Dispersion and Absorption of Sound by Molecular Processes |
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Contents
K F HERzfeld Theory of fluids h | 1 |
H O KNESER Relaxation thermique dans le gaz | 40 |
GREENSPAN Translational dispersion in gases | 73 |
Copyright | |
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acoustic activation energy amplitude approximation atoms attenuation Boltzmann equation calculated chain Chem coefficient collision complex compressibility concentration constant courbe curve d'absorption d'oscillation density dipole dispersion dissociation distribution elastic electrolytes electrons energy entropy of fusion equation equilibrium equilibrium constant experimental factor force function gases given heat conduction inelastic interaction ionic atmosphere ions isotherme Journ kinetic l'équilibre liquid Litovitz maximum Maxwell distribution mean free path measurements method modulus molecular motion obtained parameters paramètres particles peak peut Phys polyisobutylene polymer pressure quartz quartz crystal range ratio reaction relaxation effects relaxation frequency relaxation processes resonance rotation segment shear shown in Fig ſº solution solvent specific heat stiffness stress structural temperature temps de relaxation theory thermal thermodynamic tion transition trempe ultrasonic valeur values variation velocity vibrational viscosity volume water molecules wave zero