Given the data below for the decomposition of peroxyacetyl nitrate, an air pollutant produced in photochemical smog: T, K k, s-1 273.15 5.6 x 10-6 283.15 3.2 x 10-5 293.15 1.6 x 10-4 303.15 7.6 x 10-4 Using linear regression, calculate the: A. Slope [Select] B. y-intercept [Select] C. Collision frequency factor [Select] < > >

Fundamentals Of Analytical Chemistry
9th Edition
ISBN:9781285640686
Author:Skoog
Publisher:Skoog
Chapter8: Sampling, Standardization, And Calibration
Section: Chapter Questions
Problem 8.13QAP
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Using linear regression, calculate the:
A. Slope [Select]
B. y-intercept [Select]
C. Collision frequency factor [Select]
D. Activation energy (in J/mol) [Select]
>
Transcribed Image Text:Using linear regression, calculate the: A. Slope [Select] B. y-intercept [Select] C. Collision frequency factor [Select] D. Activation energy (in J/mol) [Select] >
Given the data below for the decomposition of peroxyacetyl nitrate, an air
pollutant produced in photochemical smog:
T, K
k, s-1
273.15 5.6 x 10-6
283.15
3.2 x 10-5
293.15
1.6 x 10-4
303.15 7.6 x 10-4
Using linear regression, calculate the:
A. Slope [Select]
B. y-intercept [Select]
C. Collision frequency factor [Select]
<
>
>
Transcribed Image Text:Given the data below for the decomposition of peroxyacetyl nitrate, an air pollutant produced in photochemical smog: T, K k, s-1 273.15 5.6 x 10-6 283.15 3.2 x 10-5 293.15 1.6 x 10-4 303.15 7.6 x 10-4 Using linear regression, calculate the: A. Slope [Select] B. y-intercept [Select] C. Collision frequency factor [Select] < > >
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