Determine the rate law and the rate constant for this reaction. 13.125. The table contains reaction rate data for the reaction 2 NO(g) + Cl;(g)→ 2 NOCI(g) Initial Rate Experiment [NO], (M) [CI]o (M) (M/s) 1 0.20 0.10 0.63 0.20 0.30 5.70 3. 0.80 0.10 2.58 4 0.40 0.20 Predict the initial rate of reaction in experiment 4. 13.126. An important reaction in the formation of photochemical is the reaction between ozone and NO: smog NO(g) + O;(g) →NO;(g) + O,(g)

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Determine the rate law and the rate constant for this
reaction.
13.125. The table contains reaction rate data for the reaction
2 NO(g) + Cl,(g)→ 2 NOCI(g)
Initial Rate
Experiment
[NO], (M)
[Cl_]o (M)
(M/s)
1
0.20
0.10
0.63
0.20
О.30
5.70
0.80
0.10
2.58
0.40
0.20
Predict the initial rate of reaction in experiment 4.
13.126. An important reaction in the formation of photochemical
smog is the reaction between ozone and NO:
NO(g) + O3(g) → NO;(g) + O,(g)
2.
2.
3.
Transcribed Image Text:Determine the rate law and the rate constant for this reaction. 13.125. The table contains reaction rate data for the reaction 2 NO(g) + Cl,(g)→ 2 NOCI(g) Initial Rate Experiment [NO], (M) [Cl_]o (M) (M/s) 1 0.20 0.10 0.63 0.20 О.30 5.70 0.80 0.10 2.58 0.40 0.20 Predict the initial rate of reaction in experiment 4. 13.126. An important reaction in the formation of photochemical smog is the reaction between ozone and NO: NO(g) + O3(g) → NO;(g) + O,(g) 2. 2. 3.
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