The following Arrhenius plot is for a reaction following 2nd order kinetics; the rate constant has units of M-day. Arrhenius plot 9. 8. y= -3682.6x + 17.504 R2 -0.9581 3 2.00E-03 2.50E-03 3.00E-03 3.50E-03 4.00E-03 4.50E-03 1/temperature (K ) Calculate the energy of activation, Ea, for this rate constant Calculate the pre-exponential (A factor) for this rate constant. Ln (k) (ill defined units) 4.

Chemistry: Principles and Practice
3rd Edition
ISBN:9780534420123
Author:Daniel L. Reger, Scott R. Goode, David W. Ball, Edward Mercer
Publisher:Daniel L. Reger, Scott R. Goode, David W. Ball, Edward Mercer
Chapter13: Chemical Kinetics
Section: Chapter Questions
Problem 13.91QE
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The following Arrhenius plot is for a reaction following 2nd order kinetics; the rate constant has units of
M-'day-1.
Arrhenius plot
8.
y = -3682.6x + 17.504
R2 = 0.9581
3
2
2.00E-03
2.50E-03
3.00E-03
3.50E-03
4.00E-03
4.50E-03
1/temperature (K)
Calculate the energy of activation, Ea, for this rate constant
Calculate the pre-exponential (A factor) for this rate constant.
Ln (k) (ill defined units)
ト
Transcribed Image Text:The following Arrhenius plot is for a reaction following 2nd order kinetics; the rate constant has units of M-'day-1. Arrhenius plot 8. y = -3682.6x + 17.504 R2 = 0.9581 3 2 2.00E-03 2.50E-03 3.00E-03 3.50E-03 4.00E-03 4.50E-03 1/temperature (K) Calculate the energy of activation, Ea, for this rate constant Calculate the pre-exponential (A factor) for this rate constant. Ln (k) (ill defined units) ト
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