10. Determine the rate law and the value of k for the following reaction using the data provided. 2 NO(g) + O2(g) → 2 NO2(g) [NO] (M) [02] (M) Initial Rate (Ms ¹) A. Rate 57 M¹s¹ [NO][O₂] B. Rate = 3.8 M-1/2 5-1[NO][O₂] 1/2 C. Rate = 3.1 × 105 M¯³s¯¹[NO]²[O₂]² D. Rate = 1.7 × 10³ M²s¯¹[NO]²[02] E. Rate = 9.4 × 10³ M²s¯¹[NO][O₂]² -2 0.030 0.0055 8.55 x 10-3 0.030 0.0110 1.71 × 10°² -2 0.060 0.0055 3.42 × 10-2

Chemistry: An Atoms First Approach
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Author:Steven S. Zumdahl, Susan A. Zumdahl
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Chapter11: Chemical Kinetics
Section: Chapter Questions
Problem 25E: At 40C, H2O2 (aq) will decompose according to the following reaction: 2H2O2(aq)2H2O(l)+O2(g) The...
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10. Determine the rate law and the value of k for the following reaction using the data provided.
2 NO(g) + O2(g) → 2 NO2(g)
[NO] (M) [02] (M) Initial Rate (Ms ¹)
A. Rate 57 M¹s¹ [NO][O₂]
B. Rate = 3.8 M-1/2 5-1[NO][O₂] 1/2
C. Rate = 3.1 × 105 M¯³s¯¹[NO]²[O₂]²
D. Rate = 1.7 × 10³ M²s¯¹[NO]²[02]
E. Rate = 9.4 × 10³ M²s¯¹[NO][O₂]²
-2
0.030
0.0055
8.55 x 10-3
0.030
0.0110
1.71 × 10°²
-2
0.060
0.0055
3.42 × 10-2
Transcribed Image Text:10. Determine the rate law and the value of k for the following reaction using the data provided. 2 NO(g) + O2(g) → 2 NO2(g) [NO] (M) [02] (M) Initial Rate (Ms ¹) A. Rate 57 M¹s¹ [NO][O₂] B. Rate = 3.8 M-1/2 5-1[NO][O₂] 1/2 C. Rate = 3.1 × 105 M¯³s¯¹[NO]²[O₂]² D. Rate = 1.7 × 10³ M²s¯¹[NO]²[02] E. Rate = 9.4 × 10³ M²s¯¹[NO][O₂]² -2 0.030 0.0055 8.55 x 10-3 0.030 0.0110 1.71 × 10°² -2 0.060 0.0055 3.42 × 10-2
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