Calculate the volume (in L) of an equimolar gaseous mixture methane (1), propane (2) and n-pentane (3) at 100°C, 1 atm. Use the virial EOS. Note: This is for ternary mixture. Our topic is about mixing rule molecular theory equation. Table B.1 (page 654) Yi TCi, K Pci, bar ст3 Zc mol Comp 0.333 190.6 0.012 45.99 0.286 98.6 0.286 Methane 1 Comp 0.333 369.8 0.152 42.48 0.276 200 0.276 Propane 2 Comp 0.333 469.7 0.252 33.70 0.262 383 0.270 n- pentane 3.
Calculate the volume (in L) of an equimolar gaseous mixture methane (1), propane (2) and n-pentane (3) at 100°C, 1 atm. Use the virial EOS. Note: This is for ternary mixture. Our topic is about mixing rule molecular theory equation. Table B.1 (page 654) Yi TCi, K Pci, bar ст3 Zc mol Comp 0.333 190.6 0.012 45.99 0.286 98.6 0.286 Methane 1 Comp 0.333 369.8 0.152 42.48 0.276 200 0.276 Propane 2 Comp 0.333 469.7 0.252 33.70 0.262 383 0.270 n- pentane 3.
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
Section: Chapter Questions
Problem 1.1P
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Transcribed Image Text:Calculate the volume (in L) of an equimolar gaseous mixture methane (1), propane (2) and n-pentane (3) at 100°C, 1 atm. Use the virial EOS.
Note: This is for ternary mixture. Our topic is about mixing rule molecular theory equation.
Table B.1 (рagе 654)
TCi, K
Pci, bar
Zc;
ст3
Vci,
mol
Yi
W;
Zc;
Comp
0.333
190.6
0.012
45.99
0.286
98.6
0.286
Methane
1
Comp
0.333
369.8
0.152
42.48
0.276
200
0.276
Propane
2
Comp
0.333
469.7
0.252
33.70
0.262
383
0.270
n-
3
pentane
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