b. The rate law for this clock reaction measured at a different temperature was found to be: rate = 7.0 M-¹.s¹ [A]¹ [B]¹ Like during your Intro Activity, the rate was determined to be the time that it took to totally consume a third component that had an initial concentration = 0.0020 M. If a student were trying to get the color of the reaction to change in 30 seconds, and they started with a concentration of component A = 0.0050 M, what would the concentration of component B need to be?
b. The rate law for this clock reaction measured at a different temperature was found to be: rate = 7.0 M-¹.s¹ [A]¹ [B]¹ Like during your Intro Activity, the rate was determined to be the time that it took to totally consume a third component that had an initial concentration = 0.0020 M. If a student were trying to get the color of the reaction to change in 30 seconds, and they started with a concentration of component A = 0.0050 M, what would the concentration of component B need to be?
Chemistry for Engineering Students
4th Edition
ISBN:9781337398909
Author:Lawrence S. Brown, Tom Holme
Publisher:Lawrence S. Brown, Tom Holme
Chapter11: Chemical Kinetics
Section: Chapter Questions
Problem 11.104PAE
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