THERMOLUMINESCENCE RESPONSE OF LiF TO X AND GAMMA RAYS: A STUDY OF RATE AND ENERGY DEPENDENCE OVER A WIDE RANGE OF EXPOSURES.
Journal Article
·
· pp 429-34 of Radiation Protection. Part 1. Snyder, W. S. Abee, H. H. Burton, L. K. Maushart, R. Benco, A. Duhamel, F. Wheatley, B. M. (eds.). New York, Pergamon Press Inc., 1968.
OSTI ID:4788516
- Research Organization:
- National Bureau of Standards, Washington, D. C.
- NSA Number:
- NSA-23-011879
- OSTI ID:
- 4788516
- Journal Information:
- pp 429-34 of Radiation Protection. Part 1. Snyder, W. S. Abee, H. H. Burton, L. K. Maushart, R. Benco, A. Duhamel, F. Wheatley, B. M. (eds.). New York, Pergamon Press Inc., 1968., Other Information: From 1st International Congress of the International Radiation Protection Assn., Rome, Italy. See CONF-660920--(Vol.1). Orig. Receipt Date: 31-DEC-69
- Country of Publication:
- Country unknown/Code not available
- Language:
- English
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Related Subjects
N26200* -Instrumentation-Radiation Dosimeters
DOSE RATES
DOSEMETERS
ENERGY
GAMMA RADIATION
LUMINESCENCE
RADIATION DOSES
SENSITIVITY
TEMPERATURE
THERMOLUMINESCENCE
TIME
X RADIATION
RADIATION DOSIMETERS
THERMOLUMINESCENT/response of lithium fluoride
for x and gamma radiation
effects of rate and energy over wide exposure ranges on
GAMMA RADIATION/dosimetry of
effects of rate and energy dependence over wide exposure ranges on response of lithium fluoride thermoluminescent dosimeters for
X RADIATION/dosimetry of
effects of rate and energy dependence over wide exposure ranges on response of lithium fluoride thermoluminescent dosimeters for
DOSE RATES
DOSEMETERS
ENERGY
GAMMA RADIATION
LUMINESCENCE
RADIATION DOSES
SENSITIVITY
TEMPERATURE
THERMOLUMINESCENCE
TIME
X RADIATION
RADIATION DOSIMETERS
THERMOLUMINESCENT/response of lithium fluoride
for x and gamma radiation
effects of rate and energy over wide exposure ranges on
GAMMA RADIATION/dosimetry of
effects of rate and energy dependence over wide exposure ranges on response of lithium fluoride thermoluminescent dosimeters for
X RADIATION/dosimetry of
effects of rate and energy dependence over wide exposure ranges on response of lithium fluoride thermoluminescent dosimeters for