Use the Arrhenius equation to determine k. The activation energy for the gas phase decomposition of isobutyl bromide is 211 kJ/mol. (CH3)2CHCH₂Br-(CH3)₂C=CH₂ + HBr The rate constant for this reaction is 6.32x10-4 s-1 at 677 K. What is the rate constant at 718 K? s1
Use the Arrhenius equation to determine k. The activation energy for the gas phase decomposition of isobutyl bromide is 211 kJ/mol. (CH3)2CHCH₂Br-(CH3)₂C=CH₂ + HBr The rate constant for this reaction is 6.32x10-4 s-1 at 677 K. What is the rate constant at 718 K? s1
Chemistry
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![Use the Arrhenius equation to determine k.
The activation energy for the gas phase decomposition of isobutyl bromide is 211 kJ/mol.
(CH3)2CHCH₂Br-(CH3)₂C=CH₂ + HBr
The rate constant for this reaction is 6.32x10-4 s-1 at 677 K. What is the rate constant at 718 K?
s-1](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2Fb6d50391-92c3-428f-a052-8385218d41f0%2Fe338d6aa-92f2-4749-916c-340aa797c526%2Fj28e85_processed.jpeg&w=3840&q=75)
Transcribed Image Text:Use the Arrhenius equation to determine k.
The activation energy for the gas phase decomposition of isobutyl bromide is 211 kJ/mol.
(CH3)2CHCH₂Br-(CH3)₂C=CH₂ + HBr
The rate constant for this reaction is 6.32x10-4 s-1 at 677 K. What is the rate constant at 718 K?
s-1
![Use the Arrhenius equation to determine Ea-
For the gas phase decomposition of isobutyl bromide, the rate constant is 4.60x10-5 s¹ at 633 K and
8.20x10-4 s¹ at 682 K.
(CH3)2CHCH₂Br-(CH3)₂C=CH₂ + HBr
Calculate the activation energy for this reaction.
kJ/mol](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2Fb6d50391-92c3-428f-a052-8385218d41f0%2Fe338d6aa-92f2-4749-916c-340aa797c526%2Fcmb00ka_processed.jpeg&w=3840&q=75)
Transcribed Image Text:Use the Arrhenius equation to determine Ea-
For the gas phase decomposition of isobutyl bromide, the rate constant is 4.60x10-5 s¹ at 633 K and
8.20x10-4 s¹ at 682 K.
(CH3)2CHCH₂Br-(CH3)₂C=CH₂ + HBr
Calculate the activation energy for this reaction.
kJ/mol
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