4 first-order Barker-Henderson perturbation theory for interaction-site model (ISM) fluids has been appled to calculate the Helmholtz frec energy, entropy and unternal energy of Liquid nutrogen Comparison with experiment reuforces the tdea that the theory is accurate over a wide range of temperature
Thermodynamic Properties of Sutherland Fluids from an Analytical Perturbation Theory
β Scribed by J. Largo; J. R. Solana
- Book ID
- 110238692
- Publisher
- Springer
- Year
- 2000
- Tongue
- English
- Weight
- 108 KB
- Volume
- 21
- Category
- Article
- ISSN
- 0195-928X
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A~traet--In this paper, we present a first-order hard sphere perturbation theory of nonideal ternary fluid mixtures. Results are reported for total and excess thermodynamic properties of three ternary mixtures, in which size parameters of the mixture components are the same, but energy parameters di
In this paper, a previously developed first-order hard sphere perturbation theory of a ternary fluid mixture (Fotouh and Shukla, 1996, Chem. Enyn9 Sci. 51, 49234931) is applied to predict excess properties of a real ternary fluid mixture using a theoretically consistent combination rule. We consider