Examine Figure PI1.7 provided through the courtsey of Professor Mike Cutlip. a. Calculate the molar flow rate of D,. D3. B, and By b. Reduce the feed flow rate for each one of the compounds by 1% in turn. Calcu- late the flow rates of D, D2, B, and B, again. Do you notice something unusual? Explain your results. 7% Xylene 4% Styrene 54% Toluene D1 35% Benzene 18% Xylene 24% Siyrene 42% Toluene 16% Bonzene 81 15% Xylene 25% Styrene 40% Toluane 20% Benzene 15% Xylene 10% Siyrene 54% Toluene 21% Banzene D2 F- 70 movmin 24% Xylene 65% Styrane 10% Toluene 82 2% Bonzone
Examine Figure PI1.7 provided through the courtsey of Professor Mike Cutlip. a. Calculate the molar flow rate of D,. D3. B, and By b. Reduce the feed flow rate for each one of the compounds by 1% in turn. Calcu- late the flow rates of D, D2, B, and B, again. Do you notice something unusual? Explain your results. 7% Xylene 4% Styrene 54% Toluene D1 35% Benzene 18% Xylene 24% Siyrene 42% Toluene 16% Bonzene 81 15% Xylene 25% Styrene 40% Toluane 20% Benzene 15% Xylene 10% Siyrene 54% Toluene 21% Banzene D2 F- 70 movmin 24% Xylene 65% Styrane 10% Toluene 82 2% Bonzone
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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