CHEMWORK Consider two reaction vessels, one containing A and the other containing B. At t = 0, [A]o [B]o. A and B decompose by first order kinetics with rate constants of kA = 4.50 x 10-4 s-1 and kB = 3.70 x 103 s1, respectively. Calculate the time that must pass to reach the condition such that [A] (6.64)[B]. seconds

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Chapter1: Chemical Foundations
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CHEMWORK
Consider two reaction vessels, one containing A and the other containing B. At t = 0, [A]o = [B]o. A and B decompose
by first order kinetics with rate constants of
4.50 x 10-4 s and kB
= 3.70 x 103 s1, respectively. Calculate the time that must pass to reach the condition
KA
such that [A]
%3D
(6.64)[B].
seconds
Transcribed Image Text:CHEMWORK Consider two reaction vessels, one containing A and the other containing B. At t = 0, [A]o = [B]o. A and B decompose by first order kinetics with rate constants of 4.50 x 10-4 s and kB = 3.70 x 103 s1, respectively. Calculate the time that must pass to reach the condition KA such that [A] %3D (6.64)[B]. seconds
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