What is the rate of the following reaction? ON. ON NO, NO2 k = 1.25 M1s1 [3,5-dinitrobenzoate] = 1.282 M [iodoethane] = 1.293 M %3! Please report your answer to 2 decimal places. Hint: units for rate are M/s

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Chapter1: Chemical Foundations
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**Reaction Rate Calculation**

In this exercise, we are tasked with determining the rate of a given chemical reaction. Below are the details provided:

**Chemical Reaction:**

The reaction involves two reactants, 3,5-dinitrobenzoate and iodoethane, producing a substituted product. The chemical structure for the reactants and product is shown using structural formulas with arrows indicating the conversion.

**Constants and Concentrations:**

- Reaction rate constant, \( k \): 1.25 M\(^{-1}\)s\(^{-1}\)
- Concentration of 3,5-dinitrobenzoate: 1.282 M
- Concentration of iodoethane: 1.293 M

**Instructions:**

- Calculate the reaction rate and provide the answer to two decimal places.
- The units for the reaction rate are M/s (molarity per second).

To calculate the rate of the reaction, use the formula:

\[ \text{Rate} = k \cdot [\text{3,5-dinitrobenzoate}] \cdot [\text{iodoethane}] \]

Plug in the given values into the equation and calculate the rate in M/s, rounding to two decimal places.
Transcribed Image Text:**Reaction Rate Calculation** In this exercise, we are tasked with determining the rate of a given chemical reaction. Below are the details provided: **Chemical Reaction:** The reaction involves two reactants, 3,5-dinitrobenzoate and iodoethane, producing a substituted product. The chemical structure for the reactants and product is shown using structural formulas with arrows indicating the conversion. **Constants and Concentrations:** - Reaction rate constant, \( k \): 1.25 M\(^{-1}\)s\(^{-1}\) - Concentration of 3,5-dinitrobenzoate: 1.282 M - Concentration of iodoethane: 1.293 M **Instructions:** - Calculate the reaction rate and provide the answer to two decimal places. - The units for the reaction rate are M/s (molarity per second). To calculate the rate of the reaction, use the formula: \[ \text{Rate} = k \cdot [\text{3,5-dinitrobenzoate}] \cdot [\text{iodoethane}] \] Plug in the given values into the equation and calculate the rate in M/s, rounding to two decimal places.
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