Determine the rate law for this reaction. Do not include states of matter or spaces in your answer. Rate law =    - Calculate the value of the rate constant at 225°C.   - Calculate the rate of appearance of CO2 when [NO2] = [CO] =

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- Determine the rate law for this reaction. Do not include states of matter or spaces in your answer.

Rate law = 
 
- Calculate the value of the rate constant at 225°C.
 
- Calculate the rate of appearance of CO2 when [NO2] = [CO] = 0.530 M.
The rate of the reaction

\[ \text{NO}_2 (g) + \text{CO} (g) \rightarrow \text{NO} (g) + \text{CO}_2 (g) \]

was determined in three experiments at 225°C. The results are given in the following table:

| Experiment | [NO₂]₀ (M) | [CO]₀ (M) | Initial Rate - Δ[NO₂]/Δt (M/s) |
|------------|------------|-----------|----------------------------------|
| 1          | 0.263      | 0.826     | 1.44×10⁻⁵                       |
| 2          | 0.263      | 0.413     | 1.44×10⁻⁵                       |
| 3          | 0.526      | 0.413     | 5.76×10⁻⁵                       |
Transcribed Image Text:The rate of the reaction \[ \text{NO}_2 (g) + \text{CO} (g) \rightarrow \text{NO} (g) + \text{CO}_2 (g) \] was determined in three experiments at 225°C. The results are given in the following table: | Experiment | [NO₂]₀ (M) | [CO]₀ (M) | Initial Rate - Δ[NO₂]/Δt (M/s) | |------------|------------|-----------|----------------------------------| | 1 | 0.263 | 0.826 | 1.44×10⁻⁵ | | 2 | 0.263 | 0.413 | 1.44×10⁻⁵ | | 3 | 0.526 | 0.413 | 5.76×10⁻⁵ |
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