Using the rate law: rate = k [A]¹ [B]¹_(k = 50.8 M-¹.s-¹), deduce what volumes of the A and B solutions, and water would need to be combined to achieve a color change at the 90 second mark. The total volume will need to be 10 mL, and that the starting concentrations of the A and B solutions is 0.0090 M in A, and 0.0050 M in B.

Chemistry & Chemical Reactivity
10th Edition
ISBN:9781337399074
Author:John C. Kotz, Paul M. Treichel, John Townsend, David Treichel
Publisher:John C. Kotz, Paul M. Treichel, John Townsend, David Treichel
Chapter14: Chemical Kinetics: The Rates Of Chemical Reactions
Section: Chapter Questions
Problem 73GQ: Data for the reaction [Mn(CO)5(CH3CN)]+ + NC5H5 (Mn(CO)5(NC5H5)]+ + CH3CN are given in the table....
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Using the rate law: rate = k [A]¹ [B]¹_(k = 50.8 M-¹.s-¹), deduce what volumes of the A and B
solutions, and water would need to be combined to achieve a color change at the 90 second
mark. The total volume will need to be 10 mL, and that the starting concentrations of the A and
B solutions is 0.0090 M in A, and 0.0050 M in B.
Transcribed Image Text:Using the rate law: rate = k [A]¹ [B]¹_(k = 50.8 M-¹.s-¹), deduce what volumes of the A and B solutions, and water would need to be combined to achieve a color change at the 90 second mark. The total volume will need to be 10 mL, and that the starting concentrations of the A and B solutions is 0.0090 M in A, and 0.0050 M in B.
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