QUESTIONS No. 8) – 13): The isothermal, irreversible, aqueous phase reaction, A + B - E at 100°F with k = 15; stirred tank reactor with a feed a feed of 2000 , what will be the outlet concentration of E if the inlet concentration A and B are both 0.25 bmole 8) What is the rate equation for a steady state, well mixed CSTR derived from the GMBE as a function of concentration? ft Ibmole-hr obeys the elementary rate law. Using 1000 ft a) -ra = vo[Cao = Ca b) -rA = ['/v]S£^ [C,] 9) What is the equation derived from the combined mole balance and rate law for a steady state, well-mixed CSTR, as a function of conversion? d) -7, = H (ac,] a) =In (1– x) b) t= c) w d) 10)A substitution of the values given in the problems into equation derived from the combined mole balance and rate law for a steady state , wll-mixed CSTR, as a function of conversion, results into equation: a) In(1 – x) = 1.875 b) d) In X = 2.875 11) The conversion of the reaction is: a) 0.533 b) 1- 2.5333X + Xx² = 0 c) 1= 0.533X + x? b) 5.52 c) 0.4982 d) 0.1223
QUESTIONS No. 8) – 13): The isothermal, irreversible, aqueous phase reaction, A + B - E at 100°F with k = 15; stirred tank reactor with a feed a feed of 2000 , what will be the outlet concentration of E if the inlet concentration A and B are both 0.25 bmole 8) What is the rate equation for a steady state, well mixed CSTR derived from the GMBE as a function of concentration? ft Ibmole-hr obeys the elementary rate law. Using 1000 ft a) -ra = vo[Cao = Ca b) -rA = ['/v]S£^ [C,] 9) What is the equation derived from the combined mole balance and rate law for a steady state, well-mixed CSTR, as a function of conversion? d) -7, = H (ac,] a) =In (1– x) b) t= c) w d) 10)A substitution of the values given in the problems into equation derived from the combined mole balance and rate law for a steady state , wll-mixed CSTR, as a function of conversion, results into equation: a) In(1 – x) = 1.875 b) d) In X = 2.875 11) The conversion of the reaction is: a) 0.533 b) 1- 2.5333X + Xx² = 0 c) 1= 0.533X + x? b) 5.52 c) 0.4982 d) 0.1223
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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