1. The following table below is the experimental equilibrium data for the ethanol (1) – benzene (2) at 40 °C. Based on the given experimental equilibrium data, construct the P – xy diagram for this sytem. Experimental equilibrium data for ethanol (1) – benzene (2) at 40°C. P (mm Hg) 208.4 XI yi 0.415 0.020 0.095 0.280 239.8 0.204 0.332 249.1 0.378 0.362 252.3 0.490 248.8 0.384 0.405 0.592 245.7 0.702 0.440 237.3 0.802 0.507 219.4 0.880 0.605 196.3 0.943 0.747 169.5 0.987 0.912 145.6

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
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Ps. Problem number 1 in the image
1. The following table below is the experimental equilibrium data for the ethanol (1) –
benzene (2) at 40 °C.
Based on the given experimental equilibrium data, construct the P – xy diagram for this
sytem.
Experimental equilibrium data for ethanol (1) – benzene (2)
at 40°C.
yı
0.415
P (mm Hg)
208.4
XI
0.020
0.095
0.280
239.8
0.204
0.332
0.362
249.1
252.3
0.378
0.490
0.384
248.8
0.592
0.405
245.7
0.702
0.440
237.3
0.802
0.507
219.4
0.880
0.605
196.3
0.943
0.747
169.5
0.987
0.912
145.6
Transcribed Image Text:1. The following table below is the experimental equilibrium data for the ethanol (1) – benzene (2) at 40 °C. Based on the given experimental equilibrium data, construct the P – xy diagram for this sytem. Experimental equilibrium data for ethanol (1) – benzene (2) at 40°C. yı 0.415 P (mm Hg) 208.4 XI 0.020 0.095 0.280 239.8 0.204 0.332 0.362 249.1 252.3 0.378 0.490 0.384 248.8 0.592 0.405 245.7 0.702 0.440 237.3 0.802 0.507 219.4 0.880 0.605 196.3 0.943 0.747 169.5 0.987 0.912 145.6
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