The dependence of rate constant on temperature is normally given by the Arrhenius relation: k = Ae-Ea/RT It was noted that the rate constant of a certain reaction TRIPLED (increased by a factor of three) when the temperature increased from 50 degrees Celsius to 65 degrees Celsius. Calculate the activation energy (Ea) for this reaction. Select one:

Introduction to General, Organic and Biochemistry
11th Edition
ISBN:9781285869759
Author:Frederick A. Bettelheim, William H. Brown, Mary K. Campbell, Shawn O. Farrell, Omar Torres
Publisher:Frederick A. Bettelheim, William H. Brown, Mary K. Campbell, Shawn O. Farrell, Omar Torres
Chapter7: Reaction Rates And Chemical Equilibrium
Section: Chapter Questions
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The dependence of rate constant on temperature is
normally given by the Arrhenius relation: k = Ae-Ea/RT
It was noted that the rate constant of a certain reaction
TRIPLED (increased by a factor of three) when the
temperature increased from 50 degrees Celsius to 65
degrees Celsius.
Calculate the activation energy (Ea) for this reaction.
Select one:
A. 1246.4 J/mole
B. 1978 J/mole
C. 41.8 kJ/mole
OD. None of the above
E. 67.07 kJ/mole
Transcribed Image Text:The dependence of rate constant on temperature is normally given by the Arrhenius relation: k = Ae-Ea/RT It was noted that the rate constant of a certain reaction TRIPLED (increased by a factor of three) when the temperature increased from 50 degrees Celsius to 65 degrees Celsius. Calculate the activation energy (Ea) for this reaction. Select one: A. 1246.4 J/mole B. 1978 J/mole C. 41.8 kJ/mole OD. None of the above E. 67.07 kJ/mole
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