1. The reversible reaction A B has the following rate equation: k2 dA dt (1) where A = A(t) and B = B(t) are, respectively, the molar concentrations of A and B. a) Use (1) and mass conservation to find a differential equation for A(t). b) Use direct integration of the equation found in (a) to find A(t) in the case that = k₂B - k₁A
1. The reversible reaction A B has the following rate equation: k2 dA dt (1) where A = A(t) and B = B(t) are, respectively, the molar concentrations of A and B. a) Use (1) and mass conservation to find a differential equation for A(t). b) Use direct integration of the equation found in (a) to find A(t) in the case that = k₂B - k₁A
Chemical Principles in the Laboratory
11th Edition
ISBN:9781305264434
Author:Emil Slowinski, Wayne C. Wolsey, Robert Rossi
Publisher:Emil Slowinski, Wayne C. Wolsey, Robert Rossi
Chapter42: Rate Studies On The Decomposition Of Aspirin
Section: Chapter Questions
Problem 1ASA
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Solve c using FOLDE (First order linear differential equation) and d
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