Prediction of gaseous diffusion coefficients from thermal diffusion measurements and other experimental data
Author:
Publisher
AIP Publishing
Subject
Physical and Theoretical Chemistry,General Physics and Astronomy
Link
http://aip.scitation.org/doi/pdf/10.1063/1.469309
Reference20 articles.
1. Intermolecular Forces: Thermal Diffusion and Diffusion in Ar-Kr
2. Determination of the diffusion coefficients of binary mixtures of the noble gases as a function of temperature and concentration
3. Higher Approximations for the Transport Properties of Binary Gas Mixtures. II. Applications
4. Intermolecular Forces from Diffusion and Thermal Diffusion Measurements
5. Intermolecular Forces: Thermal Diffusion and Diffusion in He-Kr and H[sub 2]-Kr
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1. Diffusion and chemical interaction of hydroxyl generated from photodissociation of water vapor in the temperature range in 294 K–891 K in helium flow;AIP Advances;2020-11-01
2. Prediction of the temperature dependence of binary diffusion coefficients of gaseous systems from thermal diffusion factors and diffusion coefficients at 300 K;International Journal of Thermophysics;1997-07
3. Prediction of the temperature dependence of the limiting diffusion coefficients of five helium–fluoromethane systems from diffusion coefficients at 300 K and limiting thermal diffusion factors at the same temperature and zero pressure;The Journal of Chemical Physics;1996-08-22
4. Pressure dependencies of the thermal diffusion factors, αT, of nine helium–fluoroethane systems at 300 K: Prediction of the variation with temperature of the limiting diffusion coefficients of these systems from αT values at zero pressure;The Journal of Chemical Physics;1996-01
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