The first-order reaction: SO2CI2 → SO2 + Cl2 has a rate constant equal to 2.20 x 10s1 at 593 K. What percentage of the initial amount of SO,Cl2 will remain after 22.3 hours? 92.8 % O 85.4 % O 1.00 % O 17.1 % O 14.7 %

Chemistry
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ISBN:9781305957404
Author:Steven S. Zumdahl, Susan A. Zumdahl, Donald J. DeCoste
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Chapter1: Chemical Foundations
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**The First-Order Reaction Analysis**

**Reaction Details:**

- **Chemical Reaction:** \[\text{SO}_2\text{Cl}_2 \rightarrow \text{SO}_2 + \text{Cl}_2\]
- **Rate Constant:** \(2.20 \times 10^{-5} \, \text{s}^{-1}\)
- **Temperature:** \(593 \, \text{K}\)

**Problem Statement:**

What percentage of the initial amount of \(\text{SO}_2\text{Cl}_2\) will remain after 22.3 hours?

**Options:**

- \(92.8\%\)
- \(85.4\%\)
- \(1.00\%\)
- \(17.1\%\)
- \(14.7\%\)

**Explanation:**

Given a first-order reaction, the percentage remaining can be determined using the formula for first-order kinetics. The options provide possible calculated results for the remaining percentage of \(\text{SO}_2\text{Cl}_2\) after the given time period.
Transcribed Image Text:**The First-Order Reaction Analysis** **Reaction Details:** - **Chemical Reaction:** \[\text{SO}_2\text{Cl}_2 \rightarrow \text{SO}_2 + \text{Cl}_2\] - **Rate Constant:** \(2.20 \times 10^{-5} \, \text{s}^{-1}\) - **Temperature:** \(593 \, \text{K}\) **Problem Statement:** What percentage of the initial amount of \(\text{SO}_2\text{Cl}_2\) will remain after 22.3 hours? **Options:** - \(92.8\%\) - \(85.4\%\) - \(1.00\%\) - \(17.1\%\) - \(14.7\%\) **Explanation:** Given a first-order reaction, the percentage remaining can be determined using the formula for first-order kinetics. The options provide possible calculated results for the remaining percentage of \(\text{SO}_2\text{Cl}_2\) after the given time period.
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