RESEARCH NOTE Fifth virial coefficient of hard sphere mixtures

New calculations of the fifth virial coefficient are presented for binary hard sphere mixtures. These improve on, and in some cases correct, previous results. A polynomial fit is used to extend the results to all diameter ratios, with an accuracy better than 1.05%. It is confirmed that the fifth vir...

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Published inMolecular physics Vol. 94; no. 5; pp. 877 - 879
Main Author R. J. WHEATLEY F. SAIJA P. V. GIAQUINTA
Format Journal Article
LanguageEnglish
Published Taylor & Francis Group 01.08.1998
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Abstract New calculations of the fifth virial coefficient are presented for binary hard sphere mixtures. These improve on, and in some cases correct, previous results. A polynomial fit is used to extend the results to all diameter ratios, with an accuracy better than 1.05%. It is confirmed that the fifth virial coefficient is positive for all diameter ratios and mole fractions.
AbstractList New calculations of the fifth virial coefficient are presented for binary hard sphere mixtures. These improve on, and in some cases correct, previous results. A polynomial fit is used to extend the results to all diameter ratios, with an accuracy better than 1.05%. It is confirmed that the fifth virial coefficient is positive for all diameter ratios and mole fractions.
Author R. J. WHEATLEY F. SAIJA P. V. GIAQUINTA
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10.1080/002689798169005
10.1080/00268979400101711
10.1007/BF01008253
10.1080/002689798168664
10.1080/00268979600100671
10.1103/PhysRevE.54.6242
10.1080/002689797172417
10.1080/002689797170374
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10.1063/1.1725286
10.1088/0305-4470/26/19/014
10.1103/PhysRevE.57.4486
10.1080/00268979500100931
10.1007/BF01011091
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Title RESEARCH NOTE Fifth virial coefficient of hard sphere mixtures
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