For the following S,1 solvolys's reaction. select the correct rate equation and the overall reaction order (note: CH;OH is the solvent for the reaction). OH - HOOPEHD)- HOPHO - 100RPHD dil See Periodic Table O See Hint Part 1 The correct rate law for this reaction is Choose one: O rate ki(CH:)CC] (HO HOY = eu o o rate - k(CHalsccja (CH:OH) Part 2 The overall order of the reaction is: Choose one: o first order O second order O third order O fourth order
For the following S,1 solvolys's reaction. select the correct rate equation and the overall reaction order (note: CH;OH is the solvent for the reaction). OH - HOOPEHD)- HOPHO - 100RPHD dil See Periodic Table O See Hint Part 1 The correct rate law for this reaction is Choose one: O rate ki(CH:)CC] (HO HOY = eu o o rate - k(CHalsccja (CH:OH) Part 2 The overall order of the reaction is: Choose one: o first order O second order O third order O fourth order
Chemistry
10th Edition
ISBN:9781305957404
Author:Steven S. Zumdahl, Susan A. Zumdahl, Donald J. DeCoste
Publisher:Steven S. Zumdahl, Susan A. Zumdahl, Donald J. DeCoste
Chapter1: Chemical Foundations
Section: Chapter Questions
Problem 1RQ: Define and explain the differences between the following terms. a. law and theory b. theory and...
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![**Part 1: Reaction Rate Order**
The correct rate law for this reaction is:
- Rate = k[CH₃Br][CH₃OH][H⁺]
Choose one:
- \( \text{Rate} = k[\text{CH}_3\text{Br}][\text{H}^+] \)
- \( \text{Rate} = k[\text{CH}_3\text{OH}][\text{H}^+] \)
- \( \text{Rate} = k[\text{CH}_3\text{Br}] \)
- \( \text{Rate} = k[\text{CH}_3\text{Br}][\text{CH}_3\text{OH}] \)
- \( \text{Rate} = k[\text{CH}_3\text{Br}][\text{CH}_3\text{OH}][\text{H}^+] \)
**Part 2: Reaction Mechanism Order**
The overall order of the reaction is:
- First order
- Second order
- Third order
- Fourth order
Choose one:
---
*Note: For determining the rate law for a reaction, consider using experimental data to deduce the overall reaction order or refer to empirical methods to outline the rate-determining step. The link between reaction order and concentration can be clarified with reference to the periodic table or using provided hints for solving kinetic problems.*](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2Fbcb84e85-6ef5-4443-bb25-24691274122e%2F5f56d90a-5329-4217-97c9-a25a6f3bb160%2Fz5z4m6_processed.jpeg&w=3840&q=75)
Transcribed Image Text:**Part 1: Reaction Rate Order**
The correct rate law for this reaction is:
- Rate = k[CH₃Br][CH₃OH][H⁺]
Choose one:
- \( \text{Rate} = k[\text{CH}_3\text{Br}][\text{H}^+] \)
- \( \text{Rate} = k[\text{CH}_3\text{OH}][\text{H}^+] \)
- \( \text{Rate} = k[\text{CH}_3\text{Br}] \)
- \( \text{Rate} = k[\text{CH}_3\text{Br}][\text{CH}_3\text{OH}] \)
- \( \text{Rate} = k[\text{CH}_3\text{Br}][\text{CH}_3\text{OH}][\text{H}^+] \)
**Part 2: Reaction Mechanism Order**
The overall order of the reaction is:
- First order
- Second order
- Third order
- Fourth order
Choose one:
---
*Note: For determining the rate law for a reaction, consider using experimental data to deduce the overall reaction order or refer to empirical methods to outline the rate-determining step. The link between reaction order and concentration can be clarified with reference to the periodic table or using provided hints for solving kinetic problems.*
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