The reaction C2H5I + OH C2H5OH + I was studied, and the following rates were obtained. Temperature, °C Rate constant, M1s-1 15.83 5.03 x 10-5 32.02 3.68 x 10-4 59.75 6.71 x 10-3 90.61 1.19 x 10-1 43. Fit this data into the Arrhenius equation. Provide the values for the following: Slope -1.09 x 10 %3D y-intercept 27.8 %3D Pearson coefficient (R) = -1.000 activation energy of this reaction in kJ/mol = 9.06 x 10 collision frequency factor A = 1.15 x 10

Chemistry for Engineering Students
4th Edition
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Author:Lawrence S. Brown, Tom Holme
Publisher:Lawrence S. Brown, Tom Holme
Chapter11: Chemical Kinetics
Section: Chapter Questions
Problem 11.58PAE
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Choices for slope:

a. -1.35 x 10^4

b. 1.35 x 10^4

c. -1.09 x 10^4

d. 1.09 x 10^4

choices for y intercept:

a.  -27.8

b. 27.8

c. 37.4

d. -37.4

choices for pearson:

a. -0.962

b. -1000

c. -0.982

activation energy

a. 9.06 x 10^4

b. 113

c. 90.65

collision frequency factor A

a. 1.15 x 10^12

b. 113

c. 90.65

The reaction C2H5I + OH→ C2H;OH +I was studied, and the following rates were obtained.
Temperature, °C Rate constant, M 1s-1
15.83
5.03 x 10-5
32.02
3.68 x 10-4
59.75
6.71 × 10-3
90.61
1.19 x 10-1
43. Fit this data into the Arrhenius equation. Provide the values for the following:
Slope =-1.09 x 10"
y-intercept =
27.8
%3D
Pearson coefficient (R) = -1.000
activation energy of this reaction in kJ/mol = 9.06 x 10"
collision frequency factor A = 1.15 x 10"
Transcribed Image Text:The reaction C2H5I + OH→ C2H;OH +I was studied, and the following rates were obtained. Temperature, °C Rate constant, M 1s-1 15.83 5.03 x 10-5 32.02 3.68 x 10-4 59.75 6.71 × 10-3 90.61 1.19 x 10-1 43. Fit this data into the Arrhenius equation. Provide the values for the following: Slope =-1.09 x 10" y-intercept = 27.8 %3D Pearson coefficient (R) = -1.000 activation energy of this reaction in kJ/mol = 9.06 x 10" collision frequency factor A = 1.15 x 10"
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