24. The first-order rearrangement of CH3NC has a rate constant of 3.61 × 10-15 s-1 at 298 K and a rate constant of 8.66 × 10-7 s¹ at 425 K. Determine the activation energy for this reaction. A. 160. kJ/mol B. 240. kJ/mol C. 417 kJ/mol D. 127 kJ/mol E. 338 kJ/mol
24. The first-order rearrangement of CH3NC has a rate constant of 3.61 × 10-15 s-1 at 298 K and a rate constant of 8.66 × 10-7 s¹ at 425 K. Determine the activation energy for this reaction. A. 160. kJ/mol B. 240. kJ/mol C. 417 kJ/mol D. 127 kJ/mol E. 338 kJ/mol
Chemistry
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ISBN:9781305957404
Author:Steven S. Zumdahl, Susan A. Zumdahl, Donald J. DeCoste
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Chapter1: Chemical Foundations
Section: Chapter Questions
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![24. The first-order rearrangement of CH3NC has a rate constant of 3.61 × 10-15 s-1 at 298 K and a
rate constant of 8.66 × 10-7 s¹ at 425 K. Determine the activation energy for this reaction.
A. 160. kJ/mol
B. 240. kJ/mol
C. 417 kJ/mol
D. 127 kJ/mol
E. 338 kJ/mol](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F765b863c-0883-4071-8f0f-832646f981bf%2F6beaca60-16ee-48dc-8af2-7bacdcfef18c%2F4sojp4a_processed.jpeg&w=3840&q=75)
Transcribed Image Text:24. The first-order rearrangement of CH3NC has a rate constant of 3.61 × 10-15 s-1 at 298 K and a
rate constant of 8.66 × 10-7 s¹ at 425 K. Determine the activation energy for this reaction.
A. 160. kJ/mol
B. 240. kJ/mol
C. 417 kJ/mol
D. 127 kJ/mol
E. 338 kJ/mol
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