Calculate Z and V for ethane at 50°C (323.15 K) and 15 bar by the following equations: (a) The truncated virial equation [Eq. (3.40)] with the following experimental values of virial coefficients: B = -156.7 cm³ mol- C = 9650 cmº mol-2 (b) The truncated virial equation [Eq. (3.38)], with a value of B from the generalized Pitzer correlation [Eq. (3.63)] (c) The Redlich/Kwong equation (d) The Soave/Redlich/Kwong equation (e) The Peng/Robinson equation

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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3.33. Calculate Z and V for ethane at 50°C (323.15 K) and 15 bar by the following equations:
(a) The truncated virial equation [Eq. (3.40)] with the following experimental values
naberupan bye
Omo Ceof virial coefficients:
TKand 5 bar
B = -156.7 cm³ mol-!
C = 9650 cm mol-2
3.43
(b) The truncated virial equation [Eq. (3.38)], with a value of B from the generalized
Pitzer correlation [Eq. (3.63)]
(c) The Redlich/Kwong equation
(d) The Soave/Redlich/Kwong equation
(e) The Peng/Robinson equation
bot
all
Transcribed Image Text:3.33. Calculate Z and V for ethane at 50°C (323.15 K) and 15 bar by the following equations: (a) The truncated virial equation [Eq. (3.40)] with the following experimental values naberupan bye Omo Ceof virial coefficients: TKand 5 bar B = -156.7 cm³ mol-! C = 9650 cm mol-2 3.43 (b) The truncated virial equation [Eq. (3.38)], with a value of B from the generalized Pitzer correlation [Eq. (3.63)] (c) The Redlich/Kwong equation (d) The Soave/Redlich/Kwong equation (e) The Peng/Robinson equation bot all
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