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  • General Chemistry  (38)
  • SPACE RADIATION  (13)
  • AEROSPACE MEDICINE  (7)
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  • 1
    Publication Date: 2011-08-11
    Description: Proton energy spectrum obtained from nuclear emulsion measurements on Gemini IV and V missions
    Keywords: SPACE RADIATION
    Type: AEROSPACE MEDICINE
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  • 2
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    In:  CASI
    Publication Date: 2016-06-07
    Description: Dosimetric implications for manned space flight are evaluated by analyzing the radiation field behind the heavy shielding of a manned space vehicle on a near-earth orbital mission and how it compares with actual exposure levels recorded on Apollo missions. Emphasis shifts from flux densities and energy spectra to incident radiation and absorbed doses and dose equivalents as they are recorded within the ship at locations close to crew members.
    Keywords: SPACE RADIATION
    Type: NASA Washington Proc. of the Natl. Symp. on Nat. and Manmade Radiation in Space; p 215-219
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  • 3
    Publication Date: 2019-05-29
    Description: Radiation monitoring with nuclear emulsions and other radiation sensors on Gemini project
    Keywords: SPACE RADIATION
    Type: NASA-CR-75036 , NAMI-955
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  • 4
    Publication Date: 2019-05-30
    Description: Dosimetric evaluation of flare produced proton beams at solar minimum, and flare exposure behind Gemini and Apollo shield systems
    Keywords: SPACE RADIATION
    Type: NASA-CR-76518 , NAMI-970
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  • 5
    Publication Date: 2019-06-27
    Description: Energy distributions of the neutron dose equivalents in the 0.1 to 300 Mev interval for the Ames and Hess spectra are compared. The Ames spectrum shows no evaporation peak, moves the bulk of the flux away from the region of elastic collision and spreads it more evenly over higher energies. The neutron spectrum in space does not seem to hear out the Ames model. Emulsion findings on all manned missions of the past consistently indicate that evaporation events are a prolific source of neutrons in space.
    Keywords: SPACE RADIATION
    Type: NASA-CR-160554
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  • 6
    Publication Date: 2019-06-27
    Description: A system which simplifies the complex monitoring methods used to measure the astronaut's radiation exposure in space is proposed. The excess dose equivalents of trapped protons and secondary neutrons, protons, and alpha particles from local nuclear interactions are determined and a combined thermoluminescent dosimeter (TLD)/nuclear emulsion method which measures the absorbed dose with thermoluminescent dosimeter chips is presented.
    Keywords: SPACE RADIATION
    Type: NASA-CR-160367
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  • 7
    Publication Date: 2019-06-27
    Description: On the Skylab missions, Ilford G.5 and K.2 emulsions were flown as part of passive dosimeter packs carried by the astronauts on their wrists. Due to the long mission times, latent image fading and track crowing imposed limitations on a quantitative track and grain count analysis. For Skylab 2, the complete proton energy spectrum was determined within reasonable error limits. A combined mission dose equivalent of 2,490 millirems from protons, tissue stars and neutrons was measured on Skylab 2. A stationary emulsion stack, kept in a film vault drawer on the same mission, displayed a highly structured directional distribution of the fluence of low-energy protons (enders) reflecting the local shield distribution. On the 59 and 84-day mission 3 and 4, G.5 emulsions had to be cut on the microtom to 5-7 microns for microscopic examination. Even so, the short track segments in such thin layers precluded a statistically reliable grain count analysis. However, the K.2 emulsions still allowed accurate proton ender counts without special provisions.
    Keywords: AEROSPACE MEDICINE
    Type: NASA-CR-147436 , NAMRL-1220
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  • 8
    Publication Date: 2019-06-27
    Description: Secondaries from nuclear interactions of high energy primaries in the body tissues themselves contribute substantially to the astronaut's radiation exposure in space. The so-called tissue star dose is assessed from the prong number distribution of disintegration stars in emulsion. Prong counts of 1,000 emulsion stars from the Apollo-Soyuz mission reported earlier were re-evaluated. The original scores were divided into sets of 250, 500, 750, and 1,000 emulsion stars and the respective prong number distributions established. The statistical error of the gelatin star number for the four consecutively larger was found to vary, on the 67 percent confidence level, from + or - 25 percent for the count of 250 emulsion stars to + or - 11 percent for 1,000 stars. Seen in the context of the other limitations of the experimental design, the lowest effort of prong-counting 250 stars appears entirely appropriate.
    Keywords: AEROSPACE MEDICINE
    Type: NASA-CR-151724
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  • 9
    Publication Date: 2019-06-27
    Description: On the Apollo-Soyuz mission each astronaut carried one passive dosimeter containing nuclear photographic emulsions, plastic foils, TLD chips, and neutron-activation foils for recording radiation exposure. This report is limited to the presentation of data retrieved from nuclear emulsions. Protons, most of them trapped particles encountered in numerous passes through the South Atlantic Anomaly, contributed by far the largest share to the mission dose. Their linear energy transfer (LET) spectrum was established from track and grain counts in a G.5 emulsion which is used for medium and high energies, and from ender counts in a K.2 emulsion which is used for low energies. The total mission fluence of protons was found to be equivalent to a unidirectional beam of 448,500 square centimeters. The broad spectrum was broken down into small LET intervals, which allowed for the computation of absorbed doses and dose equivalents. The totals are 51 millirad and 74 millirem. Counts of disintegration stars in K.2 emulsion are incomplete at present. While a total of 467 stars were identified, counting their prong numbers is still in progress. It was concluded that the Apollo-Soyuz astronauts' radiation exposure as such did not contain anything out of the ordinary that would seem to require special attention.
    Keywords: AEROSPACE MEDICINE
    Type: NASA-CR-150916 , NAMRL-1228
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  • 10
    Publication Date: 2019-06-27
    Description: Galactic radiation during quiet sun and expected tissue dosage in space systems of low shielding
    Keywords: SPACE RADIATION
    Type: NASA-CR-82018
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