Concept explainers
To derive:
The expression of
Introduction:
The Arrhenius Law defines the activation energies and the rate constants of the reaction. The reactions can be of two types − catalyzed and uncatalyzed. In catalyzed reaction the presence of catalyst like enzymes reduce the activation energy and hence the reaction can be triggered at a lower energy level. In this question we are deriving an equation for catalytic power, that is, the ratio of catalyzed and uncatalyzed reactions.

Explanation of Solution
The catalyzed reaction is given as:
The equilibrium constant will determine the concentration of EX transition state which is given below:
The relation between free activation energy and equilibrium constant can be given by the following equation:
After substituting and simplifying the equations we get:
The above reaction was for catalyzed reactions. The reactions for uncatalyzed can be seen below:
Similarly, here the equilibrium constant determines the concentration of the X transition state as below:
The relation between free activation energy and equilibrium constant in this case can be given seen in the following equation:
Thus, simplifying the equations:
Hence, it can be considered that:
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Chapter 14 Solutions
Study Guide with Student Solutions Manual and Problems Book for Garrett/Grisham's Biochemistry, 6th
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- BiochemistryBiochemistryISBN:9781305577206Author:Reginald H. Garrett, Charles M. GrishamPublisher:Cengage Learning
