someone by E-mail Share EERE: Alternative Fuels Data Center Home Page on Facebook Tweet about EERE: Alternative Fuels Data Center Home Page on Twitter Bookmark EERE: Alternative Fuels Data Center Home Page onYou are now leaving Energy.gov You are now leaving Energy.gov You are beingZealand JumpConceptual Model,DOE FacilityDimondale,South,Earlsboro,Canton, Ohio:InformationForkRapids,

  9. Rapid Solar Mirror Characterization with Fringe Reflection Techniques -

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

    AFDC Printable Version Share this resource Send a link to EERE: Alternative Fuels Data Center Home Page to someone by E-mail Share EERE: Alternative Fuels Data Center Home Page on Facebook Tweet about EERE: Alternative Fuels Data Center Home Page on Twitter Bookmark EERE: Alternative1 First Use of Energy for All Purposes (Fuel and Nonfuel), 2002; Level:Energy: Grid Integration Redefining What's PossibleRadiation Protection Radiation ProtectionRaising funds for a cureEnergy StorageRapid

  10. Cedar Rapids, Iowa: Energy Resources | Open Energy Information

    Open Energy Info (EERE)

    AFDC Printable Version Share this resource Send a link to EERE: Alternative Fuels Data Center Home Page to someone by E-mail Share EERE: Alternative Fuels Data Center Home Page on Facebook Tweet about EERE: Alternative Fuels Data Center Home Page on Twitter Bookmark EERE: Alternative Fuels Data Center Home Page onYou are now leaving Energy.gov You are now leaving Energy.gov You are being directedAnnualProperty EditCalifornia:Power LPInformationCashtonGoCaterpillar Jump to:CeCapPointRapids,

  11. Working with SRNL - Our Facilities- Rapid Fabrication Facility

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

    AFDC Printable Version Share this resource Send a link to EERE: Alternative Fuels Data Center Home Page to someone by E-mail Share EERE: Alternative Fuels Data Center Home Page on Facebook Tweet about EERE: Alternative Fuels Data Center Home Page on Twitter Bookmark EERE: Alternative1 First Use of Energy for All Purposes (Fuel and Nonfuel), 2002; Level:Energy: Grid Integration Redefining What'sis Taking Over OurThe Iron SpinPrincetonUsingWhat is abigpresentedMetal HydrideHighPrimaryRapid

  12. RAPID/Geothermal/Water Use/Texas | Open Energy Information

    Open Energy Info (EERE)

    AFDC Printable Version Share this resource Send a link to EERE: Alternative Fuels Data Center Home Page to someone by E-mail Share EERE: Alternative Fuels Data Center Home Page on Facebook Tweet about EERE: Alternative Fuels Data Center Home Page on Twitter Bookmark EERE: Alternative Fuels Data Center Home Page onYou are now leaving Energy.gov You are now leaving Energy.gov YouKizildere I GeothermalPotentialBiopowerSolidGenerationMethodInformation Texas < RAPID‎RAPID/Geothermal/Water

  13. RAPID/Roadmap/12-FD-i | Open Energy Information

    Open Energy Info (EERE)

    AFDC Printable Version Share this resource Send a link to EERE: Alternative Fuels Data Center Home Page to someone by E-mail Share EERE: Alternative Fuels Data Center Home Page on Facebook Tweet about EERE: Alternative Fuels Data Center Home Page on Twitter Bookmark EERE: Alternative Fuels Data Center Home Page onYou are now leaving Energy.gov You are now leaving Energy.gov YouKizildere I GeothermalPotentialBiopowerSolidGenerationMethodInformation TexasTexas) RedirectaRAPID/Roadmap/12-FD-i

  14. RAPID/Roadmap/14-AK-c | Open Energy Information

    Open Energy Info (EERE)

    AFDC Printable Version Share this resource Send a link to EERE: Alternative Fuels Data Center Home Page to someone by E-mail Share EERE: Alternative Fuels Data Center Home Page on Facebook Tweet about EERE: Alternative Fuels Data Center Home Page on Twitter Bookmark EERE: Alternative Fuels Data Center Home Page onYou are now leaving Energy.gov You are now leaving Energy.gov YouKizildere I GeothermalPotentialBiopowerSolidGenerationMethodInformation TexasTexas)ID-a <RAPID/Roadmap/14 <c

  15. RAPID/Roadmap/14-AK-d | Open Energy Information

    Open Energy Info (EERE)

    AFDC Printable Version Share this resource Send a link to EERE: Alternative Fuels Data Center Home Page to someone by E-mail Share EERE: Alternative Fuels Data Center Home Page on Facebook Tweet about EERE: Alternative Fuels Data Center Home Page on Twitter Bookmark EERE: Alternative Fuels Data Center Home Page onYou are now leaving Energy.gov You are now leaving Energy.gov YouKizildere I GeothermalPotentialBiopowerSolidGenerationMethodInformation TexasTexas)ID-a <RAPID/Roadmap/14 <cd

  16. RAPID/Roadmap/14-AZ-b | Open Energy Information

    Open Energy Info (EERE)

    AFDC Printable Version Share this resource Send a link to EERE: Alternative Fuels Data Center Home Page to someone by E-mail Share EERE: Alternative Fuels Data Center Home Page on Facebook Tweet about EERE: Alternative Fuels Data Center Home Page on Twitter Bookmark EERE: Alternative Fuels Data Center Home Page onYou are now leaving Energy.gov You are now leaving Energy.gov YouKizildere I GeothermalPotentialBiopowerSolidGenerationMethodInformation TexasTexas)ID-a <RAPID/Roadmap/14

  17. RAPID/Roadmap/14-CA-a | Open Energy Information

    Open Energy Info (EERE)

    AFDC Printable Version Share this resource Send a link to EERE: Alternative Fuels Data Center Home Page to someone by E-mail Share EERE: Alternative Fuels Data Center Home Page on Facebook Tweet about EERE: Alternative Fuels Data Center Home Page on Twitter Bookmark EERE: Alternative Fuels Data Center Home Page onYou are now leaving Energy.gov You are now leaving Energy.gov YouKizildere I GeothermalPotentialBiopowerSolidGenerationMethodInformation TexasTexas)ID-a <RAPID/Roadmap/14a <

  18. RAPID/Roadmap/14-CA-d | Open Energy Information

    Open Energy Info (EERE)

    AFDC Printable Version Share this resource Send a link to EERE: Alternative Fuels Data Center Home Page to someone by E-mail Share EERE: Alternative Fuels Data Center Home Page on Facebook Tweet about EERE: Alternative Fuels Data Center Home Page on Twitter Bookmark EERE: Alternative Fuels Data Center Home Page onYou are now leaving Energy.gov You are now leaving Energy.gov YouKizildere I GeothermalPotentialBiopowerSolidGenerationMethodInformation TexasTexas)ID-a <RAPID/Roadmap/14a <d

  19. RAPID/Roadmap/14-CO-b | Open Energy Information

    Open Energy Info (EERE)

    AFDC Printable Version Share this resource Send a link to EERE: Alternative Fuels Data Center Home Page to someone by E-mail Share EERE: Alternative Fuels Data Center Home Page on Facebook Tweet about EERE: Alternative Fuels Data Center Home Page on Twitter Bookmark EERE: Alternative Fuels Data Center Home Page onYou are now leaving Energy.gov You are now leaving Energy.gov YouKizildere I GeothermalPotentialBiopowerSolidGenerationMethodInformation TexasTexas)ID-a <RAPID/Roadmap/14a <db

  20. RAPID/Roadmap/14-CO-c | Open Energy Information

    Open Energy Info (EERE)

    AFDC Printable Version Share this resource Send a link to EERE: Alternative Fuels Data Center Home Page to someone by E-mail Share EERE: Alternative Fuels Data Center Home Page on Facebook Tweet about EERE: Alternative Fuels Data Center Home Page on Twitter Bookmark EERE: Alternative Fuels Data Center Home Page onYou are now leaving Energy.gov You are now leaving Energy.gov YouKizildere I GeothermalPotentialBiopowerSolidGenerationMethodInformation TexasTexas)ID-a <RAPID/Roadmap/14a

  1. RAPID/Roadmap/14-CO-d | Open Energy Information

    Open Energy Info (EERE)

    AFDC Printable Version Share this resource Send a link to EERE: Alternative Fuels Data Center Home Page to someone by E-mail Share EERE: Alternative Fuels Data Center Home Page on Facebook Tweet about EERE: Alternative Fuels Data Center Home Page on Twitter Bookmark EERE: Alternative Fuels Data Center Home Page onYou are now leaving Energy.gov You are now leaving Energy.gov YouKizildere I GeothermalPotentialBiopowerSolidGenerationMethodInformation TexasTexas)ID-a <RAPID/Roadmap/14ad <

  2. RAPID/Roadmap/14-FD-a | Open Energy Information

    Open Energy Info (EERE)

    AFDC Printable Version Share this resource Send a link to EERE: Alternative Fuels Data Center Home Page to someone by E-mail Share EERE: Alternative Fuels Data Center Home Page on Facebook Tweet about EERE: Alternative Fuels Data Center Home Page on Twitter Bookmark EERE: Alternative Fuels Data Center Home Page onYou are now leaving Energy.gov You are now leaving Energy.gov YouKizildere I GeothermalPotentialBiopowerSolidGenerationMethodInformation TexasTexas)ID-a <RAPID/Roadmap/14ad

  3. RAPID/Roadmap/14-FD-c | Open Energy Information

    Open Energy Info (EERE)

    AFDC Printable Version Share this resource Send a link to EERE: Alternative Fuels Data Center Home Page to someone by E-mail Share EERE: Alternative Fuels Data Center Home Page on Facebook Tweet about EERE: Alternative Fuels Data Center Home Page on Twitter Bookmark EERE: Alternative Fuels Data Center Home Page onYou are now leaving Energy.gov You are now leaving Energy.gov YouKizildere I GeothermalPotentialBiopowerSolidGenerationMethodInformation TexasTexas)ID-a <RAPID/Roadmap/14adFD-c

  4. RAPID/Roadmap/14-HI-a | Open Energy Information

    Open Energy Info (EERE)

    AFDC Printable Version Share this resource Send a link to EERE: Alternative Fuels Data Center Home Page to someone by E-mail Share EERE: Alternative Fuels Data Center Home Page on Facebook Tweet about EERE: Alternative Fuels Data Center Home Page on Twitter Bookmark EERE: Alternative Fuels Data Center Home Page onYou are now leaving Energy.gov You are now leaving Energy.gov YouKizildere I GeothermalPotentialBiopowerSolidGenerationMethodInformation TexasTexas)ID-a <RAPID/Roadmap/14adFD-ca

  5. RAPID/Roadmap/14-HI-d | Open Energy Information

    Open Energy Info (EERE)

    AFDC Printable Version Share this resource Send a link to EERE: Alternative Fuels Data Center Home Page to someone by E-mail Share EERE: Alternative Fuels Data Center Home Page on Facebook Tweet about EERE: Alternative Fuels Data Center Home Page on Twitter Bookmark EERE: Alternative Fuels Data Center Home Page onYou are now leaving Energy.gov You are now leaving Energy.gov YouKizildere I GeothermalPotentialBiopowerSolidGenerationMethodInformation TexasTexas)ID-a <RAPID/Roadmap/14adFD-cad

  6. RAPID/Roadmap/14-ID-d | Open Energy Information

    Open Energy Info (EERE)

    AFDC Printable Version Share this resource Send a link to EERE: Alternative Fuels Data Center Home Page to someone by E-mail Share EERE: Alternative Fuels Data Center Home Page on Facebook Tweet about EERE: Alternative Fuels Data Center Home Page on Twitter Bookmark EERE: Alternative Fuels Data Center Home Page onYou are now leaving Energy.gov You are now leaving Energy.gov YouKizildere I GeothermalPotentialBiopowerSolidGenerationMethodInformation TexasTexas)ID-aRAPID/Roadmap/14-ID-d <

  7. RAPID/Roadmap/14-MT-a | Open Energy Information

    Open Energy Info (EERE)

    AFDC Printable Version Share this resource Send a link to EERE: Alternative Fuels Data Center Home Page to someone by E-mail Share EERE: Alternative Fuels Data Center Home Page on Facebook Tweet about EERE: Alternative Fuels Data Center Home Page on Twitter Bookmark EERE: Alternative Fuels Data Center Home Page onYou are now leaving Energy.gov You are now leaving Energy.gov YouKizildere I GeothermalPotentialBiopowerSolidGenerationMethodInformation TexasTexas)ID-aRAPID/Roadmap/14-ID-d <a

  8. RAPID/Roadmap/14-MT-e | Open Energy Information

    Open Energy Info (EERE)

    AFDC Printable Version Share this resource Send a link to EERE: Alternative Fuels Data Center Home Page to someone by E-mail Share EERE: Alternative Fuels Data Center Home Page on Facebook Tweet about EERE: Alternative Fuels Data Center Home Page on Twitter Bookmark EERE: Alternative Fuels Data Center Home Page onYou are now leaving Energy.gov You are now leaving Energy.gov YouKizildere I GeothermalPotentialBiopowerSolidGenerationMethodInformation TexasTexas)ID-aRAPID/Roadmap/14-ID-d <ae

  9. RAPID/Roadmap/14-NM-c | Open Energy Information

    Open Energy Info (EERE)

    AFDC Printable Version Share this resource Send a link to EERE: Alternative Fuels Data Center Home Page to someone by E-mail Share EERE: Alternative Fuels Data Center Home Page on Facebook Tweet about EERE: Alternative Fuels Data Center Home Page on Twitter Bookmark EERE: Alternative Fuels Data Center Home Page onYou are now leaving Energy.gov You are now leaving Energy.gov YouKizildere I GeothermalPotentialBiopowerSolidGenerationMethodInformation TexasTexas)ID-aRAPID/Roadmap/14-ID-d <aec

  10. RAPID/Roadmap/14-NM-e | Open Energy Information

    Open Energy Info (EERE)

    AFDC Printable Version Share this resource Send a link to EERE: Alternative Fuels Data Center Home Page to someone by E-mail Share EERE: Alternative Fuels Data Center Home Page on Facebook Tweet about EERE: Alternative Fuels Data Center Home Page on Twitter Bookmark EERE: Alternative Fuels Data Center Home Page onYou are now leaving Energy.gov You are now leaving Energy.gov YouKizildere I GeothermalPotentialBiopowerSolidGenerationMethodInformation TexasTexas)ID-aRAPID/Roadmap/14-ID-d

  11. RAPID/Roadmap/14-NV-c | Open Energy Information

    Open Energy Info (EERE)

    AFDC Printable Version Share this resource Send a link to EERE: Alternative Fuels Data Center Home Page to someone by E-mail Share EERE: Alternative Fuels Data Center Home Page on Facebook Tweet about EERE: Alternative Fuels Data Center Home Page on Twitter Bookmark EERE: Alternative Fuels Data Center Home Page onYou are now leaving Energy.gov You are now leaving Energy.gov YouKizildere I GeothermalPotentialBiopowerSolidGenerationMethodInformation TexasTexas)ID-aRAPID/Roadmap/14-ID-dc <

  12. RAPID/Roadmap/14-NV-d | Open Energy Information

    Open Energy Info (EERE)

    AFDC Printable Version Share this resource Send a link to EERE: Alternative Fuels Data Center Home Page to someone by E-mail Share EERE: Alternative Fuels Data Center Home Page on Facebook Tweet about EERE: Alternative Fuels Data Center Home Page on Twitter Bookmark EERE: Alternative Fuels Data Center Home Page onYou are now leaving Energy.gov You are now leaving Energy.gov YouKizildere I GeothermalPotentialBiopowerSolidGenerationMethodInformation TexasTexas)ID-aRAPID/Roadmap/14-ID-dc <d

  13. RAPID/Roadmap/14-NV-e | Open Energy Information

    Open Energy Info (EERE)

    AFDC Printable Version Share this resource Send a link to EERE: Alternative Fuels Data Center Home Page to someone by E-mail Share EERE: Alternative Fuels Data Center Home Page on Facebook Tweet about EERE: Alternative Fuels Data Center Home Page on Twitter Bookmark EERE: Alternative Fuels Data Center Home Page onYou are now leaving Energy.gov You are now leaving Energy.gov YouKizildere I GeothermalPotentialBiopowerSolidGenerationMethodInformation TexasTexas)ID-aRAPID/Roadmap/14-ID-dc <de

  14. RAPID/Roadmap/14-OR-b | Open Energy Information

    Open Energy Info (EERE)

    AFDC Printable Version Share this resource Send a link to EERE: Alternative Fuels Data Center Home Page to someone by E-mail Share EERE: Alternative Fuels Data Center Home Page on Facebook Tweet about EERE: Alternative Fuels Data Center Home Page on Twitter Bookmark EERE: Alternative Fuels Data Center Home Page onYou are now leaving Energy.gov You are now leaving Energy.gov YouKizildere I GeothermalPotentialBiopowerSolidGenerationMethodInformation TexasTexas)ID-aRAPID/Roadmap/14-ID-dc

  15. RAPID/Roadmap/14-OR-d | Open Energy Information

    Open Energy Info (EERE)

    AFDC Printable Version Share this resource Send a link to EERE: Alternative Fuels Data Center Home Page to someone by E-mail Share EERE: Alternative Fuels Data Center Home Page on Facebook Tweet about EERE: Alternative Fuels Data Center Home Page on Twitter Bookmark EERE: Alternative Fuels Data Center Home Page onYou are now leaving Energy.gov You are now leaving Energy.gov YouKizildere I GeothermalPotentialBiopowerSolidGenerationMethodInformation TexasTexas)ID-aRAPID/Roadmap/14-ID-dcd <

  16. RAPID/Roadmap/14-OR-f | Open Energy Information

    Open Energy Info (EERE)

    AFDC Printable Version Share this resource Send a link to EERE: Alternative Fuels Data Center Home Page to someone by E-mail Share EERE: Alternative Fuels Data Center Home Page on Facebook Tweet about EERE: Alternative Fuels Data Center Home Page on Twitter Bookmark EERE: Alternative Fuels Data Center Home Page onYou are now leaving Energy.gov You are now leaving Energy.gov YouKizildere I GeothermalPotentialBiopowerSolidGenerationMethodInformation TexasTexas)ID-aRAPID/Roadmap/14-ID-dcd <f

  17. RAPID/Roadmap/14-TX-c | Open Energy Information

    Open Energy Info (EERE)

    AFDC Printable Version Share this resource Send a link to EERE: Alternative Fuels Data Center Home Page to someone by E-mail Share EERE: Alternative Fuels Data Center Home Page on Facebook Tweet about EERE: Alternative Fuels Data Center Home Page on Twitter Bookmark EERE: Alternative Fuels Data Center Home Page onYou are now leaving Energy.gov You are now leaving Energy.gov YouKizildere I GeothermalPotentialBiopowerSolidGenerationMethodInformation TexasTexas)ID-aRAPID/Roadmap/14-ID-dcd

  18. RAPID/Roadmap/19-WA-c | Open Energy Information

    Open Energy Info (EERE)

    AFDC Printable Version Share this resource Send a link to EERE: Alternative Fuels Data Center Home Page to someone by E-mail Share EERE: Alternative Fuels Data Center Home Page on Facebook Tweet about EERE: Alternative Fuels Data Center Home Page on Twitter Bookmark EERE: Alternative Fuels Data Center Home Page onYou are now leaving Energy.gov You are now leaving Energy.gov YouKizildere I GeothermalPotentialBiopowerSolidGenerationMethodInformatione < RAPID‎ |g <RAPID/Roadmap/19-WA-c

  19. RAPID/Roadmap/7-FD-g | Open Energy Information

    Open Energy Info (EERE)

    AFDC Printable Version Share this resource Send a link to EERE: Alternative Fuels Data Center Home Page to someone by E-mail Share EERE: Alternative Fuels Data Center Home Page on Facebook Tweet about EERE: Alternative Fuels Data Center Home Page on Twitter Bookmark EERE: Alternative Fuels Data Center Home Page onYou are now leaving Energy.gov You are now leaving Energy.gov YouKizildere I GeothermalPotentialBiopowerSolidGenerationMethodInformatione < RAPID‎RAPID/Roadmap/7-FD-g <

  20. RAPID/Roadmap/7-FD-h | Open Energy Information

    Open Energy Info (EERE)

    AFDC Printable Version Share this resource Send a link to EERE: Alternative Fuels Data Center Home Page to someone by E-mail Share EERE: Alternative Fuels Data Center Home Page on Facebook Tweet about EERE: Alternative Fuels Data Center Home Page on Twitter Bookmark EERE: Alternative Fuels Data Center Home Page onYou are now leaving Energy.gov You are now leaving Energy.gov YouKizildere I GeothermalPotentialBiopowerSolidGenerationMethodInformatione < RAPID‎RAPID/Roadmap/7-FD-g <h

  1. RAPID/Roadmap/7-FD-i | Open Energy Information

    Open Energy Info (EERE)

    AFDC Printable Version Share this resource Send a link to EERE: Alternative Fuels Data Center Home Page to someone by E-mail Share EERE: Alternative Fuels Data Center Home Page on Facebook Tweet about EERE: Alternative Fuels Data Center Home Page on Twitter Bookmark EERE: Alternative Fuels Data Center Home Page onYou are now leaving Energy.gov You are now leaving Energy.gov YouKizildere I GeothermalPotentialBiopowerSolidGenerationMethodInformatione < RAPID‎RAPID/Roadmap/7-FD-g

  2. RAPID/Roadmap/7-FD-k | Open Energy Information

    Open Energy Info (EERE)

    AFDC Printable Version Share this resource Send a link to EERE: Alternative Fuels Data Center Home Page to someone by E-mail Share EERE: Alternative Fuels Data Center Home Page on Facebook Tweet about EERE: Alternative Fuels Data Center Home Page on Twitter Bookmark EERE: Alternative Fuels Data Center Home Page onYou are now leaving Energy.gov You are now leaving Energy.gov YouKizildere I GeothermalPotentialBiopowerSolidGenerationMethodInformatione <RAPID/Roadmap/7-FD-k < RAPID‎ |

  3. RAPID/Roadmap/7-HI-b | Open Energy Information

    Open Energy Info (EERE)

    AFDC Printable Version Share this resource Send a link to EERE: Alternative Fuels Data Center Home Page to someone by E-mail Share EERE: Alternative Fuels Data Center Home Page on Facebook Tweet about EERE: Alternative Fuels Data Center Home Page on Twitter Bookmark EERE: Alternative Fuels Data Center Home Page onYou are now leaving Energy.gov You are now leaving Energy.gov YouKizildere I GeothermalPotentialBiopowerSolidGenerationMethodInformatione <RAPID/Roadmap/7-FD-k < RAPID‎ |b

  4. RAPID/Roadmap/7-ID-c | Open Energy Information

    Open Energy Info (EERE)

    AFDC Printable Version Share this resource Send a link to EERE: Alternative Fuels Data Center Home Page to someone by E-mail Share EERE: Alternative Fuels Data Center Home Page on Facebook Tweet about EERE: Alternative Fuels Data Center Home Page on Twitter Bookmark EERE: Alternative Fuels Data Center Home Page onYou are now leaving Energy.gov You are now leaving Energy.gov YouKizildere I GeothermalPotentialBiopowerSolidGenerationMethodInformatione <RAPID/Roadmap/7-FD-k < RAPID‎ |bc

  5. RAPID/Roadmap/7-MT-a | Open Energy Information

    Open Energy Info (EERE)

    AFDC Printable Version Share this resource Send a link to EERE: Alternative Fuels Data Center Home Page to someone by E-mail Share EERE: Alternative Fuels Data Center Home Page on Facebook Tweet about EERE: Alternative Fuels Data Center Home Page on Twitter Bookmark EERE: Alternative Fuels Data Center Home Page onYou are now leaving Energy.gov You are now leaving Energy.gov YouKizildere I GeothermalPotentialBiopowerSolidGenerationMethodInformatione <RAPID/Roadmap/7-FD-k < RAPID‎

  6. RAPID/Roadmap/7-NV-c | Open Energy Information

    Open Energy Info (EERE)

    AFDC Printable Version Share this resource Send a link to EERE: Alternative Fuels Data Center Home Page to someone by E-mail Share EERE: Alternative Fuels Data Center Home Page on Facebook Tweet about EERE: Alternative Fuels Data Center Home Page on Twitter Bookmark EERE: Alternative Fuels Data Center Home Page onYou are now leaving Energy.gov You are now leaving Energy.gov YouKizildere I GeothermalPotentialBiopowerSolidGenerationMethodInformatione <RAPID/Roadmap/7-FD-k < RAPID‎c

  7. RAPID/Roadmap/7-OR-b | Open Energy Information

    Open Energy Info (EERE)

    AFDC Printable Version Share this resource Send a link to EERE: Alternative Fuels Data Center Home Page to someone by E-mail Share EERE: Alternative Fuels Data Center Home Page on Facebook Tweet about EERE: Alternative Fuels Data Center Home Page on Twitter Bookmark EERE: Alternative Fuels Data Center Home Page onYou are now leaving Energy.gov You are now leaving Energy.gov YouKizildere I GeothermalPotentialBiopowerSolidGenerationMethodInformatione <RAPID/Roadmap/7-FD-k < RAPID‎cb

  8. RAPID/Roadmap/7-OR-d | Open Energy Information

    Open Energy Info (EERE)

    AFDC Printable Version Share this resource Send a link to EERE: Alternative Fuels Data Center Home Page to someone by E-mail Share EERE: Alternative Fuels Data Center Home Page on Facebook Tweet about EERE: Alternative Fuels Data Center Home Page on Twitter Bookmark EERE: Alternative Fuels Data Center Home Page onYou are now leaving Energy.gov You are now leaving Energy.gov YouKizildere I GeothermalPotentialBiopowerSolidGenerationMethodInformatione <RAPID/Roadmap/7-FD-k < RAPID‎cbd

  9. RAPID/Roadmap/7-TX-a | Open Energy Information

    Open Energy Info (EERE)

    AFDC Printable Version Share this resource Send a link to EERE: Alternative Fuels Data Center Home Page to someone by E-mail Share EERE: Alternative Fuels Data Center Home Page on Facebook Tweet about EERE: Alternative Fuels Data Center Home Page on Twitter Bookmark EERE: Alternative Fuels Data Center Home Page onYou are now leaving Energy.gov You are now leaving Energy.gov YouKizildere I GeothermalPotentialBiopowerSolidGenerationMethodInformatione <RAPID/Roadmap/7-FD-k <

  10. RAPID/Roadmap/7-TX-c | Open Energy Information

    Open Energy Info (EERE)

    AFDC Printable Version Share this resource Send a link to EERE: Alternative Fuels Data Center Home Page to someone by E-mail Share EERE: Alternative Fuels Data Center Home Page on Facebook Tweet about EERE: Alternative Fuels Data Center Home Page on Twitter Bookmark EERE: Alternative Fuels Data Center Home Page onYou are now leaving Energy.gov You are now leaving Energy.gov YouKizildere I GeothermalPotentialBiopowerSolidGenerationMethodInformatione <RAPID/Roadmap/7-FD-k <TX-c <

  11. RAPID/Roadmap/7-WA-a | Open Energy Information

    Open Energy Info (EERE)

    AFDC Printable Version Share this resource Send a link to EERE: Alternative Fuels Data Center Home Page to someone by E-mail Share EERE: Alternative Fuels Data Center Home Page on Facebook Tweet about EERE: Alternative Fuels Data Center Home Page on Twitter Bookmark EERE: Alternative Fuels Data Center Home Page onYou are now leaving Energy.gov You are now leaving Energy.gov YouKizildere I GeothermalPotentialBiopowerSolidGenerationMethodInformatione <RAPID/Roadmap/7-FD-k <TX-c <WA-a

  12. RAPID/Roadmap/8-AZ-a | Open Energy Information

    Open Energy Info (EERE)

    AFDC Printable Version Share this resource Send a link to EERE: Alternative Fuels Data Center Home Page to someone by E-mail Share EERE: Alternative Fuels Data Center Home Page on Facebook Tweet about EERE: Alternative Fuels Data Center Home Page on Twitter Bookmark EERE: Alternative Fuels Data Center Home Page onYou are now leaving Energy.gov You are now leaving Energy.gov YouKizildere I GeothermalPotentialBiopowerSolidGenerationMethodInformatione <RAPID/Roadmap/7-FD-k <TX-c

  13. RAPID/Roadmap/8-CA-a | Open Energy Information

    Open Energy Info (EERE)

    AFDC Printable Version Share this resource Send a link to EERE: Alternative Fuels Data Center Home Page to someone by E-mail Share EERE: Alternative Fuels Data Center Home Page on Facebook Tweet about EERE: Alternative Fuels Data Center Home Page on Twitter Bookmark EERE: Alternative Fuels Data Center Home Page onYou are now leaving Energy.gov You are now leaving Energy.gov YouKizildere I GeothermalPotentialBiopowerSolidGenerationMethodInformatione <RAPID/Roadmap/7-FD-k <TX-ca <

  14. RAPID/Roadmap/8-CA-d | Open Energy Information

    Open Energy Info (EERE)

    AFDC Printable Version Share this resource Send a link to EERE: Alternative Fuels Data Center Home Page to someone by E-mail Share EERE: Alternative Fuels Data Center Home Page on Facebook Tweet about EERE: Alternative Fuels Data Center Home Page on Twitter Bookmark EERE: Alternative Fuels Data Center Home Page onYou are now leaving Energy.gov You are now leaving Energy.gov YouKizildere I GeothermalPotentialBiopowerSolidGenerationMethodInformatione <RAPID/Roadmap/7-FD-k <TX-ca <d

  15. RAPID/Roadmap/8-CA-f | Open Energy Information

    Open Energy Info (EERE)

    AFDC Printable Version Share this resource Send a link to EERE: Alternative Fuels Data Center Home Page to someone by E-mail Share EERE: Alternative Fuels Data Center Home Page on Facebook Tweet about EERE: Alternative Fuels Data Center Home Page on Twitter Bookmark EERE: Alternative Fuels Data Center Home Page onYou are now leaving Energy.gov You are now leaving Energy.gov YouKizildere I GeothermalPotentialBiopowerSolidGenerationMethodInformatione <RAPID/Roadmap/7-FD-k <TX-ca <df

  16. RAPID/Roadmap/8-CO-a | Open Energy Information

    Open Energy Info (EERE)

    AFDC Printable Version Share this resource Send a link to EERE: Alternative Fuels Data Center Home Page to someone by E-mail Share EERE: Alternative Fuels Data Center Home Page on Facebook Tweet about EERE: Alternative Fuels Data Center Home Page on Twitter Bookmark EERE: Alternative Fuels Data Center Home Page onYou are now leaving Energy.gov You are now leaving Energy.gov YouKizildere I GeothermalPotentialBiopowerSolidGenerationMethodInformatione <RAPID/Roadmap/7-FD-k <TX-ca <dfa

  17. RAPID/Roadmap/8-CO-c | Open Energy Information

    Open Energy Info (EERE)

    AFDC Printable Version Share this resource Send a link to EERE: Alternative Fuels Data Center Home Page to someone by E-mail Share EERE: Alternative Fuels Data Center Home Page on Facebook Tweet about EERE: Alternative Fuels Data Center Home Page on Twitter Bookmark EERE: Alternative Fuels Data Center Home Page onYou are now leaving Energy.gov You are now leaving Energy.gov YouKizildere I GeothermalPotentialBiopowerSolidGenerationMethodInformatione <RAPID/Roadmap/7-FD-k <TX-ca <dfac

  18. RAPID/Roadmap/8-FD-b | Open Energy Information

    Open Energy Info (EERE)

    AFDC Printable Version Share this resource Send a link to EERE: Alternative Fuels Data Center Home Page to someone by E-mail Share EERE: Alternative Fuels Data Center Home Page on Facebook Tweet about EERE: Alternative Fuels Data Center Home Page on Twitter Bookmark EERE: Alternative Fuels Data Center Home Page onYou are now leaving Energy.gov You are now leaving Energy.gov YouKizildere I GeothermalPotentialBiopowerSolidGenerationMethodInformatione <RAPID/Roadmap/7-FD-k <TX-ca

  19. RAPID/Roadmap/8-HI-a | Open Energy Information

    Open Energy Info (EERE)

    AFDC Printable Version Share this resource Send a link to EERE: Alternative Fuels Data Center Home Page to someone by E-mail Share EERE: Alternative Fuels Data Center Home Page on Facebook Tweet about EERE: Alternative Fuels Data Center Home Page on Twitter Bookmark EERE: Alternative Fuels Data Center Home Page onYou are now leaving Energy.gov You are now leaving Energy.gov YouKizildere I GeothermalPotentialBiopowerSolidGenerationMethodInformatione <RAPID/Roadmap/7-FD-k <TX-caHI-a <

  20. RAPID/Roadmap/8-ID-c | Open Energy Information

    Open Energy Info (EERE)

    AFDC Printable Version Share this resource Send a link to EERE: Alternative Fuels Data Center Home Page to someone by E-mail Share EERE: Alternative Fuels Data Center Home Page on Facebook Tweet about EERE: Alternative Fuels Data Center Home Page on Twitter Bookmark EERE: Alternative Fuels Data Center Home Page onYou are now leaving Energy.gov You are now leaving Energy.gov YouKizildere I GeothermalPotentialBiopowerSolidGenerationMethodInformatione <RAPID/Roadmap/7-FD-k <TX-caHI-a

  1. RAPID/Roadmap/8-NM-a | Open Energy Information

    Open Energy Info (EERE)

    AFDC Printable Version Share this resource Send a link to EERE: Alternative Fuels Data Center Home Page to someone by E-mail Share EERE: Alternative Fuels Data Center Home Page on Facebook Tweet about EERE: Alternative Fuels Data Center Home Page on Twitter Bookmark EERE: Alternative Fuels Data Center Home Page onYou are now leaving Energy.gov You are now leaving Energy.gov YouKizildere I GeothermalPotentialBiopowerSolidGenerationMethodInformatione <RAPID/Roadmap/7-FD-k <TX-caHI-aa

  2. RAPID/Roadmap/8-NM-c | Open Energy Information

    Open Energy Info (EERE)

    AFDC Printable Version Share this resource Send a link to EERE: Alternative Fuels Data Center Home Page to someone by E-mail Share EERE: Alternative Fuels Data Center Home Page on Facebook Tweet about EERE: Alternative Fuels Data Center Home Page on Twitter Bookmark EERE: Alternative Fuels Data Center Home Page onYou are now leaving Energy.gov You are now leaving Energy.gov YouKizildere I GeothermalPotentialBiopowerSolidGenerationMethodInformatione <RAPID/Roadmap/7-FD-k <TX-caHI-aac

  3. RAPID/Roadmap/8-NM-d | Open Energy Information

    Open Energy Info (EERE)

    AFDC Printable Version Share this resource Send a link to EERE: Alternative Fuels Data Center Home Page to someone by E-mail Share EERE: Alternative Fuels Data Center Home Page on Facebook Tweet about EERE: Alternative Fuels Data Center Home Page on Twitter Bookmark EERE: Alternative Fuels Data Center Home Page onYou are now leaving Energy.gov You are now leaving Energy.gov YouKizildere I GeothermalPotentialBiopowerSolidGenerationMethodInformatione <RAPID/Roadmap/7-FD-k <TX-caHI-aacd

  4. RAPID/Roadmap/8-NM-f | Open Energy Information

    Open Energy Info (EERE)

    AFDC Printable Version Share this resource Send a link to EERE: Alternative Fuels Data Center Home Page to someone by E-mail Share EERE: Alternative Fuels Data Center Home Page on Facebook Tweet about EERE: Alternative Fuels Data Center Home Page on Twitter Bookmark EERE: Alternative Fuels Data Center Home Page onYou are now leaving Energy.gov You are now leaving Energy.gov YouKizildere I GeothermalPotentialBiopowerSolidGenerationMethodInformatione <RAPID/Roadmap/7-FD-k <TX-caHI-aacdf

  5. RAPID/Roadmap/8-NV-c | Open Energy Information

    Open Energy Info (EERE)

    AFDC Printable Version Share this resource Send a link to EERE: Alternative Fuels Data Center Home Page to someone by E-mail Share EERE: Alternative Fuels Data Center Home Page on Facebook Tweet about EERE: Alternative Fuels Data Center Home Page on Twitter Bookmark EERE: Alternative Fuels Data Center Home Page onYou are now leaving Energy.gov You are now leaving Energy.gov YouKizildere I GeothermalPotentialBiopowerSolidGenerationMethodInformatione <RAPID/Roadmap/7-FD-k <TX-caHI-aacdfc

  6. RAPID/Roadmap/8-NV-d | Open Energy Information

    Open Energy Info (EERE)

    AFDC Printable Version Share this resource Send a link to EERE: Alternative Fuels Data Center Home Page to someone by E-mail Share EERE: Alternative Fuels Data Center Home Page on Facebook Tweet about EERE: Alternative Fuels Data Center Home Page on Twitter Bookmark EERE: Alternative Fuels Data Center Home Page onYou are now leaving Energy.gov You are now leaving Energy.gov YouKizildere I GeothermalPotentialBiopowerSolidGenerationMethodInformatione <RAPID/Roadmap/7-FD-k

  7. RAPID/Roadmap/8-OR-c | Open Energy Information

    Open Energy Info (EERE)

    AFDC Printable Version Share this resource Send a link to EERE: Alternative Fuels Data Center Home Page to someone by E-mail Share EERE: Alternative Fuels Data Center Home Page on Facebook Tweet about EERE: Alternative Fuels Data Center Home Page on Twitter Bookmark EERE: Alternative Fuels Data Center Home Page onYou are now leaving Energy.gov You are now leaving Energy.gov YouKizildere I GeothermalPotentialBiopowerSolidGenerationMethodInformatione <RAPID/Roadmap/7-FD-kc < RAPID‎ |

  8. RAPID/Roadmap/8-TX-a | Open Energy Information

    Open Energy Info (EERE)

    AFDC Printable Version Share this resource Send a link to EERE: Alternative Fuels Data Center Home Page to someone by E-mail Share EERE: Alternative Fuels Data Center Home Page on Facebook Tweet about EERE: Alternative Fuels Data Center Home Page on Twitter Bookmark EERE: Alternative Fuels Data Center Home Page onYou are now leaving Energy.gov You are now leaving Energy.gov YouKizildere I GeothermalPotentialBiopowerSolidGenerationMethodInformatione <RAPID/Roadmap/7-FD-kc < RAPID‎

  9. RAPID/Roadmap/8-UT-a | Open Energy Information

    Open Energy Info (EERE)

    AFDC Printable Version Share this resource Send a link to EERE: Alternative Fuels Data Center Home Page to someone by E-mail Share EERE: Alternative Fuels Data Center Home Page on Facebook Tweet about EERE: Alternative Fuels Data Center Home Page on Twitter Bookmark EERE: Alternative Fuels Data Center Home Page onYou are now leaving Energy.gov You are now leaving Energy.gov YouKizildere I GeothermalPotentialBiopowerSolidGenerationMethodInformatione <RAPID/Roadmap/7-FD-kc < RAPID‎a

  10. RAPID/Roadmap/8-UT-c | Open Energy Information

    Open Energy Info (EERE)

    AFDC Printable Version Share this resource Send a link to EERE: Alternative Fuels Data Center Home Page to someone by E-mail Share EERE: Alternative Fuels Data Center Home Page on Facebook Tweet about EERE: Alternative Fuels Data Center Home Page on Twitter Bookmark EERE: Alternative Fuels Data Center Home Page onYou are now leaving Energy.gov You are now leaving Energy.gov YouKizildere I GeothermalPotentialBiopowerSolidGenerationMethodInformatione <RAPID/Roadmap/7-FD-kc < RAPID‎ac

  11. RAPID/Roadmap/8-WA-a | Open Energy Information

    Open Energy Info (EERE)

    AFDC Printable Version Share this resource Send a link to EERE: Alternative Fuels Data Center Home Page to someone by E-mail Share EERE: Alternative Fuels Data Center Home Page on Facebook Tweet about EERE: Alternative Fuels Data Center Home Page on Twitter Bookmark EERE: Alternative Fuels Data Center Home Page onYou are now leaving Energy.gov You are now leaving Energy.gov YouKizildere I GeothermalPotentialBiopowerSolidGenerationMethodInformatione <RAPID/Roadmap/7-FD-kc <

  12. RAPID/Roadmap/9-FD-a | Open Energy Information

    Open Energy Info (EERE)

    AFDC Printable Version Share this resource Send a link to EERE: Alternative Fuels Data Center Home Page to someone by E-mail Share EERE: Alternative Fuels Data Center Home Page on Facebook Tweet about EERE: Alternative Fuels Data Center Home Page on Twitter Bookmark EERE: Alternative Fuels Data Center Home Page onYou are now leaving Energy.gov You are now leaving Energy.gov YouKizildere I GeothermalPotentialBiopowerSolidGenerationMethodInformatione <RAPID/Roadmap/7-FD-kc <

  13. RAPID/Roadmap/9-FD-f | Open Energy Information

    Open Energy Info (EERE)

    AFDC Printable Version Share this resource Send a link to EERE: Alternative Fuels Data Center Home Page to someone by E-mail Share EERE: Alternative Fuels Data Center Home Page on Facebook Tweet about EERE: Alternative Fuels Data Center Home Page on Twitter Bookmark EERE: Alternative Fuels Data Center Home Page onYou are now leaving Energy.gov You are now leaving Energy.gov YouKizildere I GeothermalPotentialBiopowerSolidGenerationMethodInformatione <RAPID/Roadmap/7-FD-kc

  14. RAPID/Roadmap/9-FD-i | Open Energy Information

    Open Energy Info (EERE)

    AFDC Printable Version Share this resource Send a link to EERE: Alternative Fuels Data Center Home Page to someone by E-mail Share EERE: Alternative Fuels Data Center Home Page on Facebook Tweet about EERE: Alternative Fuels Data Center Home Page on Twitter Bookmark EERE: Alternative Fuels Data Center Home Page onYou are now leaving Energy.gov You are now leaving Energy.gov YouKizildere I GeothermalPotentialBiopowerSolidGenerationMethodInformatione <RAPID/Roadmap/7-FD-kcFD-i < RAPID‎

  15. RAPID/Roadmap/9-FD-j | Open Energy Information

    Open Energy Info (EERE)

    AFDC Printable Version Share this resource Send a link to EERE: Alternative Fuels Data Center Home Page to someone by E-mail Share EERE: Alternative Fuels Data Center Home Page on Facebook Tweet about EERE: Alternative Fuels Data Center Home Page on Twitter Bookmark EERE: Alternative Fuels Data Center Home Page onYou are now leaving Energy.gov You are now leaving Energy.gov YouKizildere I GeothermalPotentialBiopowerSolidGenerationMethodInformatione <RAPID/Roadmap/7-FD-kcFD-i <

  16. RAPID/Roadmap/9-FD-k | Open Energy Information

    Open Energy Info (EERE)

    AFDC Printable Version Share this resource Send a link to EERE: Alternative Fuels Data Center Home Page to someone by E-mail Share EERE: Alternative Fuels Data Center Home Page on Facebook Tweet about EERE: Alternative Fuels Data Center Home Page on Twitter Bookmark EERE: Alternative Fuels Data Center Home Page onYou are now leaving Energy.gov You are now leaving Energy.gov YouKizildere I GeothermalPotentialBiopowerSolidGenerationMethodInformatione <RAPID/Roadmap/7-FD-kcFD-i <k <

  17. RAPID/Roadmap/9-HI-a | Open Energy Information

    Open Energy Info (EERE)

    AFDC Printable Version Share this resource Send a link to EERE: Alternative Fuels Data Center Home Page to someone by E-mail Share EERE: Alternative Fuels Data Center Home Page on Facebook Tweet about EERE: Alternative Fuels Data Center Home Page on Twitter Bookmark EERE: Alternative Fuels Data Center Home Page onYou are now leaving Energy.gov You are now leaving Energy.gov YouKizildere I GeothermalPotentialBiopowerSolidGenerationMethodInformatione <RAPID/Roadmap/7-FD-kcFD-i <k <a

  18. RAPID/Roadmap/9-ID-a | Open Energy Information

    Open Energy Info (EERE)

    AFDC Printable Version Share this resource Send a link to EERE: Alternative Fuels Data Center Home Page to someone by E-mail Share EERE: Alternative Fuels Data Center Home Page on Facebook Tweet about EERE: Alternative Fuels Data Center Home Page on Twitter Bookmark EERE: Alternative Fuels Data Center Home Page onYou are now leaving Energy.gov You are now leaving Energy.gov YouKizildere I GeothermalPotentialBiopowerSolidGenerationMethodInformatione <RAPID/Roadmap/7-FD-kcFD-i <k

  19. RAPID/Roadmap/9-OR-a | Open Energy Information

    Open Energy Info (EERE)

    AFDC Printable Version Share this resource Send a link to EERE: Alternative Fuels Data Center Home Page to someone by E-mail Share EERE: Alternative Fuels Data Center Home Page on Facebook Tweet about EERE: Alternative Fuels Data Center Home Page on Twitter Bookmark EERE: Alternative Fuels Data Center Home Page onYou are now leaving Energy.gov You are now leaving Energy.gov YouKizildere I GeothermalPotentialBiopowerSolidGenerationMethodInformatione <RAPID/Roadmap/7-FD-kcFD-i <kOR-a

  20. RAPID/Roadmap/9-WA-a | Open Energy Information

    Open Energy Info (EERE)

    AFDC Printable Version Share this resource Send a link to EERE: Alternative Fuels Data Center Home Page to someone by E-mail Share EERE: Alternative Fuels Data Center Home Page on Facebook Tweet about EERE: Alternative Fuels Data Center Home Page on Twitter Bookmark EERE: Alternative Fuels Data Center Home Page onYou are now leaving Energy.gov You are now leaving Energy.gov YouKizildere I GeothermalPotentialBiopowerSolidGenerationMethodInformatione <RAPID/Roadmap/7-FD-kcFD-i <kOR-aa

  1. RAPID/Roadmap/9-WA-b | Open Energy Information

    Open Energy Info (EERE)

    AFDC Printable Version Share this resource Send a link to EERE: Alternative Fuels Data Center Home Page to someone by E-mail Share EERE: Alternative Fuels Data Center Home Page on Facebook Tweet about EERE: Alternative Fuels Data Center Home Page on Twitter Bookmark EERE: Alternative Fuels Data Center Home Page onYou are now leaving Energy.gov You are now leaving Energy.gov YouKizildere I GeothermalPotentialBiopowerSolidGenerationMethodInformatione <RAPID/Roadmap/7-FD-kcFD-i <kOR-aab

  2. RAPID/Roadmap/9-WA-c | Open Energy Information

    Open Energy Info (EERE)

    AFDC Printable Version Share this resource Send a link to EERE: Alternative Fuels Data Center Home Page to someone by E-mail Share EERE: Alternative Fuels Data Center Home Page on Facebook Tweet about EERE: Alternative Fuels Data Center Home Page on Twitter Bookmark EERE: Alternative Fuels Data Center Home Page onYou are now leaving Energy.gov You are now leaving Energy.gov YouKizildere I GeothermalPotentialBiopowerSolidGenerationMethodInformatione <RAPID/Roadmap/7-FD-kcFD-i <kOR-aabc

  3. RAPID/Roadmap/Geo/Sections | Open Energy Information

    Open Energy Info (EERE)

    AFDC Printable Version Share this resource Send a link to EERE: Alternative Fuels Data Center Home Page to someone by E-mail Share EERE: Alternative Fuels Data Center Home Page on Facebook Tweet about EERE: Alternative Fuels Data Center Home Page on Twitter Bookmark EERE: Alternative Fuels Data Center Home Page onYou are now leaving Energy.gov You are now leaving Energy.gov YouKizildere I GeothermalPotentialBiopowerSolidGenerationMethodInformatione <RAPID/Roadmap/7-FD-kcFD-iGeo <source

  4. RAPID/Solar/Environment/California | Open Energy Information

    Open Energy Info (EERE)

    AFDC Printable Version Share this resource Send a link to EERE: Alternative Fuels Data Center Home Page to someone by E-mail Share EERE: Alternative Fuels Data Center Home Page on Facebook Tweet about EERE: Alternative Fuels Data Center Home Page on Twitter Bookmark EERE: Alternative Fuels Data Center Home Page onYou are now leaving Energy.gov You are now leaving Energy.gov YouKizildere I GeothermalPotentialBiopowerSolidGenerationMethodInformatione <RAPID/Roadmap/7-FD-kcFD-iGeoCalifornia

  5. Controlled, Rapid Deposition of Structured Coatings from Micro-and Nanoparticle Suspensions

    E-Print Network [OSTI]

    Velev, Orlin D.

    Controlled, Rapid Deposition of Structured Coatings from Micro- and Nanoparticle Suspensions Brian Thin nanoparticle coatings can also impart decorative functions to surfaces, modify their wetting of micro- and nanoparticle coatings require the development of rapid, inexpensive, and easily controlled

  6. Rapid extraction of dissolved inorganic carbon from seawater and groundwater samples for radiocarbon dating

    E-Print Network [OSTI]

    Gospodinova, Kalina Doneva

    2012-01-01T23:59:59.000Z

    The focus of this thesis is the design and development of a system for rapid extraction of dissolved inorganic carbon from seawater and groundwater samples for radiocarbon dating. The Rapid Extraction of Dissolved Inorganic ...

  7. Emergency delivery of Vasopressin from an implantable MEMS rapid drug delivery device

    E-Print Network [OSTI]

    Ho Duc, Hong Linh, 1978-

    2009-01-01T23:59:59.000Z

    An implantable rapid drug delivery device based on micro-electro-mechanical systems (MEMS) technology was designed, fabricated and validated for the in vivo rapid delivery of vasopressin in a rabbit model. In vitro ...

  8. Use of a Diesel Fuel Processor for Rapid and Efficient Regeneration...

    Office of Energy Efficiency and Renewable Energy (EERE) Indexed Site

    Use of a Diesel Fuel Processor for Rapid and Efficient Regeneration of Single Leg NOx Adsorber Systems Use of a Diesel Fuel Processor for Rapid and Efficient Regeneration of Single...

  9. Realizability of Reynolds stress and rapid pressure-strain correlation models in turbulence

    E-Print Network [OSTI]

    Sambasivam, Amarnath

    2003-01-01T23:59:59.000Z

    . Computational evidence is used to demonstrate that realizability violation of Reynolds stress is always preceded by realizability violation of rapid pressure-strain correlation. Further, the physical failing in the model that leads at first to unrealizable rapid...

  10. Rapid Aging and Poisoning Protocols to AssessFuel and Lube Effects...

    Office of Energy Efficiency and Renewable Energy (EERE) Indexed Site

    Rapid Aging and Poisoning Protocols to AssessFuel and Lube Effects on Diesel Aftertreatment (Agreement 13415) Rapid Aging and Poisoning Protocols to AssessFuel and Lube Effects on...

  11. A Study of Selected Chemical and Biological Conditions of the Lower Trinity River and the Upper Trinity Bay

    E-Print Network [OSTI]

    Baldauf, R. J.

    will serve as an effective barrier to salt water. Approximately 12,500 acres of marsh behind the dam will be come a freshwater conservation pool. The marsh area below the dam (8,200 acres) will also be modified through changes in the freshwater flow...

  12. Surface plasmon resonance assisted rapid laser joining of glass

    SciTech Connect (OSTI)

    Zolotovskaya, Svetlana A.; Tang, Guang; Abdolvand, Amin, E-mail: a.abdolvand@dundee.ac.uk [School of Engineering, Physics and Mathematics, University of Dundee, Dundee DD1 4HN (United Kingdom); Wang, Zengbo [School of Electronic Engineering, Bangor University, Bangor LL57 1UT (United Kingdom)

    2014-08-25T23:59:59.000Z

    Rapid and strong joining of clear glass to glass containing randomly distributed embedded spherical silver nanoparticles upon nanosecond pulsed laser irradiation (?40?ns and repetition rate of 100?kHz) at 532?nm is demonstrated. The embedded silver nanoparticles were ?30–40?nm in diameter, contained in a thin surface layer of ?10??m. A joint strength of 12.5?MPa was achieved for a laser fluence of only ?0.13?J/cm{sup 2} and scanning speed of 10?mm/s. The bonding mechanism is discussed in terms of absorption of the laser energy by nanoparticles and the transfer of the accumulated localised heat to the surrounding glass leading to the local melting and formation of a strong bond. The presented technique is scalable and overcomes a number of serious challenges for a widespread adoption of laser-assisted rapid joining of glass substrates, enabling applications in the manufacture of microelectronic devices, sensors, micro-fluidic, and medical devices.

  13. On the rapidly cooling interior of supergalactic winds

    E-Print Network [OSTI]

    S. Silich; G. Tenorio-Tagle; C. Munoz-Tunon

    2003-03-11T23:59:59.000Z

    The steady state numerical solution and two dimensional hydrodynamic calculations of supergalactic winds generated by super star clusters are presented. Two possible regimes: quasi-adiabatic and strongly radiative are thoroughly discussed. It is shown that superwinds driven by compact and powerful starbursts undergo catastrophic cooling close to their sources, and establish a temperature distribution radically different from those obtained in the adiabatic solution. At the same time, both velocity and density radial distributions remain almost unchanged given the speed of the rapidly diverging flow. The rapid fall in temperature as a function of radius reduces the size of the zone radiating in X-rays and decreases the superwind X-ray luminosity. At the same time, cooling brings the 10$^4$ K boundary closer to the wind center, and promotes the establishment of an extended ionized fast moving envelope. This should show up as a weak and broad ($\\sim 1000$ km s$^{-1}$) line emission component at the base of the much narrower line caused by the central HII region.

  14. On the interface instability during rapid evaporation in microgravity

    SciTech Connect (OSTI)

    Juric, D. [Los Alamos National Lab., NM (United States). Theoretical Div.

    1997-05-01T23:59:59.000Z

    The rapid evaporation of a superheated liquid (vapor explosion) under microgravity conditions is studied by direct numerical simulation. The time-dependent Navier-Stokes and energy equations coupled to the interface dynamics are solved using a two-dimensional finite-difference/front-tracking method. Large interface deformations, topology change, latent heat, surface tension and unequal material properties between the liquid and vapor phases are included in the simulations. A comparison of numerical results to the exact solution of a one-dimensional test problem shows excellent agreement. For the two-dimensional rapid evaporation problem, the vapor volume growth rate and unstable interface dynamics are studied for increasing levels of initial liquid superheat. As the superheat is increased the liquid-vapor interface experiences increasingly unstable energetic growth. These results indicate that heat transfer plays a very important role in the instability mechanism leading to vapor explosions. It is suggested that the Mullins-Sekerka instability could play a role in the instability initiation mechanism.

  15. Rapid model building of ?-sheets in electron-density maps

    SciTech Connect (OSTI)

    Terwilliger, Thomas C., E-mail: terwilliger@lanl.gov [Los Alamos National Laboratory, Los Alamos, NM 87545 (United States)

    2010-03-01T23:59:59.000Z

    A method for rapid model building of ?-sheets at moderate resolution is presented. A method for rapidly building ?-sheets into electron-density maps is presented. ?-Strands are identified as tubes of high density adjacent to and nearly parallel to other tubes of density. The alignment and direction of each strand are identified from the pattern of high density corresponding to carbonyl and C{sup ?} atoms along the strand averaged over all repeats present in the strand. The ?-strands obtained are then assembled into a single atomic model of the ?-sheet regions. The method was tested on a set of 42 experimental electron-density maps at resolutions ranging from 1.5 to 3.8 Ĺ. The ?-sheet regions were nearly completely built in all but two cases, the exceptions being one structure at 2.5 Ĺ resolution in which a third of the residues in ?-sheets were built and a structure at 3.8 Ĺ in which under 10% were built. The overall average r.m.s.d. of main-chain atoms in the residues built using this method compared with refined models of the structures was 1.5 Ĺ.

  16. Rapid model building of ?-helices in electron-density maps

    SciTech Connect (OSTI)

    Terwilliger, Thomas C., E-mail: terwilliger@lanl.gov [Los Alamos National Laboratory, Los Alamos, NM 87545 (United States)

    2010-03-01T23:59:59.000Z

    A method for rapid model building of ?-helices at moderate resolution is presented. A method for the identification of ?-helices in electron-density maps at low resolution followed by interpretation at moderate to high resolution is presented. Rapid identification is achieved at low resolution, where ?-helices appear as tubes of density. The positioning and direction of the ?-helices is obtained at moderate to high resolution, where the positions of side chains can be seen. The method was tested on a set of 42 experimental electron-density maps at resolutions ranging from 1.5 to 3.8 Ĺ. An average of 63% of the ?-helical residues in these proteins were built and an average of 76% of the residues built matched helical residues in the refined models of the proteins. The overall average r.m.s.d. between main-chain atoms in the modeled ?-helices and the nearest atom with the same name in the refined models of the proteins was 1.3 Ĺ.

  17. Integration of rapid prototyping into design and manufacturing

    SciTech Connect (OSTI)

    Atwood, C.L.; McCarty, G.D.; Pardo, B.T.; Bryce, E.A.

    1993-10-01T23:59:59.000Z

    The introduction of rapid prototyping machines into the marketplace promises to revolutionize the process of producing prototype parts with production-like quality. In the age of concurrent engineering and agile manufacturing, it is necessary to exploit applicable new technologies as soon as they become available. The driving force behind integrating these evolutionary processes into the design and manufacture of prototype parts is the need to reduce lead times and fabrication costs, improve efficiency, and increase flexibility without sacrificing quality. Sandia utilizes Stereolithography (SL) and Selective Laser Sintering (SLS) capabilities to support internal design and manufacturing efforts. SL is used in the design iteration process to produce proof-of-concept models, hands-on models for design reviews, fit-check models, visual aids for manufacturing, and functional parts in assemblies. SLS is used to produce wax patterns for the lost wax process of investment casting in support of an internal Sandia National Laboratories program called FASTCAST which integrates experimental and computational technologies into the investment casting process. This presentation will provide a brief overview of the SL and SLS processes and address our experiences with these technologies from the standpoints of application, accuracy, surface finish, and feature definition. Also presented will be several examples of prototype parts manufactured by the Stereolithography and Selective Laser Sintering rapid prototyping machines.

  18. REAL-TIME ACTIVE PIPELINE INTEGRITY DETECTION (RAPID) SYSTEM FOR CORROSION DETECTION AND QUANTIFICATION

    E-Print Network [OSTI]

    Paris-Sud XI, Université de

    alone there are over 2 million miles of natural gas transmission and distribution pipeline providing 24REAL-TIME ACTIVE PIPELINE INTEGRITY DETECTION (RAPID) SYSTEM FOR CORROSION DETECTION detection Acellent has developed a Real-time Active Pipeline Integrity Detection (RAPID) system. The RAPID

  19. Rapid chemotactic response enables marine bacteria to exploit ephemeral microscale nutrient patches

    E-Print Network [OSTI]

    Entekhabi, Dara

    chemotaxis model Escherichia coli, leading to twice the nutrient exposure. We demonstrate that such rapidRapid chemotactic response enables marine bacteria to exploit ephemeral microscale nutrient patches mechanisms dissipate them. Here we show that the rapid chemo- tactic response of the marine bacterium

  20. Elastic uplift in southeast Greenland due to rapid ice mass loss Shfaqat A. Khan,1

    E-Print Network [OSTI]

    Larson, Kristine

    Elastic uplift in southeast Greenland due to rapid ice mass loss Shfaqat A. Khan,1 John Wahr,2] The rapid unloading of ice from the southeastern sector of the Greenland ice sheet between 2001 and 2006), Elastic uplift in southeast Greenland due to rapid ice mass loss, Geophys. Res. Lett., 34, L21701, doi:10

  1. Applying Bayesian belief networks in rapid response situations

    SciTech Connect (OSTI)

    Gibson, William L [Los Alamos National Laboratory; Deborah, Leishman, A. [Los Alamos National Laboratory; Van Eeckhout, Edward [Los Alamos National Laboratory

    2008-01-01T23:59:59.000Z

    The authors have developed an enhanced Bayesian analysis tool called the Integrated Knowledge Engine (IKE) for monitoring and surveillance. The enhancements are suited for Rapid Response Situations where decisions must be made based on uncertain and incomplete evidence from many diverse and heterogeneous sources. The enhancements extend the probabilistic results of the traditional Bayesian analysis by (1) better quantifying uncertainty arising from model parameter uncertainty and uncertain evidence, (2) optimizing the collection of evidence to reach conclusions more quickly, and (3) allowing the analyst to determine the influence of the remaining evidence that cannot be obtained in the time allowed. These extended features give the analyst and decision maker a better comprehension of the adequacy of the acquired evidence and hence the quality of the hurried decisions. They also describe two example systems where the above features are highlighted.

  2. Rapid Application Development with OpenStudio: Preprint

    SciTech Connect (OSTI)

    Weaver, E.; Long, N.; Fleming, K.; Schott, M.; Benne, K.; Hale, E.

    2012-05-01T23:59:59.000Z

    This paper presents several case studies of rapidly implemented, audience-specific applications for whole building energy modeling and standards analysis. By tailoring each application to the audience and the task at hand, the required learning curve for new users was greatly reduced. Each case study used OpenStudio, the U.S. Department of Energy's middleware software development kit (SDK). OpenStudio provides an easy interface to the EnergyPlus whole building simulation engine, while extending its capability and providing higher-level functionality such as software interoperability, standards, analysis, and optimization. Each case study is unique in the technology employed to interface with OpenStudio as well as the methods used for user interaction and data presentation. Four case studies are presented.

  3. Local non-Gaussianity from rapidly varying sound speeds

    SciTech Connect (OSTI)

    Emery, Jon; Tasinato, Gianmassimo; Wands, David, E-mail: jon.emery@port.ac.uk, E-mail: gianmassimo.tasinato@port.ac.uk, E-mail: david.wands@port.ac.uk [Institute of Cosmology and Gravitation, University of Portsmouth, Dennis Sciama Building, Portsmouth, PO1 3FX (United Kingdom)

    2012-08-01T23:59:59.000Z

    We study the effect of non-trivial sound speeds on local-type non-Gaussianity during multiple-field inflation. To this end, we consider a multiple-DBI model and use the ?N formalism to track the super-horizon evolution of perturbations. By adopting a sum separable Hubble parameter we derive analytic expressions for the relevant quantities in the two-field case, valid beyond slow variation. We find that non-trivial sound speeds can, in principle, curve the trajectory in such a way that significant local-type non-Gaussianity is produced. Deviations from slow variation, such as rapidly varying sound speeds, enhance this effect. To illustrate our results we consider two-field inflation in the tip regions of two warped throats and find large local-type non-Gaussianity produced towards the end of the inflationary process.

  4. A simple method for rapidly processing HEU from weapons returns

    SciTech Connect (OSTI)

    McLean, W. II; Miller, P.E.

    1994-01-01T23:59:59.000Z

    A method based on the use of a high temperature fluidized bed for rapidly oxidizing, homogenizing and down-blending Highly Enriched Uranium (HEU) from dismantled nuclear weapons is presented. This technology directly addresses many of the most important issues that inhibit progress in international commerce in HEU; viz., transaction verification, materials accountability, transportation and environmental safety. The equipment used to carry out the oxidation and blending is simple, inexpensive and highly portable. Mobile facilities to be used for point-of-sale blending and analysis of the product material are presented along with a phased implementation plan that addresses the conversion of HEU derived from domestic weapons and related waste streams as well as material from possible foreign sources such as South Africa or the former Soviet Union.

  5. Rapid automatic NCS identification using heavy-atom substructures

    SciTech Connect (OSTI)

    Terwilliger, Thomas C., E-mail: terwilliger@lanl.gov [Mail Stop M888, Los Alamos National Laboratory, Los Alamos, NM 87545 (United States)

    2002-12-01T23:59:59.000Z

    A rapid algorithm for identifying NCS in heavy-atom sites is described. An important component of a fully automated system for structure solution and phase improvement through density modification is a capability for identification of non-crystallographic symmetry as early in the process as possible. Algorithms exist for finding NCS in heavy-atom sites, but currently require of the order of N{sup 5} comparisons to be made, where N is the number of sites to be examined, including crystallographically related locations. A method described here based on considering only sets of sites that have common interatomic distances reduces the computational time by several orders of magnitude. Additionally, searches for proper symmetry allow the identification of NCS in cases where only one heavy atom is present per NCS copy.

  6. Bottomonium production at forward rapidity with ALICE at the LHC

    E-Print Network [OSTI]

    Marchisone, Massimiliano

    2015-01-01T23:59:59.000Z

    Bottomonium production is a powerful tool to investigate hadron collisions and the properties of the medium created in heavy-ion collisions. According to the color-screening model, these mesons give important information about the deconfined medium called Quark-Gluon Plasma (QGP) produced in ultrarelativistic heavy-ion collisions. Cold nuclear matter (CNM) effects can modify the bottomonium production even in absence of deconfined matter: the study of proton-nucleus collisions is therefore essential to disentangle these effects from the hot ones. Last but not least, measurement in pp collisions serve as crucial test of different QCD models of quarkonium hadroproduction and provide the reference for the study in nucleus-nucleus collisions. In ALICE, bottomonium is measured at forward rapidity ($2.5 < y < 4$) down to zero transverse momentum, exploiting the dimuon decay channel. The latest results in pp, Pb-Pb and p-Pb collisions are discussed and compared to theoretical calculations.

  7. NARROW ATOMIC FEATURES FROM RAPIDLY SPINNING NEUTRON STARS

    SciTech Connect (OSTI)

    Bauboeck, Michi; Psaltis, Dimitrios; Oezel, Feryal, E-mail: mbaubock@email.arizona.edu, E-mail: dpsaltis@email.arizona.edu, E-mail: fozel@email.arizona.edu [Astronomy Department, University of Arizona, 933 North Cherry Avenue, Tucson, AZ 85721 (United States)] [Astronomy Department, University of Arizona, 933 North Cherry Avenue, Tucson, AZ 85721 (United States)

    2013-04-01T23:59:59.000Z

    Neutron stars spinning at moderate rates ({approx}300-600 Hz) become oblate in shape and acquire a nonzero quadrupole moment. In this paper, we calculate the profiles of atomic features from such neutron stars using a ray-tracing algorithm in the Hartle-Thorne approximation. We show that line profiles acquire cores that are much narrower than the widths expected from pure Doppler effects for a large range of observer inclinations. As a result, the effects of both the oblateness and the quadrupole moments of neutron stars need to be taken into account when aiming to measure neutron-star radii from rotationally broadened lines. Moreover, the presence of these narrow cores substantially increases the likelihood of detecting atomic lines from rapidly spinning neutron stars.

  8. Method for rapid base sequencing in DNA and RNA

    DOE Patents [OSTI]

    Jett, J.H.; Keller, R.A.; Martin, J.C.; Moyzis, R.K.; Ratliff, R.L.; Shera, E.B.; Stewart, C.C.

    1990-10-09T23:59:59.000Z

    A method is provided for the rapid base sequencing of DNA or RNA fragments wherein a single fragment of DNA or RNA is provided with identifiable bases and suspended in a moving flow stream. An exonuclease sequentially cleaves individual bases from the end of the suspended fragment. The moving flow stream maintains the cleaved bases in an orderly train for subsequent detection and identification. In a particular embodiment, individual bases forming the DNA or RNA fragments are individually tagged with a characteristic fluorescent dye. The train of bases is then excited to fluorescence with an output spectrum characteristic of the individual bases. Accordingly, the base sequence of the original DNA or RNA fragment can be reconstructed. 2 figs.

  9. Joko Tingkir program for estimating tsunami potential rapidly

    SciTech Connect (OSTI)

    Madlazim,, E-mail: m-lazim@physics.its.ac.id; Hariyono, E., E-mail: m-lazim@physics.its.ac.id [Department of Physics, Faculty of Mathematics and Natural Sciences, Universitas Negeri Surabaya (UNESA) , Jl. Ketintang, Surabaya 60231 (Indonesia)

    2014-09-25T23:59:59.000Z

    The purpose of the study was to estimate P-wave rupture durations (T{sub dur}), dominant periods (T{sub d}) and exceeds duration (T{sub 50Ex}) simultaneously for local events, shallow earthquakes which occurred off the coast of Indonesia. Although the all earthquakes had parameters of magnitude more than 6,3 and depth less than 70 km, part of the earthquakes generated a tsunami while the other events (Mw=7.8) did not. Analysis using Joko Tingkir of the above stated parameters helped understand the tsunami generation of these earthquakes. Measurements from vertical component broadband P-wave quake velocity records and determination of the above stated parameters can provide a direct procedure for assessing rapidly the potential for tsunami generation. The results of the present study and the analysis of the seismic parameters helped explain why the events generated a tsunami, while the others did not.

  10. The influence of net-quarks on the yields and rapidity spectra of identified hadrons

    E-Print Network [OSTI]

    Jun Song; Feng-lan Shao; Qu-bing Xie; Yun-fei Wang; De-ming Wei

    2008-02-21T23:59:59.000Z

    Within a quark combination model, we study systematically the yields and rapidity spectra of various hadrons in central Au+Au collisions at $\\sqrt{s_{NN}}= 200$ GeV. We find that considering the difference in rapidity between net-quarks and newborn quarks, the data of multiplicities, rapidity distributions for $\\pi^{\\pm}$, $K^{\\pm}$, $p(\\bar{p})$ and, in particular the ratios of charged antihadron to hadron as a function of rapidity, can be well described. The effect of net-quarks on various hadrons is analysed, and the rapidity distributions for $K^{0}_{s}$, $\\Lambda(\\bar{\\Lambda})$, $\\Sigma^{+}(\\bar{\\Sigma}^{_-})$, $\\mathrm{\\Xi^{-}}$ ($\\mathrm{\\bar{\\Xi}^{_+}}$) and $\\mathrm{\\Omega^{-}}(\\mathrm{\\bar{\\Omega}}^{_+})$ are predicted. We discuss the rapidity distribution of net-baryon, and find that it reflects exactly the energy loss of colliding nuclei.

  11. Enabling Rapid Development of Parallel Tree Search Applications

    E-Print Network [OSTI]

    Jeffrey P. Gardner; Andrew Connolly; Cameron McBride

    2007-09-12T23:59:59.000Z

    Virtual observatories will give astronomers easy access to an unprecedented amount of data. Extracting scientific knowledge from these data will increasingly demand both efficient algorithms as well as the power of parallel computers. Nearly all efficient analyses of large astronomical datasets use trees as their fundamental data structure. Writing efficient tree-based techniques, a task that is time-consuming even on single-processor computers, is exceedingly cumbersome on massively parallel platforms (MPPs). Most applications that run on MPPs are simulation codes, since the expense of developing them is offset by the fact that they will be used for many years by many researchers. In contrast, data analysis codes change far more rapidly, are often unique to individual researchers, and therefore accommodate little reuse. Consequently, the economics of the current high-performance computing development paradigm for MPPs does not favor data analysis applications. We have therefore built a library, called Ntropy, that provides a flexible, extensible, and easy-to-use way of developing tree-based data analysis algorithms for both serial and parallel platforms. Our experience has shown that not only does our library save development time, it can also deliver excellent serial performance and parallel scalability. Furthermore, Ntropy makes it easy for an astronomer with little or no parallel programming experience to quickly scale their application to a distributed multiprocessor environment. By minimizing development time for efficient and scalable data analysis, we enable wide-scale knowledge discovery on massive datasets.

  12. Rapid world modeling: Fitting range data to geometric primitives

    SciTech Connect (OSTI)

    Feddema, J.; Little, C.

    1996-12-31T23:59:59.000Z

    For the past seven years, Sandia National Laboratories has been active in the development of robotic systems to help remediate DOE`s waste sites and decommissioned facilities. Some of these facilities have high levels of radioactivity which prevent manual clean-up. Tele-operated and autonomous robotic systems have been envisioned as the only suitable means of removing the radioactive elements. World modeling is defined as the process of creating a numerical geometric model of a real world environment or workspace. This model is often used in robotics to plan robot motions which perform a task while avoiding obstacles. In many applications where the world model does not exist ahead of time, structured lighting, laser range finders, and even acoustical sensors have been used to create three dimensional maps of the environment. These maps consist of thousands of range points which are difficult to handle and interpret. This paper presents a least squares technique for fitting range data to planar and quadric surfaces, including cylinders and ellipsoids. Once fit to these primitive surfaces, the amount of data associated with a surface is greatly reduced up to three orders of magnitude, thus allowing for more rapid handling and analysis of world data.

  13. Rapidly reconfigurable all-optical universal logic gate

    DOE Patents [OSTI]

    Goddard, Lynford L. (Hayward, CA); Bond, Tiziana C. (Livermore, CA); Kallman, Jeffrey S. (Pleasanton, CA)

    2010-09-07T23:59:59.000Z

    A new reconfigurable cascadable all-optical on-chip device is presented. The gate operates by combining the Vernier effect with a novel effect, the gain-index lever, to help shift the dominant lasing mode from a mode where the laser light is output at one facet to a mode where it is output at the other facet. Since the laser remains above threshold, the speed of the gate for logic operations as well as for reprogramming the function of the gate is primarily limited to the small signal optical modulation speed of the laser, which can be on the order of up to about tens of GHz. The gate can be rapidly and repeatedly reprogrammed to perform any of the basic digital logic operations by using an appropriate analog optical or electrical signal at the gate selection port. Other all-optical functionality includes wavelength conversion, signal duplication, threshold switching, analog to digital conversion, digital to analog conversion, signal routing, and environment sensing. Since each gate can perform different operations, the functionality of such a cascaded circuit grows exponentially.

  14. Hydrodynamics of rapidly rotating superfluid neutron stars with mutual friction

    E-Print Network [OSTI]

    A. Passamonti; N. Andersson

    2010-04-26T23:59:59.000Z

    We study time evolutions of superfluid neutron stars, focussing on the nature of the oscillation spectrum, the effect of mutual friction force on the oscillations and the hydrodynamical spin-up phase of pulsar glitches. We linearise the dynamical equations of a Newtonian two-fluid model for rapidly rotating backgrounds. In the axisymmetric equilibrium configurations, the two fluid components corotate and are in beta-equilibrium. We use analytical equations of state that generate stratified and non-stratified stellar models, which enable us to study the coupling between the dynamical degrees of freedom of the system. By means of time evolutions of the linearised dynamical equations, we determine the spectrum of axisymmetric and non-axisymmetric oscillation modes, accounting for the contribution of the gravitational potential perturbations, i.e. without adopting the Cowling approximation. We study the mutual friction damping of the superfluid oscillations and consider the effects of the non-dissipative part of the mutual friction force on the mode frequencies. We also provide technical details and relevant tests for the hydrodynamical model of pulsar glitches discussed by Sidery, Passamonti and Andersson (2010). In particular, we describe the method used to generate the initial data that mimic the pre-glitch state, and derive the equations that are used to extract the gravitational-wave signal.

  15. Rapid prototyping for radio-frequency geolocation applications

    SciTech Connect (OSTI)

    Briles, S. C. (Scott C.); Arrowood, J. L. (Joseph L.); Braun, T. R. (Thomas R.); Turcotte, D. (Dakx); Fiset, E. (Etienne)

    2004-01-01T23:59:59.000Z

    Previous space-to-ground, single-platform geolocation experiments exploiting time-difference-of arrival (TDOA) via interferometry were successful at separating and quantitatively characterizing interfering radio frequency (RF) signals from expected RF transmissions. Much of the success of these experiments rested on the use of embedded processors to perform the required signal processing. The experiments handled data in a 'snapshot' fashion: digitized data was collected, the data was processed via a digital signal processing (DSP) microprocessor to yield differential phase measurements, and these measurements were transmitted to the Earth for geolocation processing. With the utilization of FPGAs (field programmable gate arrays) for the intensive number-crunching algorithms, the processing of streaming real-time data is feasible for bandwidths on the order of 20 MHz. By partitioning the signal processing algorithm so there is a significant reduction in the data rate as data flows through the FPGA, a DSP microprocessor can now be employed to perform further decision-oriented processing on the FPGA output. This hybrid architecture, employing both FPGAs and DSPs, typically requires an expensive and lengthy development cycle. However, the use of graphical development environments with auto-code generation and hardware-in-the-loop testing can result in rapid prototyping for geolocation experiments, which enables adaptation to emerging signals of interest in a cost and time effective manner.

  16. Data bases for rapid response to power reactor problems

    SciTech Connect (OSTI)

    Maskewitz, B.F.

    1980-01-01T23:59:59.000Z

    The urgency of the TMI-2 incident demanded prompt answers to an imperious situation. In responding to these challenging circumstances, both government and industry recognized deficiencies in both availability of essential retrievable data and calculational capabilities designed to respond immediately to actual abnormal events. Each responded by initiating new programs to provide a remedy for the deficiencies and to generally improve all safety measures in the nuclear power industry. Many data bases and information centers offer generic data and other technology resources which are generally useful in support of nuclear safety programs. A few centers can offer rapid access to calculational methods and associated data and more will make an effort to do so. As a beneficial spin-off from the lessons learned from TMI-2, more technical effort and financial resources will be devoted to the prevention of accidents, and to improvement of safety measures in the immediate future and for long term R and D programs by both government and the nuclear power industry.

  17. Rapid thermal processing of steel using high energy electron beams

    SciTech Connect (OSTI)

    Elmer, J.W.; Newton, A.; Smith, C. Jr.

    1993-11-10T23:59:59.000Z

    High energy electron beams (HEEBs) with megavolt energies represent a new generation of charged particle beams that rapidly deposit up to several hundred joules/pulse over areas on the order of a few square millimeters to 100s of square centimeters. These pulsed beams have energies in the 1 to 10 MeV range, which enables the electrons to deposit large amounts of energy deeply into the material being processed, and these beams have short pulse durations (50 ns) that can heat materials at rates as high as 10{sup 10} {degrees}C/s for a 1000 {degree}C temperature rise in the material. Lower heating rates, on the order of 10{sup 4} {degrees}C/s, can be produced by reducing the energy per pulse and distributing the total required energy over a series of sub-ms pulses, at pulse repetition frequencies (PRFs) up to several kHz. This paper presents results from materials processing experiments performed on steel with a 6 MeV electron beam, analyzes these results using a Monte Carlo transport code, and presents a first-order predictive method for estimating the peak energy deposition, temperature, and heating rate for HEEB processed steel.

  18. Presidential Rapid Commercialization Initiative for mixed waste solvent extraction

    SciTech Connect (OSTI)

    Honigford, L.; Dilday, D.; Cook, D. [Fluor Daniel Fernald, Inc., Cincinnati, OH (United States). Fernald Environmental Management Project; Sattler, J. [USDOE Fernald Area Office, OH (United States)

    1997-03-01T23:59:59.000Z

    Recently, the Fernald Environmental Management Project (FEMP) has made some major steps in mixed waste treatment which have taken it closer to meeting final remediation goals. However, one major hurdle remains for the FEMP mixed waste treatment program, and that hurdle is tri-mixed waste. Tri-mixed is a term coined to describe low-level waste containing RCRA hazardous constituents along with polychlorinated biphenyls (PCB). The prescribed method for disposal of PCBs is incineration. In mixed waste treatment plans developed by the FEMP with public input, the FEMP committed to pursue non-thermal treatment methods and avoid the use of incineration. Through the SITE Program, the FEMP identified a non-thermal treatment technology which uses solvents to extract PCBs. The technology belongs to a small company called Terra-Kleen Response Group, Inc. A question arose as to how can this new and innovative technology be implemented by a small company at a Department of Energy (DOE) facility. The answer came in the form of the Rapid Commercialization Initiative (RCI) and the Mixed Waste Focus Area (MWFA). RCI is a program sponsored by the Department of commerce (DOC), DOE, Department of Defense (DOD), US EPA and various state agencies to aid companies to market new and innovative technologies.

  19. Method and apparatus for rapid stopping and starting of a thermoacoustic engine

    DOE Patents [OSTI]

    Swift, Gregory W.; Backhaus, Scott N.; Gardner, David L.

    2003-11-11T23:59:59.000Z

    A thermoacoustic engine-driven system with a hot heat exchanger, a regenerator or stack, and an ambient heat exchanger includes a side branch load for rapid stopping and starting, the side branch load being attached to a location in the thermoacoustic system having a nonzero oscillating pressure and comprising a valve, a flow resistor, and a tank connected in series. The system is rapidly stopped simply by opening the valve and rapidly started by closing the valve.

  20. E-Print Network 3.0 - automated rapid chemistry Sample Search...

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

    more rapidly screen large numbers of samples and identify the most promising biomass feedstocks for higher efficiency and lower cost bio- Summary: innovati n This new system...

  1. Risk D&D Rapid Prototype: Scenario Documentation and Analysis Tool

    SciTech Connect (OSTI)

    Unwin, Stephen D.; Seiple, Timothy E.

    2009-05-28T23:59:59.000Z

    Report describes process and methodology associated with a rapid prototype tool for integrating project risk analysis and health & safety risk analysis for decontamination and decommissioning projects.

  2. Functional requirements and technical criteria for the 241-SY-101 RAPID mitigation system

    SciTech Connect (OSTI)

    ERHART, M.F.

    1999-02-26T23:59:59.000Z

    This document provides functional, performance, and design criteria for the RAPID Mitigation System. In addition, critical interface, design assumptions, and analytical requirements are identified.

  3. Vehicle Technologies Office Merit Review 2015: Rapidly Solidified High Temperature Aluminum Alloys

    Broader source: Energy.gov [DOE]

    Presentation given by Pacific Northwest National Laboratory at 2015 DOE Hydrogen and Fuel Cells Program and Vehicle Technologies Office Annual Merit Review and Peer Evaluation Meeting about rapidly...

  4. Microsoft Word - 2012_Rapid_Lightening_Creek_Easement_CX_Rev2...

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

    Manager - KEWM-4 Proposed Action: AMENDED Provision of funds to the Idaho Department of Fish and Game (IDFG) to purchase the Rapid Lightning Creek Property. Fish and Wildlife...

  5. Characterization and optimization of PDMS microfluidic devices for rapid DNA hybridization

    E-Print Network [OSTI]

    Hu, Jenny (Jenny Ezu)

    2005-01-01T23:59:59.000Z

    Two elastomeric microfluidic devices were designed for the purpose of conducting rapid, flow-based, multiplexed DNA hybridization. Experimental results showed that flowing hybridization assays could detect similar ...

  6. Quantifying the Improvements in Rapid Prototyping and Product Life Cycle Performance Created by Machining

    E-Print Network [OSTI]

    2013-01-01T23:59:59.000Z

    to laser ablation and 3D printing for rapid prototypinglaser ablation, and 3D printing. 2.1 ExperimentalMachining, Laser ablation, 3D printing, Microfluidics, Value

  7. RAPID SEPARATION METHOD FOR 237NP AND PU ISOTOPES IN LARGE SOIL SAMPLES

    SciTech Connect (OSTI)

    Maxwell, S.; Culligan, B.; Noyes, G.

    2010-07-26T23:59:59.000Z

    A new rapid method for the determination of {sup 237}Np and Pu isotopes in soil and sediment samples has been developed at the Savannah River Site Environmental Lab (Aiken, SC, USA) that can be used for large soil samples. The new soil method utilizes an acid leaching method, iron/titanium hydroxide precipitation, a lanthanum fluoride soil matrix removal step, and a rapid column separation process with TEVA Resin. The large soil matrix is removed easily and rapidly using this two simple precipitations with high chemical recoveries and effective removal of interferences. Vacuum box technology and rapid flow rates are used to reduce analytical time.

  8. VALUATION PRIMAIRE: Avant d'intervenir, valuez rapidement si la situation comporte un risque pour sa propre sant et

    E-Print Network [OSTI]

    Charette, André

    ? Tremblements? Sueur? Respiration bruyante? Irréguličre? Rapide? Lente? Toux? Peau chaude? Froide? Pâle

  9. Design review report for the SY-101 RAPID mitigation system

    SciTech Connect (OSTI)

    SCHLOSSER, R.L.

    1999-05-24T23:59:59.000Z

    This report documents design reviews conducted of the SY-101 Respond And Pump In Days (RAPID) Mitigation System. As part of the SY-101 Surface-Level-Rise Remediation Project, the SY-101 WID Mitigation System will reduce the potential unacceptable consequences of crust growth in Tank 241-SY-101 (SY-101). Projections of the crust growth rate indicate that the waste level in the tank may reach the juncture of the primary and secondary confinement structures of the tank late in 1999. Because of this time constraint, many design activities are being conducted in parallel and design reviews were conducted for system adequacy as well as design implementation throughout the process. Design implementation, as used in this design review report, is the final component selection (e.g., which circuit breaker, valve, or thermocouple) that meets the approved design requirements, system design, and design and procurement specifications. Design implementation includes the necessary analysis, testing, verification, and qualification to demonstrate compliance with the system design and design requirements. Design implementation is outside the scope of this design review. The design activities performed prior to detailed design implementation (i.e., system mission requirements, functional design requirements, technical criteria, system conceptual design, and where design and build contracts were placed, the procurement specification) have been reviewed and are within the scope of this design review report. Detailed design implementation will be controlled, reviewed, and where appropriate, approved in accordance with Tank Waste Remediation System (TWRS) engineering procedures. Review of detailed design implementation will continue until all components necessary to perform the transfer function are installed and tested.

  10. Rapid Formation of Gas Giant Planets around M Dwarf Stars

    E-Print Network [OSTI]

    Alan P. Boss

    2006-01-20T23:59:59.000Z

    Extrasolar planet surveys have begun to detect gas giant planets in orbit around M dwarf stars. While the frequency of gas giant planets around M dwarfs so far appears to be lower than that around G dwarfs, it is clearly not zero. Previous work has shown that the core accretion mechanism does not seem to be able to form gas giant planets around M dwarfs, because the time required for core formation scales with the orbital period, which lengthens for lower mass stars, resulting in failed (gas-poor) cores unless the gaseous protoplanetary disk survives for > 10 Myr. Disk instability, on the other hand, is rapid enough (~ 1000 yrs) that it should be able to form gas giant protoplanets around even low mass stars well before the gaseous disk disappears. A new suite of three dimensional radiative, gravitational hydrodynamical models is presented that calculates the evolution of initially marginally gravitationally unstable disks with masses of 0.021 to 0.065 solar masses orbiting around stars with masses of 0.1 and 0.5 solar masses, respectively. The models show that gas giant planets are indeed likely to form by the disk instability mechanism in orbit around M dwarf stars, the opposite of the prediction for formation by the core accretion mechanism. This difference offers another observational test for discriminating between these two theoretical end members for giant planet formation. Ongoing and future extrasolar planet searches around M dwarfs by spectroscopy, microlensing, photometry, and astrometry offer the opportunity to help decide between the dominance of the two mechanisms.

  11. Rapid three-dimensional manufacturing of microfluidic structures using a scanning laser system

    E-Print Network [OSTI]

    Rapid three-dimensional manufacturing of microfluidic structures using a scanning laser system Biao-dimensional manufacturing approach to the rapid processing of microfluidic structures using a scanning laser system. The scanning laser manufacturing technique could be potentially applied to a wide range of materials,10

  12. Assessing the catastrophic break up of Briksdalsbreen, Norway,1 associated with rapid climate change.2

    E-Print Network [OSTI]

    Southampton, University of

    about the potential influence of rapid climate change13 on the stability of major ice sheets retreat of Greenland's tidewater glaciers.32 33 Introduction34 The response of glaciers to climate change1 Assessing the catastrophic break up of Briksdalsbreen, Norway,1 associated with rapid climate

  13. UBC Social Ecological Economic Development Studies (SEEDS) Student Report An Investigation into Rapidly Renewable Materials

    E-Print Network [OSTI]

    of renewable resources. Renewable resources, whether it is energy or material, are the ones that can be regenerated within a short period time. Rapidly Renewable Materials (RRMs) are examples of such resources into Rapidly Renewable Materials: Bamboo and Cotton Mohammad Hassan Jafarian Thanet (Vic) Ying-udomrat Xiao

  14. Mini-review Radiation-induced bystander effect: Early process and rapid assessment

    E-Print Network [OSTI]

    Yu, K.N.

    by the radiation protection agencies. How- ever, this dogma has been challenged by scientific findings since 1990sMini-review Radiation-induced bystander effect: Early process and rapid assessment Hongzhi Wang September 2013 Accepted 26 September 2013 Keywords: Radiation-induced bystander effect Rapid assessment

  15. DOSAGE RADIOMTRIQUE RAPIDE DE L'URANIUM ET DU THORIUM DANS LES MINERAIS COMPLEXES

    E-Print Network [OSTI]

    Paris-Sud XI, Université de

    35 A. DOSAGE RADIOMÉTRIQUE RAPIDE DE L'URANIUM ET DU THORIUM DANS LES MINERAIS COMPLEXES Par G radio métrique rapide de dosage de l'uranium et du thorium dans des minerais complexes. Elle utilise method for the determination of uranium and thorium in complex ores. We use fundamentally two gamma

  16. Rapidly-Exploring Roadmaps: Weighing Exploration vs. Refinement in Optimal Motion Planning

    E-Print Network [OSTI]

    North Carolina at Chapel Hill, University of

    Rapidly-Exploring Roadmaps: Weighing Exploration vs. Refinement in Optimal Motion Planning Ron of already explored regions to find better paths. We present the rapidly- exploring roadmap (RRM), a new to explore further or to refine the explored space by adding edges to the current roadmap to find higher

  17. Assessing the viability of level III electric vehicle rapid-charging stations

    E-Print Network [OSTI]

    Gogoana, Radu

    2010-01-01T23:59:59.000Z

    This is an analysis of the feasibility of electric vehicle rapid-charging stations at power levels above 300 kW. Electric vehicle rapid-charging (reaching above 80% state-of-charge in less than 15 minutes) has been ...

  18. The triggering of subglacial lake drainage during rapid glacier drawdown: Crane Glacier, Antarctic Peninsula

    E-Print Network [OSTI]

    Paris-Sud XI, Université de

    The triggering of subglacial lake drainage during rapid glacier drawdown: Crane Glacier, Antarctic Glacier, Antarctic Peninsula, shows an unusual temporal pattern of elevation loss: a period of very rapid is not seen. Bathymetry in Crane Glacier fjord reveals a series of flat-lying, formerly subglacial deeps

  19. Acoustic Rapid Environmental Assessment: the AOB concept S. M. Jesus, C. Soares and N. Martins

    E-Print Network [OSTI]

    Jesus, Sérgio M.

    Acoustic Rapid Environmental Assessment: the AOB concept S. M. Jesus, C. Soares and N. Martins Si}@ualg.pt. Abstract Rapidly assessing the environmental conditions of a given coastal area with the capability) as a promising tool for operational environmental assessment of small coastal areas. This work was supported

  20. Measuring the Residual Ferrite Content of Rapidly Solidified Stainless Steel Alloys-

    E-Print Network [OSTI]

    Eagar, Thomas W.

    -Gage and ferrite meters have been developed to measure the amount of residual ferrite in duplex stainless steel) ) Measuring the Residual Ferrite Content of Rapidly Solidified Stainless Steel Alloys. Electron beam welds, laser beam welds and rapidly solidified stainless steel alloys have small physical