3 A → B + C The above reaction is determined to be second-order. A. If the reaction begins with an initial concentration of 1.84 MA and takes 34.21 minutes to undergo one half-life, what is the rate constant for this reaction? (Do not include units in your typed response, but make sure they appear on your scratchwork.) B. How long would the second half-life for this reaction be in minutes?

Chemistry: An Atoms First Approach
2nd Edition
ISBN:9781305079243
Author:Steven S. Zumdahl, Susan A. Zumdahl
Publisher:Steven S. Zumdahl, Susan A. Zumdahl
Chapter11: Chemical Kinetics
Section: Chapter Questions
Problem 6RQ: Derive expressions for the half-life of zero-, first-, and second-order reactions using the...
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3 A B + C
The above reaction is determined to be second-order.
A. If the reaction begins with an initial concentration of 1.84 MA and takes 34.21
minutes to undergo one half-life, what is the rate constant for this reaction? (Do not
include units in your typed response, but make sure they appear on your scratchwork.)
B. How long would the second half-life for this reaction be in minutes?
Transcribed Image Text:3 A B + C The above reaction is determined to be second-order. A. If the reaction begins with an initial concentration of 1.84 MA and takes 34.21 minutes to undergo one half-life, what is the rate constant for this reaction? (Do not include units in your typed response, but make sure they appear on your scratchwork.) B. How long would the second half-life for this reaction be in minutes?
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