ZOOM Press Esc to exit full screen Solve: For a completed nuclear warhead, determine the “shelf-life" at the destination in years (with three Sig Figs) before the amount of tritium remaining is too low to successfully detonate. Please show all your work including your calculated rate constant, however, there is no need to round that number. Given Information: Starting mass: Minimum mass: 14.0 kg 6.50 kg Half-life: 150. months Equations: Zero Order First Order Second Order Rate = k[A]! In [A] = -kt + In [A]o t1/2 = In(2) / k Rate = k[A]? 1/[A] = kt + 1/[A]o t1/2 = 1/ (k[A]o) Rate = k [A]; = -kt + [A]o t1/2 = [A]o / (2k)
ZOOM Press Esc to exit full screen Solve: For a completed nuclear warhead, determine the “shelf-life" at the destination in years (with three Sig Figs) before the amount of tritium remaining is too low to successfully detonate. Please show all your work including your calculated rate constant, however, there is no need to round that number. Given Information: Starting mass: Minimum mass: 14.0 kg 6.50 kg Half-life: 150. months Equations: Zero Order First Order Second Order Rate = k[A]! In [A] = -kt + In [A]o t1/2 = In(2) / k Rate = k[A]? 1/[A] = kt + 1/[A]o t1/2 = 1/ (k[A]o) Rate = k [A]; = -kt + [A]o t1/2 = [A]o / (2k)
Chemistry
10th Edition
ISBN:9781305957404
Author:Steven S. Zumdahl, Susan A. Zumdahl, Donald J. DeCoste
Publisher:Steven S. Zumdahl, Susan A. Zumdahl, Donald J. DeCoste
Chapter1: Chemical Foundations
Section: Chapter Questions
Problem 1RQ: Define and explain the differences between the following terms. a. law and theory b. theory and...
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![ZOOM
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Solve:
For a completed nuclear warhead, determine the “shelf-life" at the destination in years (with
three Sig Figs) before the amount of tritium remaining is too low to successfully detonate. Please
show all your work including your calculated rate constant, however, there is no need to round
that number.
Given Information:
Starting mass:
Minimum mass:
14.0 kg
6.50 kg
Half-life:
150. months
Equations:
Zero Order
First Order
Second Order
Rate = k[A]!
In [A]; = -kt + ln [A]o
t1/2 = In(2) / k
Rate = k[A]²
1/[A]; = kt + 1/[A]o
t1/2 = 1 / (k[A]o)
Rate
= k
[A]; = -kt + [A]o
t1/2 = [A]o / (2k)](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F2bbc7530-cefc-41ee-b348-c654777587a7%2F0f44834c-ec70-4bba-8032-907ddc6756ec%2F7uj2prh_processed.png&w=3840&q=75)
Transcribed Image Text:ZOOM
+
Press Esc to exit full screen
Solve:
For a completed nuclear warhead, determine the “shelf-life" at the destination in years (with
three Sig Figs) before the amount of tritium remaining is too low to successfully detonate. Please
show all your work including your calculated rate constant, however, there is no need to round
that number.
Given Information:
Starting mass:
Minimum mass:
14.0 kg
6.50 kg
Half-life:
150. months
Equations:
Zero Order
First Order
Second Order
Rate = k[A]!
In [A]; = -kt + ln [A]o
t1/2 = In(2) / k
Rate = k[A]²
1/[A]; = kt + 1/[A]o
t1/2 = 1 / (k[A]o)
Rate
= k
[A]; = -kt + [A]o
t1/2 = [A]o / (2k)
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