11) the reaction A-→ B showed a second order kinetics. The rate constant, k for the reaction was found to be 0.964(I/mol.hr). If [A.J = 3.27 M. calculate the concentration of A that's left after 85.0 minutes a) 0.0122 M b) 1.67 M c) 0.598 M
11) the reaction A-→ B showed a second order kinetics. The rate constant, k for the reaction was found to be 0.964(I/mol.hr). If [A.J = 3.27 M. calculate the concentration of A that's left after 85.0 minutes a) 0.0122 M b) 1.67 M c) 0.598 M
Chemistry
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ISBN:9781305957404
Author:Steven S. Zumdahl, Susan A. Zumdahl, Donald J. DeCoste
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![11) the reaction A-→ B showed a second order kinetics. The rate constant, k for the reaction was found
to be 0.964(I/mol.hr). If [A.) = 3.27 M. calculate the concentration of A that's left after 85.0 minutes
a) 0.0122 M
b) 1.67 M
c) 0.598 M](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F41732bba-287b-4e49-a555-8971ee24777a%2F80388a63-8149-4aee-82d6-113468bc5e65%2Fh7a7x0p_processed.png&w=3840&q=75)
Transcribed Image Text:11) the reaction A-→ B showed a second order kinetics. The rate constant, k for the reaction was found
to be 0.964(I/mol.hr). If [A.) = 3.27 M. calculate the concentration of A that's left after 85.0 minutes
a) 0.0122 M
b) 1.67 M
c) 0.598 M
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