X 8.3 For C₂H, at 25°C, B = -186 cm³/mol and C= 1.06 x 104 cm%/mol². (a) Use the virial equation (8.4) to calculate the pressure of 28.8 g of C₂H,(g) in a 999-cm³ container at 25°C. Compare with the ideal-gas result. (b) Use the virial equation (8.5) to calculate the volume of 28.8 g of C₂H, at 16.0 atm and V virial #8 حة مع ممارسة 25°C. Compare with the ideal-gas result.

Introduction to Chemical Engineering Thermodynamics
8th Edition
ISBN:9781259696527
Author:J.M. Smith Termodinamica en ingenieria quimica, Hendrick C Van Ness, Michael Abbott, Mark Swihart
Publisher:J.M. Smith Termodinamica en ingenieria quimica, Hendrick C Van Ness, Michael Abbott, Mark Swihart
Chapter1: Introduction
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Question
8.3 For C₂H, at 25°C, B = -186 cm³/mol and C = 1.06 ×
104 cm%/mol². (a) Use the virial equation (8.4) to calculate the
pressure of 28.8 g of C₂H(g) in a 999-cm³ container at 25°C.
Compare with the ideal-gas result. (b) Use the virial equation
(8.5) to calculate the volume of 28.8 g of C₂H, at 16.0 atm and
25°C. Compare with the ideal-gas result.
V Nirial #?
رحة مع معاريه
Transcribed Image Text:8.3 For C₂H, at 25°C, B = -186 cm³/mol and C = 1.06 × 104 cm%/mol². (a) Use the virial equation (8.4) to calculate the pressure of 28.8 g of C₂H(g) in a 999-cm³ container at 25°C. Compare with the ideal-gas result. (b) Use the virial equation (8.5) to calculate the volume of 28.8 g of C₂H, at 16.0 atm and 25°C. Compare with the ideal-gas result. V Nirial #? رحة مع معاريه
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