The kinetics of the reaction between R and Z ions in an aqueous solution was investigated through multiple se ups of varying concentrations and at 25 . The initial rate of formation of Q was determined through the formation of a brick-red solution. Set up [R] [Z] Initial Rate, M/s 1 0.135 0.165 3.54x104 0.27 0.33 1.41x103 0.135 0.66 1.42x103 0.54 0.33 2.83x103 0.135 0.33 7.08x104 a. Determine the rate order with respect to R ion. Include the equation of the best fit line (with R2). b. Determine the rate order with respect to Z ion. Include the equation of the best fit line (with R2). Determine the rate law of the reaction.
The kinetics of the reaction between R and Z ions in an aqueous solution was investigated through multiple se ups of varying concentrations and at 25 . The initial rate of formation of Q was determined through the formation of a brick-red solution. Set up [R] [Z] Initial Rate, M/s 1 0.135 0.165 3.54x104 0.27 0.33 1.41x103 0.135 0.66 1.42x103 0.54 0.33 2.83x103 0.135 0.33 7.08x104 a. Determine the rate order with respect to R ion. Include the equation of the best fit line (with R2). b. Determine the rate order with respect to Z ion. Include the equation of the best fit line (with R2). Determine the rate law of the reaction.
Chemistry
10th Edition
ISBN:9781305957404
Author:Steven S. Zumdahl, Susan A. Zumdahl, Donald J. DeCoste
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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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![The kinetics of the reaction between R and Z ions in an aqueous solution was investigated through multiple set
ups of varying concentrations and at 25 . The initial rate of formation of Q was determined through the
formation of a brick-red solution.
Set up
[R] [团
Initial Rate, M/s
1
0.135 0.165
3.54x104
0.27 0.33
1.41x103
0.135 0.66
1.42x103
0.54 0.33
2.83x103
5
0.135 0.33
7.08x104
Determine the rate order with respect to R ion. Include the equation of the best fit line (with R2).
а.
b.
Determine the rate order with respect to Z ion. Include the equation of the best fit line (with R?).
C.
Determine the rate law of the reaction.
d.
What is the rate constant for set up 1? Indicate the appropriate units.
The second set up was also conducted under different temperatures. If the rate constants were 2.842x10* and
1.278x10" units at 4°C and 35 °C, respectively, then what are the activation energy (kJ/mol) of the reaction and frequency
factor (A)? Include the equation of the best fit line of the Arrhenius equation (with R2). Note: Use the calculated rate
e.
constant in set up 2 [Use 4 SF of the rate constants in plotting, R gas constant = 8.314 J/mol-K).](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F36d937bb-7587-42d7-86d1-d7edee2e620e%2F7c64f5b1-a935-45ef-89a1-fc9a6e125240%2F13psx56_processed.jpeg&w=3840&q=75)
Transcribed Image Text:The kinetics of the reaction between R and Z ions in an aqueous solution was investigated through multiple set
ups of varying concentrations and at 25 . The initial rate of formation of Q was determined through the
formation of a brick-red solution.
Set up
[R] [团
Initial Rate, M/s
1
0.135 0.165
3.54x104
0.27 0.33
1.41x103
0.135 0.66
1.42x103
0.54 0.33
2.83x103
5
0.135 0.33
7.08x104
Determine the rate order with respect to R ion. Include the equation of the best fit line (with R2).
а.
b.
Determine the rate order with respect to Z ion. Include the equation of the best fit line (with R?).
C.
Determine the rate law of the reaction.
d.
What is the rate constant for set up 1? Indicate the appropriate units.
The second set up was also conducted under different temperatures. If the rate constants were 2.842x10* and
1.278x10" units at 4°C and 35 °C, respectively, then what are the activation energy (kJ/mol) of the reaction and frequency
factor (A)? Include the equation of the best fit line of the Arrhenius equation (with R2). Note: Use the calculated rate
e.
constant in set up 2 [Use 4 SF of the rate constants in plotting, R gas constant = 8.314 J/mol-K).
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