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Thermal expansion, heat capacity, and compressibility of solid CO2

✍ Scribed by V. G. Manzhelii; A. M. Tolkachev; M. I. Bagatskii; E. I. Voitovich


Publisher
John Wiley and Sons
Year
1971
Tongue
English
Weight
554 KB
Volume
44
Category
Article
ISSN
0370-1972

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✦ Synopsis


Abstract

The coefficients of thermal expansion (13 to 139 Β°K), heat capacity (2 to 20 Β°K), and velocity of longitudinal and transversal ultrasonic waves (88 to 190 Β°K) for solid CO~2~ have been determined along the solid‐vapour equilibrium line. Heat capacity of constant volume, adiabatic and isothermal compressibilities, the GrΓΌneisen and Poisson coefficients were calculated using the above data. The contributions of various types of heat motion to heat capacity, thermal expansion and compressibility have been separated, and the parameters of isolated orientational defects in crystalline CO~2~ determined. The connection between the orientational defect parameters and the extent of non‐centricity of intermolecular interactions in solids is discussed.


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