.) 12) The liquid-phase reaction A + B → C was carried out in a batch reactor initially charged with 4 mol/L species A and 4 mol/L species B. The reaction is known to be first order in B. The graph below contains linearized data from the reaction. Determine the reaction order and specific reaction rate constant and write out the full rate law. Note: you must have correct units (mol, L, min) for full credit. UT 5 1/CA (L/mol) 0 y = 0.0622x + 0.2501 R² = 0.9998 0 60 20 40 t (min)

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
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Question
.) 12) The liquid-phase reaction A + B → C was carried out in a batch reactor initially charged with
4 mol/L species A and 4 mol/L species B. The reaction is known to be first order in B. The graph
below contains linearized data from the reaction. Determine the reaction order and specific
reaction rate constant and write out the full rate law. Note: you must have correct units (mol,
L, min) for full credit.
UT
5
1/CA (L/mol)
0
y = 0.0622x + 0.2501
R² = 0.9998
0
60
20
40
t (min)
Transcribed Image Text:.) 12) The liquid-phase reaction A + B → C was carried out in a batch reactor initially charged with 4 mol/L species A and 4 mol/L species B. The reaction is known to be first order in B. The graph below contains linearized data from the reaction. Determine the reaction order and specific reaction rate constant and write out the full rate law. Note: you must have correct units (mol, L, min) for full credit. UT 5 1/CA (L/mol) 0 y = 0.0622x + 0.2501 R² = 0.9998 0 60 20 40 t (min)
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