The following initial rate data are for the reaction of nitrogen dioxide with fluorine: 2 NO2+ F2 → 2 NO₂ F 1 Experiment [NO2]o, M [F2]o, M Initial Rate, M. s-¹ S 3.25 0.845 3.25 1.69 6.50 0.845 6.50 1.69 1 2 3 4 -4 3.13 x 107 6.26 6.26 107 1.25 x 10-3 Rate = -4 107 -4 Complete the rate law for this reaction in the box below. Use the form k[A] [B]", where '1' is understood for m or n and concentrations taken to the zero power do not appear. Don't enter 1 for m or n.

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**Reaction of Nitrogen Dioxide with Fluorine**

The following initial rate data pertain to the reaction:

\[ 2 \text{NO}_2 + \text{F}_2 \rightarrow 2 \text{NO}_2\text{F} \]

| Experiment | [NO\(_2\)]\(_0\), M | [F\(_2\)]\(_0\), M | Initial Rate, M·s\(^{-1}\) |
|------------|----------------|----------------|------------------------|
| 1          | 3.25           | 0.845          | \(3.13 \times 10^{-4}\) |
| 2          | 3.25           | 1.69           | \(6.26 \times 10^{-4}\) |
| 3          | 6.50           | 0.845          | \(6.26 \times 10^{-4}\) |
| 4          | 6.50           | 1.69           | \(1.25 \times 10^{-3}\) |

**Instructions:**

Complete the rate law for this reaction using the following form:

\[ k[\text{A}]^m[\text{B}]^n \]

Note:
- '1' is understood for \(m\) or \(n\), and concentrations raised to the zero power do not appear.
- Do not enter '1' for \(m\) or \(n\).

**Rate =** [Enter the rate law here]
Transcribed Image Text:**Reaction of Nitrogen Dioxide with Fluorine** The following initial rate data pertain to the reaction: \[ 2 \text{NO}_2 + \text{F}_2 \rightarrow 2 \text{NO}_2\text{F} \] | Experiment | [NO\(_2\)]\(_0\), M | [F\(_2\)]\(_0\), M | Initial Rate, M·s\(^{-1}\) | |------------|----------------|----------------|------------------------| | 1 | 3.25 | 0.845 | \(3.13 \times 10^{-4}\) | | 2 | 3.25 | 1.69 | \(6.26 \times 10^{-4}\) | | 3 | 6.50 | 0.845 | \(6.26 \times 10^{-4}\) | | 4 | 6.50 | 1.69 | \(1.25 \times 10^{-3}\) | **Instructions:** Complete the rate law for this reaction using the following form: \[ k[\text{A}]^m[\text{B}]^n \] Note: - '1' is understood for \(m\) or \(n\), and concentrations raised to the zero power do not appear. - Do not enter '1' for \(m\) or \(n\). **Rate =** [Enter the rate law here]
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