y mayret vecompomacove YO 3Ize/orientation lenerau 2. A student studied the clock reaction described below and observed the following data: S:O + 31 → 2 SO, + Initial Concentrations (M) Reaction Time Relative Rate [S:O,] [1] seconds (1000/t) Reaction #1 0.030 0.060 150 Reaction #2 Reaction #3 0.065 0.120 19 M,V, M2VZ After mixing the following reagents for reaction #2, the reaction time was recorded to be 76 seconds. Reaction Mixture #2: 15 mL 0.25 M KI 25 mL 0.17 M NazS:Os 25 mL 0.0010 M Na,S2O a. Find the concentration of the following reagents in the mixture. (MV = M;V1) [I] = [S:O] = b. What is the relative rate of reaction (1000/t)? continued on the back c. Fill in the table with the missing data. d. Set up the general relative rate law for this reaction.
y mayret vecompomacove YO 3Ize/orientation lenerau 2. A student studied the clock reaction described below and observed the following data: S:O + 31 → 2 SO, + Initial Concentrations (M) Reaction Time Relative Rate [S:O,] [1] seconds (1000/t) Reaction #1 0.030 0.060 150 Reaction #2 Reaction #3 0.065 0.120 19 M,V, M2VZ After mixing the following reagents for reaction #2, the reaction time was recorded to be 76 seconds. Reaction Mixture #2: 15 mL 0.25 M KI 25 mL 0.17 M NazS:Os 25 mL 0.0010 M Na,S2O a. Find the concentration of the following reagents in the mixture. (MV = M;V1) [I] = [S:O] = b. What is the relative rate of reaction (1000/t)? continued on the back c. Fill in the table with the missing data. d. Set up the general relative rate law for this reaction.
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...
Related questions
Question
![ALL MOno maynetbecompemaove FO 31ze/orientatian lenereu
2. A student studied the clock reaction described below and observed the following data:
S20s + 31 →
2 So, + l
Initial Concentrations (M)
Reaction Time
Relative Rate
[S.O]
[I]
seconds
(1000/t)
Reaction #1
0.030
0.060
150
Reaction #2
Reaction #3
0.065
0.120
19
M,V, =M2VZ
After mixing the following reagents for reaction #2, the reaction time was recorded to
be 76 seconds.
Reaction Mixture #2: 15 mL 0.25 M KI
25 mL 0.17 M NazS2Os
25 mL 0.0010 M NazS2O
a. Find the concentration of the following reagents in the mixture. (MVI = MV2)
[I] =
[S:O] = 1
b. What is the relative rate of reaction (1000/t)?
continued on the back
C.
Fill in the table with the missing data.
d. Set up the general relative rate law for this reaction.](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F4502b244-c869-4455-86b7-4959f1f25f8f%2F56e7863f-7447-4bc7-b607-cdcda00f456d%2Fww3lkcl_processed.jpeg&w=3840&q=75)
Transcribed Image Text:ALL MOno maynetbecompemaove FO 31ze/orientatian lenereu
2. A student studied the clock reaction described below and observed the following data:
S20s + 31 →
2 So, + l
Initial Concentrations (M)
Reaction Time
Relative Rate
[S.O]
[I]
seconds
(1000/t)
Reaction #1
0.030
0.060
150
Reaction #2
Reaction #3
0.065
0.120
19
M,V, =M2VZ
After mixing the following reagents for reaction #2, the reaction time was recorded to
be 76 seconds.
Reaction Mixture #2: 15 mL 0.25 M KI
25 mL 0.17 M NazS2Os
25 mL 0.0010 M NazS2O
a. Find the concentration of the following reagents in the mixture. (MVI = MV2)
[I] =
[S:O] = 1
b. What is the relative rate of reaction (1000/t)?
continued on the back
C.
Fill in the table with the missing data.
d. Set up the general relative rate law for this reaction.
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