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Adiabatic compressibility of critical binary mixtures of nitroethane/isooctane and nitroethane/3-methylpentane
Authors:Hajime Tanaka  Yasaku Wada
Affiliation:Department of Applied Physics, Faculty of Engineering, University of Tokyo, Bunkyo-ku, Tokyo 113, Japan;Department of Fiber and Polymer Engineering, Faculty of Engineering, Yamagata University, Jonan 4-3-16, Yonezawa 992, Japan
Abstract:The adiabatic compressibility βS of nitroethane/isooctane is measured from 18 to 900 Hz at reduced temperatures ? ranging from 5 × 10-5 to 5 × 10-2. The zero-frequency compressibility extrapolated from the data is related with the specific heat at constant pressure cp through the theory of Ferrell and Bhattacharjee (FB). The coupling constant g is evaluated from this relation as 0.38, which agrees with that from the thermodynamic definition of g. βS at 900 Hz is observed for nitroethane/3-methylpentane at ? 5 × 10-5-6 × 10-2. A linear plot of the critical part of βS against 1n? gives g = 0.34, which agrees with g from the thermodynamic definition and also with that from ultrasonic absorption. Numerical values of the critical and background components of βS, the isothermal compressibility βT, cp, the specific heat at constant volume cv, and the thermal expansion coefficient αp are calculated for the two mixtures. The expression of βS from Anisimov's theory is found to be consistent with that from the FB theory.
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