= The decomposition of hypothetical molecule XY shown below has an activation energy Ea kj 100.- and a pre-exponential factor A = 3.12 x 1010. Calculate the rate constant for L mol mol's this reaction at 300K and 1000K. 2XY (g) → X₂ + Y₂

Chemistry by OpenStax (2015-05-04)
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Author:Klaus Theopold, Richard H Langley, Paul Flowers, William R. Robinson, Mark Blaser
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Chapter12: Kinetics
Section: Chapter Questions
Problem 31E: The following data have been determined for the reaction: I+OCIIO+CI 1 2 3 [I] 0.10 0.20 0.30 [OCI]...
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4. The decomposition of hypothetical molecule XY shown below has an activation energy Ea
kJ
L
100. and a pre-exponential factor A = 3.12 x 10¹0. Calculate the rate constant for
mol's
mol
this reaction at 300K and 1000K.
2XY (g) → X₂ + Y₂
Transcribed Image Text:= 4. The decomposition of hypothetical molecule XY shown below has an activation energy Ea kJ L 100. and a pre-exponential factor A = 3.12 x 10¹0. Calculate the rate constant for mol's mol this reaction at 300K and 1000K. 2XY (g) → X₂ + Y₂
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