The reaction: SO2Cl2(g) → SO2(g)+Cl2(g) is first order and has a rate constant of 2.24 × 10-³ s-l at 320°C. Calculate the half-life of the reaction. What fraction of a sample of SO2CI2 (g) remains...


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The reaction:<br>SO2Cl2(g) → SO2(g)+Cl2(g)<br>is first order and has a rate constant of 2.24 × 10-³ s-l at 320°C. Calculate the half-life of the<br>reaction. What fraction of a sample of SO2CI2 (g) remains after being heated for 5 hours at 320°C?<br>How long will a sample of SO2C12(g) need to be maintained at 320°C to decompose 92% of the<br>initial amount present?<br>

Extracted text: The reaction: SO2Cl2(g) → SO2(g)+Cl2(g) is first order and has a rate constant of 2.24 × 10-³ s-l at 320°C. Calculate the half-life of the reaction. What fraction of a sample of SO2CI2 (g) remains after being heated for 5 hours at 320°C? How long will a sample of SO2C12(g) need to be maintained at 320°C to decompose 92% of the initial amount present?

Jun 09, 2022
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