3. In the stratosphere, the conversion of ozone to molecular oxygen is catalyzed by atomic chlorine as follows, CIO→CIO+O₂ This catalyzed process has an effective rate-constant value, What would be the rate constant value of the non-catalyzed molecular oxygen production processes at 20 km where T-220 K, knowing that the catalyzed process is approximately 100 times faster than the non- [cat catalyzed at the same altitude? A) 1.30 x 10-7 M-1 s-1 1.04 x 10-7 M' s 5.21 x 10-7 M-1 s- 2.61 x 10-7 M-1 s-1 1.74 x 10-7 M-1 s-1

Chemistry: An Atoms First Approach
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Chapter11: Chemical Kinetics
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Problem 75E: One mechanism for the destruction of ozone in the upper atmosphere is a. Which species is a...
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Chemistry
3. In the stratosphere, the conversion of ozone to molecular oxygen is
catalyzed by atomic chlorine as follows,
CIO→CIO+O₂
This catalyzed process has an effective rate-constant value,
What would be the rate constant value of the non-catalyzed molecular
oxygen production processes at 20 km where T-220 K, knowing that
the catalyzed process is approximately 100 times faster than the non-
[cat
catalyzed at the same altitude?
A) 1.30 x 10-7 M-1 s-1
1.04 x 10-7 M' s
5.21 x 10-7 M-1 s-
2.61 x 10-7 M-1 s-1
1.74 x 10-7 M-1 s-1
Transcribed Image Text:3. In the stratosphere, the conversion of ozone to molecular oxygen is catalyzed by atomic chlorine as follows, CIO→CIO+O₂ This catalyzed process has an effective rate-constant value, What would be the rate constant value of the non-catalyzed molecular oxygen production processes at 20 km where T-220 K, knowing that the catalyzed process is approximately 100 times faster than the non- [cat catalyzed at the same altitude? A) 1.30 x 10-7 M-1 s-1 1.04 x 10-7 M' s 5.21 x 10-7 M-1 s- 2.61 x 10-7 M-1 s-1 1.74 x 10-7 M-1 s-1
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