10) The dimerization of butadiene was studied at 500. K: 2C4H6 (g) →C8H12 (g) The following rate data were obtained: Rate= d[CH] dt Time (s) [CH] (mol/L) 195 1.6 x 10-2 604 1.5 × 10-2 1246 1.3 x 10-2 2180 1.1 x 10-2 6210 0.68 × 10-2 Determine the forms of the differential and integrated rate law, the value for the rate constant, and the reaction half-life.
10) The dimerization of butadiene was studied at 500. K: 2C4H6 (g) →C8H12 (g) The following rate data were obtained: Rate= d[CH] dt Time (s) [CH] (mol/L) 195 1.6 x 10-2 604 1.5 × 10-2 1246 1.3 x 10-2 2180 1.1 x 10-2 6210 0.68 × 10-2 Determine the forms of the differential and integrated rate law, the value for the rate constant, and the reaction half-life.
Chemistry by OpenStax (2015-05-04)
1st Edition
ISBN:9781938168390
Author:Klaus Theopold, Richard H Langley, Paul Flowers, William R. Robinson, Mark Blaser
Publisher:Klaus Theopold, Richard H Langley, Paul Flowers, William R. Robinson, Mark Blaser
Chapter12: Kinetics
Section: Chapter Questions
Problem 50E: For the past 10 years, the unsaturated hydrocarbon 1, 3-butadiene (CH2 = CH - CH = CH2) has ranked...
Related questions
Question
![10) The dimerization of butadiene was studied at 500. K:
2C4H6 (g) →C8H12 (g)
The following rate data were obtained:
Rate=
d[CH]
dt
Time (s)
[CH] (mol/L)
195
1.6 x 10-2
604
1.5 × 10-2
1246
1.3 x 10-2
2180
1.1 x 10-2
6210
0.68 × 10-2
Determine the forms of the differential and integrated rate law, the value for the rate
constant, and the reaction half-life.](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F0aca0999-d9f2-47f4-928a-717e195168b4%2Fd84f12cf-841d-48a9-9d6b-7b57bdfcbf1f%2F170zjb_processed.jpeg&w=3840&q=75)
Transcribed Image Text:10) The dimerization of butadiene was studied at 500. K:
2C4H6 (g) →C8H12 (g)
The following rate data were obtained:
Rate=
d[CH]
dt
Time (s)
[CH] (mol/L)
195
1.6 x 10-2
604
1.5 × 10-2
1246
1.3 x 10-2
2180
1.1 x 10-2
6210
0.68 × 10-2
Determine the forms of the differential and integrated rate law, the value for the rate
constant, and the reaction half-life.
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