Consider the following two virial equations of state. Z = 1 + 2B’ p + 3 C’ p2 + D’ p3 + E’ p4 + ….. Z = 1 + 4B (1/Vm) + 5C (1/Vm)2 + D (1/Vm)3 + E (1/Vm)4+ …. where B’, B, C’, C, D’, D, E’ and E, etc, are virial coefficients; p is the pressure and Vm is the molar volume. (a) Find the relation between B and B’. (b) Determine the ratio B’/B at T = 420 K from your expression including the appropriate units in your answer.
Consider the following two virial equations of state. Z = 1 + 2B’ p + 3 C’ p2 + D’ p3 + E’ p4 + ….. Z = 1 + 4B (1/Vm) + 5C (1/Vm)2 + D (1/Vm)3 + E (1/Vm)4+ …. where B’, B, C’, C, D’, D, E’ and E, etc, are virial coefficients; p is the pressure and Vm is the molar volume. (a) Find the relation between B and B’. (b) Determine the ratio B’/B at T = 420 K from your expression including the appropriate units in your answer.
Chemistry
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ISBN:9781305957404
Author:Steven S. Zumdahl, Susan A. Zumdahl, Donald J. DeCoste
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Chapter1: Chemical Foundations
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Consider the following two virial equations of state.
Z = 1 + 2B’ p + 3 C’ p2 + D’ p3 + E’ p4 + …..
Z = 1 + 4B (1/Vm) + 5C (1/Vm)2 + D (1/Vm)3 + E (1/Vm)4+ ….
where B’, B, C’, C, D’, D, E’ and E, etc, are virial coefficients; p is the pressure and Vm is the molar volume.
(a) Find the relation between B and B’.
(b) Determine the ratio B’/B at T = 420 K from your expression including the appropriate units in your answer.
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