A Miniature Dewpoint Hygrometer for Monitoring Human Environments in Space
Water vapor enjoys unique importance in Earth's atmosphere and human environments in space.
Engineering topics
Publications and source records attributed to Watson, R..
Water vapor enjoys unique importance in Earth's atmosphere and human environments in space.
This paper presents an evaluation of trends in SEE susceptibility (including soft errors and latchup) for state-of-the-art parts.
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The temperature dependence of two chlorine atom reactions of considerable fundamental importance to stratospheric chemistry was studied using the technique of flash photolysis-resonance fluorescence. The reactions of interest were: (1) Cl + O3 yields ClO + O2 studied at 220-350 K, and (2) Cl + CH4 yields CH3 + HCl studied at 218-401 K. In addition, the reaction Cl + H2O2 yields HCl + HO2 was studied at 300 K. The corresponding rate constants are provided for the three reactions. The new rate data implies the need to revise downward by a factor of 2.4-3 the magnitude of the ozone perturbation due to the presence of ClO/x/ species in the stratosphere, predicted by earlier model calculations.
Spectrometric techniques for estimating flow field gas temperatures of reentry vehicles
Dissociation rate of undiluted carbon monoxide behind strong shock waves produced in arc discharge shock tube
Dislocation rate magnitudes and relative collision frequencies influencing relaxation profiles in diatomic gases