Paraxylene, styrene, toluene, and benzene are to be separated with the array of distillation columns shown in the following figure. Calculate the molar flow rates of Di, D2, B1, and B2. 6% Xylene 5% Styrene 51% Toluene 38% Benzene 19% Xylene 21% Styrene 36% Tolvene 24% Berazene 22% Xylene B, 20% Shyrene 46% Tohuene 12% Benzene D, 18% Xylene 9% Styrene 42% Tohene 31% Benzene F= 70 kg-molmin B 28% Xylene 63% Styrene 8% Tohene 1% Benzene a- Using the polymath software. b- Using the Excel solver. c- Using Gauss Elimination method. d- Find the inverse by Gauss Jordan then find the solution of the system. e- Using LU factorization.
Paraxylene, styrene, toluene, and benzene are to be separated with the array of distillation columns shown in the following figure. Calculate the molar flow rates of Di, D2, B1, and B2. 6% Xylene 5% Styrene 51% Toluene 38% Benzene 19% Xylene 21% Styrene 36% Tolvene 24% Berazene 22% Xylene B, 20% Shyrene 46% Tohuene 12% Benzene D, 18% Xylene 9% Styrene 42% Tohene 31% Benzene F= 70 kg-molmin B 28% Xylene 63% Styrene 8% Tohene 1% Benzene a- Using the polymath software. b- Using the Excel solver. c- Using Gauss Elimination method. d- Find the inverse by Gauss Jordan then find the solution of the system. e- Using LU factorization.
Chemistry
10th Edition
ISBN:9781305957404
Author:Steven S. Zumdahl, Susan A. Zumdahl, Donald J. DeCoste
Publisher:Steven S. Zumdahl, Susan A. Zumdahl, Donald J. DeCoste
Chapter1: Chemical Foundations
Section: Chapter Questions
Problem 1RQ: Define and explain the differences between the following terms. a. law and theory b. theory and...
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Transcribed Image Text:Paraxylene, styrene, toluene, and benzene are to be separated with the array of distillation columns
shown in the following figure. Calculate the molar flow rates of D1, D2, B1, and B2.
6% Xylane
5% Styrene
51% Toluene
38% Benzene
19% Xylene
21% Styrene
36% Tolvene
24% Berazene
22% Xylene
B, 20% Styrene
46% Tohvene
12% Benzene
D, 18% Xylene
9% Styrene
42% Tohene
31% Benzene
F= 70 kg-molimin
B
28% Xylene
63% Styrene
8% Tohuene
1% Benzene
a- Using the polymath software.
b- Using the Excel solver.
c- Using Gauss Elimination method.
d- Find the inverse by Gauss Jordan then find the solution of the system.
e- Using LU factorization.
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