8.6 At 25°C, B = = -732 cm/mol for -C,H10: For a mixture of 0.0300 mol of CH, and 0.0700 mol of n-C,H at 25°C in a 1.000-L vessel, calculate the pressure using the virial equation and (a) the approximation B12 (B, + B,); (b) the fact that for this mixture, B1, = – 180 cm/mol. Compare the results with the ideal-gas-equation -42 cm/mol for CH, and B result.

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8.6 At 25°C, B = -42 cm³/mol for CH, and B = -732
cm³/mol for n-C,H10: For a mixture of 0.0300 mol of CH, and
0.0700 mol of n-C,H0 at 25°C in a 1.000-L vessel, calculate
the pressure using the virial equation and (a) the approximation
B12~¿(B, + B,); (b) the fact that for this mixture, B = -180
cm³/mol. Compare the results with the ideal-gas-equation
Ponsidw.
%3D
4
12
result.
Transcribed Image Text:8.6 At 25°C, B = -42 cm³/mol for CH, and B = -732 cm³/mol for n-C,H10: For a mixture of 0.0300 mol of CH, and 0.0700 mol of n-C,H0 at 25°C in a 1.000-L vessel, calculate the pressure using the virial equation and (a) the approximation B12~¿(B, + B,); (b) the fact that for this mixture, B = -180 cm³/mol. Compare the results with the ideal-gas-equation Ponsidw. %3D 4 12 result.
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