Derive the rate equation.

Chemistry by OpenStax (2015-05-04)
1st Edition
ISBN:9781938168390
Author:Klaus Theopold, Richard H Langley, Paul Flowers, William R. Robinson, Mark Blaser
Publisher:Klaus Theopold, Richard H Langley, Paul Flowers, William R. Robinson, Mark Blaser
Chapter13: Fundamental Equilibrium Concepts
Section: Chapter Questions
Problem 62E: Complete the changes in concentrations (or pressure, if requested) for each of the following...
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Derive the rate equation.
O
Rate = k[CO] ² [NO₂]²
O Rate = k
O Rate = k[CO] [NO₂]
O
Rate = k[CO][NO₂]²
Transcribed Image Text:Derive the rate equation. O Rate = k[CO] ² [NO₂]² O Rate = k O Rate = k[CO] [NO₂] O Rate = k[CO][NO₂]²
Data in the table were collected at 540 K for the following reaction:
CO(g) + NO₂(g) → CO2(g) + NO(g)
Initial concentration
(mol/L)
[CO]
5.1 x 10-4
5.1 × 10-4
5.1 x 10-4
1.0 x 10-3
1.5 × 10-³
[NO₂]
0.35 × 10-4
0.70 × 10-4
0.18 × 10-
0.35 × 10-4
0.35 × 10-4
Initial rate
(mol/L. h)
5.0 × 10-8
1.0 × 10-7
2.6 × 10-8
9.8 x 107
1.5 × 10-7
Transcribed Image Text:Data in the table were collected at 540 K for the following reaction: CO(g) + NO₂(g) → CO2(g) + NO(g) Initial concentration (mol/L) [CO] 5.1 x 10-4 5.1 × 10-4 5.1 x 10-4 1.0 x 10-3 1.5 × 10-³ [NO₂] 0.35 × 10-4 0.70 × 10-4 0.18 × 10- 0.35 × 10-4 0.35 × 10-4 Initial rate (mol/L. h) 5.0 × 10-8 1.0 × 10-7 2.6 × 10-8 9.8 x 107 1.5 × 10-7
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