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Molecular Physics
An International Journal at the Interface Between Chemistry and Physics
Volume 30, 1975 - Issue 6
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Original Articles

Third virial coefficients of Ar+Kr and Kr+Xe mixtures

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Pages 1853-1860 | Received 24 Jun 1975, Published online: 23 Aug 2006

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MARIAA. BOSSE & RICARDO REICH. (1988) CORRELATION FOR THE THIRD VIRIAL COEFFICIENT USING T, P , DIPOLAR POLARIZABILITY AND MEAN RADIUS OF GYRATION AS PARAMETERS. Chemical Engineering Communications 66:1, pages 83-99.
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M. Rami Reddy, SeamusF. O'Shea & Gianni Cardini. (1986) Analytical approximations to virial coefficients for pure and mixed systems. Molecular Physics 57:4, pages 841-856.
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Articles from other publishers (7)

Maryam Baniasadi, A. Mohebbi & Mehdi Baniasadi. (2012) A new correlation based on artificial neural networks for predicting the natural gas compressibility factor. Journal of Engineering Thermophysics 21:4, pages 248-258.
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William R. Adams, John A. Zollweg, William B. Strett, Walter G. Chapman & Paulette Clancy. (1988) The excess enthalpy for a mixture of krypton and xenon: experiment and theory. Fluid Phase Equilibria 40:3, pages 247-257.
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J S Rowlinson & F L Swinton. 1982. Liquids and Liquid Mixtures. Liquids and Liquid Mixtures 132 190 .
Roberto De Santis & Biagio Grande. (2004) An equation for predicting third virial coefficients of nonpolar gases. AIChE Journal 25:6, pages 931-938.
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Keith L Lewis, Lélio Q Lobo & Lionel A.K Staveley. (1978) The thermodynamics of liquid mixtures of argon + krypton. The Journal of Chemical Thermodynamics 10:4, pages 351-358.
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David A. Rabenold & Bruno Linder. (1977) Cohesive energy of a van der waals crystal: inclusion of quadrupoles. Chemical Physics Letters 49:3, pages 453-456.
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J. A. Barker & D. Henderson. (1976) What is "liquid"? Understanding the states of matter. Reviews of Modern Physics 48:4, pages 587-671.
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