Butadiene reacts to form its dimer according to the equation 2C4H6(8) C3H₁2(8) → The following data were collected for this reaction at a given temperature: [C₂H₂] (mol/L) 0.01000 0.00625 0.00476 0.00370 0.00313 0.00270 0.00241 0.00208 Time (±1 s) 0 1000 1800 2800 3600 4400 5200 6200 a. Is this reaction first order or second order? b. What is the value of the rate constant for the reaction? c. What is the half-life for the reaction under the conditions of this experiment?

Chemistry: The Molecular Science
5th Edition
ISBN:9781285199047
Author:John W. Moore, Conrad L. Stanitski
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Chapter11: Chemical Kinetics: Rates Of Reactions
Section11.7: Reaction Mechanisms
Problem 11.12E
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Butadiene reacts to form its dimer according to the equation
2C₂H6(8) C3H₁2(8)
→
The following data were collected for this reaction at a given temperature:
[CH] (mol/L)
Time (s)
0
120
300
600
1200
1800
2400
3000
3600
0.01000
0.00625
0.00476
0.00370
0.00313
0.00270
0.00241
0.00208
a. Is this reaction first order or second order?
b. What is the value of the rate constant for the reaction?
c. What is the half-life for the reaction under the conditions of this experiment?
Assuming that
The decomposition of hydrogen peroxide was studied, and the
following data were obtained at a particular temperature:
[H₂O₂] (mol/L)
Time (±1 s)
0
1000
1800
2800
3600
4400
5200
6200
1.00
0.91
0.78
0.59
0.37
0.22
0.13
0.082
0.050
differential rate law or just
Rate = K [H₂O₂]* "rate law". x is order of
reaction with respect to H2O2
determine the rate law, the integrated rate law, and the value of
the rate constant. Calculate [H₂O₂] at 4000. s after the start of
the reaction.
Transcribed Image Text:Butadiene reacts to form its dimer according to the equation 2C₂H6(8) C3H₁2(8) → The following data were collected for this reaction at a given temperature: [CH] (mol/L) Time (s) 0 120 300 600 1200 1800 2400 3000 3600 0.01000 0.00625 0.00476 0.00370 0.00313 0.00270 0.00241 0.00208 a. Is this reaction first order or second order? b. What is the value of the rate constant for the reaction? c. What is the half-life for the reaction under the conditions of this experiment? Assuming that The decomposition of hydrogen peroxide was studied, and the following data were obtained at a particular temperature: [H₂O₂] (mol/L) Time (±1 s) 0 1000 1800 2800 3600 4400 5200 6200 1.00 0.91 0.78 0.59 0.37 0.22 0.13 0.082 0.050 differential rate law or just Rate = K [H₂O₂]* "rate law". x is order of reaction with respect to H2O2 determine the rate law, the integrated rate law, and the value of the rate constant. Calculate [H₂O₂] at 4000. s after the start of the reaction.
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