A+B AB Trial [A] (M) [B] (M) Rate (M/s) 0.200 0.200 2.00 x 102 0.400 0.200 8.00 x 102 3 0.200 0.400 4.00 x 102 What is the rate constant for the reaction above?

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### Reaction Rate Data Analysis

**Reaction:**  
\[ A + B \rightarrow AB \]

**Data Table:**

| Trial | [A] (M) | [B] (M) | Rate (M/s)   |
|-------|---------|---------|--------------|
| 1     | 0.200   | 0.200   | 2.00 x 10⁻²  |
| 2     | 0.400   | 0.200   | 8.00 x 10⁻²  |
| 3     | 0.200   | 0.400   | 4.00 x 10⁻²  |

**Question:**  
What is the rate constant for the reaction above?

**Explanation:**

This table shows data from three different trials of a chemical reaction where reactants A and B form product AB. The concentrations of A and B are given in molarity (M), and the reaction rate is provided in M/s. The goal is to determine the rate constant of this reaction. 

Note the relationship between the changes in concentration of reactants and the resulting rate, which can be used to derive the rate law and calculate the rate constant.
Transcribed Image Text:### Reaction Rate Data Analysis **Reaction:** \[ A + B \rightarrow AB \] **Data Table:** | Trial | [A] (M) | [B] (M) | Rate (M/s) | |-------|---------|---------|--------------| | 1 | 0.200 | 0.200 | 2.00 x 10⁻² | | 2 | 0.400 | 0.200 | 8.00 x 10⁻² | | 3 | 0.200 | 0.400 | 4.00 x 10⁻² | **Question:** What is the rate constant for the reaction above? **Explanation:** This table shows data from three different trials of a chemical reaction where reactants A and B form product AB. The concentrations of A and B are given in molarity (M), and the reaction rate is provided in M/s. The goal is to determine the rate constant of this reaction. Note the relationship between the changes in concentration of reactants and the resulting rate, which can be used to derive the rate law and calculate the rate constant.
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