Suppose a reaction with activation energy of 34.0 kJ/mol occurs at 30°C with a rate constant of 1.2 M/s. What temperature would result in a rate constant that was double this original value? Draw a picture of the course of 2 reactions. The first one should be exothermic and the second one endothermic. Label the transition state and Ea on each. Which has a larger Ea?

Chemistry: The Molecular Science
5th Edition
ISBN:9781285199047
Author:John W. Moore, Conrad L. Stanitski
Publisher:John W. Moore, Conrad L. Stanitski
Chapter11: Chemical Kinetics: Rates Of Reactions
Section11.4: A Nanoscale View: Elementary Reactions
Problem 11.8PSP
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Suppose a reaction with activation energy of 34.0 kJ/mol occurs at 30°C with a rate
constant of 1.2 M/s. What temperature would result in a rate constant that was double
this original value?
Draw a picture of the course of 2 reactions. The first one should be exothermic and the
second one endothermic. Label the transition state and Ea on each. Which has a larger
Ea?
Transcribed Image Text:Suppose a reaction with activation energy of 34.0 kJ/mol occurs at 30°C with a rate constant of 1.2 M/s. What temperature would result in a rate constant that was double this original value? Draw a picture of the course of 2 reactions. The first one should be exothermic and the second one endothermic. Label the transition state and Ea on each. Which has a larger Ea?
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