PERTINENT CALCULATIONS Remember: rate = k[C25H30CIN3]"[OH¯]° where n = 0 since excess OH was used. %3D 1. Refer to your graphs and complete table below. Linear correlation (r – value) Graph Kinetic Run I Kinetic Run II Average r - value absorbance vs time In (absorbance) vs time (absorbance) vs time 2. Based on the average linear correlation (r2 -value) the reaction order, m, with respect to crystal violet, CV, is Explain 3. Write the rate law 4 The slope, and therefore pseudo" rate constant, ki', is at T1. OC and ko' is at T2
PERTINENT CALCULATIONS Remember: rate = k[C25H30CIN3]"[OH¯]° where n = 0 since excess OH was used. %3D 1. Refer to your graphs and complete table below. Linear correlation (r – value) Graph Kinetic Run I Kinetic Run II Average r - value absorbance vs time In (absorbance) vs time (absorbance) vs time 2. Based on the average linear correlation (r2 -value) the reaction order, m, with respect to crystal violet, CV, is Explain 3. Write the rate law 4 The slope, and therefore pseudo" rate constant, ki', is at T1. OC and ko' is at T2
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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![PERTINENT CALCULATIONS
Remember:
rate = k[C25H30CIN3]"[OH_]º where n = 0 since excess OH was used.
%3D
1. Refer to your graphs and complete table below
Linear correlation (r – value)
Graph
Kinetic Run I
Kinetic Run II Average r- value
absorbance vs time
In (absorbance) vs time
/(absorbance) vs time
2. Based on the average linear correlation (r2 -value) the reaction order, m, with respect to crystal
violet, CV, is
Explain
3. Write the rate law:
4 The slope, and therefore "pseudo" rate constant, ki', is
at T1.
°C and ko' is
at T2](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F889e0bc1-2d30-44db-bbe7-cf6686980e24%2F37deaece-cf0a-4a38-beaf-183c1c82ea8d%2F68nxjrm_processed.jpeg&w=3840&q=75)
Transcribed Image Text:PERTINENT CALCULATIONS
Remember:
rate = k[C25H30CIN3]"[OH_]º where n = 0 since excess OH was used.
%3D
1. Refer to your graphs and complete table below
Linear correlation (r – value)
Graph
Kinetic Run I
Kinetic Run II Average r- value
absorbance vs time
In (absorbance) vs time
/(absorbance) vs time
2. Based on the average linear correlation (r2 -value) the reaction order, m, with respect to crystal
violet, CV, is
Explain
3. Write the rate law:
4 The slope, and therefore "pseudo" rate constant, ki', is
at T1.
°C and ko' is
at T2
![PERTINENT CALCULATIONS
Remember:
rate = k[C25H30CIN3]"[OH_]" where n =0 since excess OH was used.
n3=
1. Refer to your graphs and complete table below
Linear correlation (r- value)
Graph
Kinetic Run I
Kinetic Run II Average r- value
absorbance vs time
0.9972
0.9955
0.9964
In (absorbance) vs time
0.9978
0.9994
0.9986
2/(absorbance) vs time
0.9805
0.9879
0.9952
2. Based on the average linear correlation (r2 -value) the reaction order, m, with respect to crystal
violet, CV, is
Explain.
3. Write the rate law.
4.
The slope, and therefore pseudo" rate constant, kr', is
at T1.
CC, and ko' is
at T2](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F889e0bc1-2d30-44db-bbe7-cf6686980e24%2F37deaece-cf0a-4a38-beaf-183c1c82ea8d%2Fqxv0w0j_processed.jpeg&w=3840&q=75)
Transcribed Image Text:PERTINENT CALCULATIONS
Remember:
rate = k[C25H30CIN3]"[OH_]" where n =0 since excess OH was used.
n3=
1. Refer to your graphs and complete table below
Linear correlation (r- value)
Graph
Kinetic Run I
Kinetic Run II Average r- value
absorbance vs time
0.9972
0.9955
0.9964
In (absorbance) vs time
0.9978
0.9994
0.9986
2/(absorbance) vs time
0.9805
0.9879
0.9952
2. Based on the average linear correlation (r2 -value) the reaction order, m, with respect to crystal
violet, CV, is
Explain.
3. Write the rate law.
4.
The slope, and therefore pseudo" rate constant, kr', is
at T1.
CC, and ko' is
at T2
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