2.2 For ethylene at 100°C, the second and third virial coefficients are: B = -140 cm' / mol C = 7,200 cm“ / mol? Calculate the work of a mechanically reversible, isothermal compression of 1 mol of ethylene from 12 bar to 40 bar at 100°C. Base your calculation on the following form of the virial equation: Z = 1 + B'P + C' p? where B' = B / RT and C' = (C - B³) / (R T)²

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Author:J.M. Smith Termodinamica en ingenieria quimica, Hendrick C Van Ness, Michael Abbott, Mark Swihart
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2.2 For ethylene at 100°C, the second and third virial coefficients are:
B = -140 cm? / mol
C = 7,200 cm / mol?
Calculate the work of a mechanically reversible, isothermal compression of 1 mol of ethylene from
12 bar to 40 bar at 100°C. Base your calculation on the following form of the virial equation:
Z = 1 + B'P + C' P?
where B' = B / RT
and
C' = (C - B²) / (R T)²
Transcribed Image Text:2.2 For ethylene at 100°C, the second and third virial coefficients are: B = -140 cm? / mol C = 7,200 cm / mol? Calculate the work of a mechanically reversible, isothermal compression of 1 mol of ethylene from 12 bar to 40 bar at 100°C. Base your calculation on the following form of the virial equation: Z = 1 + B'P + C' P? where B' = B / RT and C' = (C - B²) / (R T)²
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