The following initial rate data are for the reaction of UO₂+ with hydrogen ion in aqueous solution: 2UO₂+ + 4H+ → U4++ UO₂2+ + 2H₂O Experiment [UO₂+]o, M [H+]o, M Initial Rate, M.s¯¹ 0.00323 0.496 0.00646 0.496 0.00323 0.992 0.00646 0.992 1 2 3 4 Complete the rate law for this reaction in the box below. Use the form k[A] [B]", where '1' is understood for Rate = 0.000854 0.00342 m or n and concentrations taken to the zero power do not appear. Don't enter 1 for m or n. k = M-² 0.00171 0.00683 S

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### Reaction Rate Data Analysis

The following initial rate data are for the reaction of UO₂⁺ with hydrogen ion in aqueous solution:

\[ 2UO_2^+ + 4H^+ \rightarrow U^{4+} + UO_2^{2+} + 2H_2O \]

#### Experimental Data

| Experiment | [UO₂⁺]₀, M | [H⁺]₀, M | Initial Rate, M · s⁻¹ |
|------------|------------|----------|-----------------------|
| 1          | 0.00323    | 0.496    | 0.000854              |
| 2          | 0.00646    | 0.496    | 0.00342               |
| 3          | 0.00323    | 0.992    | 0.00171               |
| 4          | 0.00646    | 0.992    | 0.00683               |

#### Rate Law Determination

Complete the rate law for this reaction in the box below.

Use the form:
\[ k[A]^m[B]^n \]
where '1' is understood for \( m \) or \( n \) and concentrations taken to the zero power do not appear. Do not enter 1 for \( m \) or \( n \).

Rate = \_\_\_\_  
\( k \) = \_\_\_\_ \( \text{M}^{-2} \cdot \text{s}^{-1} \)
Transcribed Image Text:### Reaction Rate Data Analysis The following initial rate data are for the reaction of UO₂⁺ with hydrogen ion in aqueous solution: \[ 2UO_2^+ + 4H^+ \rightarrow U^{4+} + UO_2^{2+} + 2H_2O \] #### Experimental Data | Experiment | [UO₂⁺]₀, M | [H⁺]₀, M | Initial Rate, M · s⁻¹ | |------------|------------|----------|-----------------------| | 1 | 0.00323 | 0.496 | 0.000854 | | 2 | 0.00646 | 0.496 | 0.00342 | | 3 | 0.00323 | 0.992 | 0.00171 | | 4 | 0.00646 | 0.992 | 0.00683 | #### Rate Law Determination Complete the rate law for this reaction in the box below. Use the form: \[ k[A]^m[B]^n \] where '1' is understood for \( m \) or \( n \) and concentrations taken to the zero power do not appear. Do not enter 1 for \( m \) or \( n \). Rate = \_\_\_\_ \( k \) = \_\_\_\_ \( \text{M}^{-2} \cdot \text{s}^{-1} \)
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