Time (minutes) Concentration of A (moles/L) Concentration of B (moles/L) 0 1.000 0.000 10 0.800 0.400 20 0.667 0.677 30 0.571 0.858 40 0.500 1.000 50 0.444 1.112 1. Make a graph of the concentrations of A and B versus time. Estimate the rate of disappearance of A and the rate of formation of B at t=25 min and at t = 40 min. Compare the rates of disappearance of A and formation of B. What would you expect the rate of formation of C to be at t = 25 min and t = 40 min? 2. Determine graphically whether the reaction in #1 above is a first order or a second order reaction. Calculate the rate constant for the reaction.

Chemistry
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Author:Steven S. Zumdahl, Susan A. Zumdahl, Donald J. DeCoste
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Chapter1: Chemical Foundations
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Problem 1RQ: Define and explain the differences between the following terms. a. law and theory b. theory and...
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Time
(minutes)
Concentration of A
(moles/L)
Concentration of B
(moles/L)
0
1.000
0.000
10
0.800
0.400
20
0.667
0.677
30
0.571
0.858
40
0.500
1.000
50
0.444
1.112
1. Make a graph of the concentrations of A and B versus time. Estimate the rate of disappearance of A and the rate of formation
of B at t=25 min and at t = 40 min. Compare the rates of disappearance of A and formation of B. What would you expect the
rate of formation of C to be at t = 25 min and t = 40 min?
2. Determine graphically whether the reaction in #1 above is a first order or a second order reaction. Calculate the rate constant
for the reaction.
Transcribed Image Text:Time (minutes) Concentration of A (moles/L) Concentration of B (moles/L) 0 1.000 0.000 10 0.800 0.400 20 0.667 0.677 30 0.571 0.858 40 0.500 1.000 50 0.444 1.112 1. Make a graph of the concentrations of A and B versus time. Estimate the rate of disappearance of A and the rate of formation of B at t=25 min and at t = 40 min. Compare the rates of disappearance of A and formation of B. What would you expect the rate of formation of C to be at t = 25 min and t = 40 min? 2. Determine graphically whether the reaction in #1 above is a first order or a second order reaction. Calculate the rate constant for the reaction.
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