16. At higher temperatures, the same reaction: 2 NO2(g) 2 NO(g) + O₂(g) follows second order kinetics. Using some of the experimental data shown, k, M-¹ S-¹ Temperature (°C) 863 780 727 11.59 2.34 0.380 Temperature (K) 1/T A. Sketch an Arrhenius plot with properly labeled axes. Ink

Chemistry by OpenStax (2015-05-04)
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Chapter12: Kinetics
Section: Chapter Questions
Problem 63E: Hydrogen iodide, HI, decomposes in the gas phase to produce hydrogen, H2, and iodine, I2. The value...
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16 please
3
2
1
0
-1
-2
0.00086
0.00088
0.0009
Arrhenius Plot
0.00092
0.00094
0.00096
0.00098
0.001
0.00102
B. Calculate the activation energy Ea for the reaction.
1) based on the slope of the line on the graph (show your work) (calculate
rise/run)
2) using 2point Arrhenius equation and experiments 1 & 2
C. What is the value of the half-life at 863°C if the initial concentration of
NO₂ is 0.0550 M?
Transcribed Image Text:3 2 1 0 -1 -2 0.00086 0.00088 0.0009 Arrhenius Plot 0.00092 0.00094 0.00096 0.00098 0.001 0.00102 B. Calculate the activation energy Ea for the reaction. 1) based on the slope of the line on the graph (show your work) (calculate rise/run) 2) using 2point Arrhenius equation and experiments 1 & 2 C. What is the value of the half-life at 863°C if the initial concentration of NO₂ is 0.0550 M?
16. At higher temperatures, the same reaction: 2 NO₂)2 NO(g) + O₂(g)
follows second order kinetics.
Using some of the experimental data shown,
k, M-¹ S-¹
Temperature
(°C)
863
780
727
11.59
2.34
0.380
Temperature
(K)
A. Sketch an Arrhenius plot with properly labeled axes.
1/T
Ink
Transcribed Image Text:16. At higher temperatures, the same reaction: 2 NO₂)2 NO(g) + O₂(g) follows second order kinetics. Using some of the experimental data shown, k, M-¹ S-¹ Temperature (°C) 863 780 727 11.59 2.34 0.380 Temperature (K) A. Sketch an Arrhenius plot with properly labeled axes. 1/T Ink
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