For Question 9, Upload your work proving that ... : = -kt + [A] is the Zero-Order Integrated Rate Law by integrating d[A]/dt = -k. ■ [A]t ◉ In[A]t = -kt + In[A]0 is the First-Order Integrated Rate Law by integrating d[A]/dt = -k[A]. Use one of the following strategies: 1. Separate the variables to integrate [A] on the LHS and -k on the RHS. 2. Exponentiate the given rate law above and input the RHS for [A] + on the RHS of your integral, ―k [A]dt.

Calculus For The Life Sciences
2nd Edition
ISBN:9780321964038
Author:GREENWELL, Raymond N., RITCHEY, Nathan P., Lial, Margaret L.
Publisher:GREENWELL, Raymond N., RITCHEY, Nathan P., Lial, Margaret L.
Chapter3: The Derivative
Section3.3: Rates Of Change
Problem 29E: Explain the difference between the average rate of change of y as x changes a to b, and the...
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For Question 9, Upload your work proving that ...
: = -kt + [A] is the Zero-Order Integrated Rate Law by integrating d[A]/dt = -k.
■ [A]t
◉
In[A]t
=
-kt + In[A]0 is the First-Order Integrated Rate Law by integrating d[A]/dt = -k[A]. Use one
of the following strategies:
1. Separate the variables to integrate [A] on the LHS and -k on the RHS.
2. Exponentiate the given rate law above and input the RHS for [A] + on the RHS of your integral,
―k [A]dt.
Transcribed Image Text:For Question 9, Upload your work proving that ... : = -kt + [A] is the Zero-Order Integrated Rate Law by integrating d[A]/dt = -k. ■ [A]t ◉ In[A]t = -kt + In[A]0 is the First-Order Integrated Rate Law by integrating d[A]/dt = -k[A]. Use one of the following strategies: 1. Separate the variables to integrate [A] on the LHS and -k on the RHS. 2. Exponentiate the given rate law above and input the RHS for [A] + on the RHS of your integral, ―k [A]dt.
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