O Kinetics and Equilibrium Deducing a rate law from the change in concentration over time A chemistry graduate student is studying the rate of this reaction: - 250, (g) 250, (g)+0₂ (g) He fills a reaction vessel with SO3 and measures its concentration as the reaction proceeds: [so,] time (milliseconds) 0 0.0300M 10. 0.0202 M 20. 0.0135 M 30. 0.00909 M 40. 0.00611 M Use this data to answer the following questions. Write the rate law for this reaction. Calculate the value of the rate constant k. rate = k □·□ k = 0 Round your answer to 2 significant digits. Also be sure your answer has the correct unit symbol. G

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O Kinetics and Equilibrium
Deducing a rate law from the change in concentration over time
A chemistry graduate student is studying the rate of this reaction:
-
250, (g) 250, (g)+0₂ (g)
He fills a reaction vessel with SO3 and measures its concentration as the reaction proceeds:
[so,]
time
(milliseconds)
0
0.0300M
10.
0.0202 M
20.
0.0135 M
30.
0.00909 M
40.
0.00611 M
Use this data to answer the following questions.
Write the rate law for this reaction.
Calculate the value of the rate constant k.
rate = k
□·□
k = 0
Round your answer to 2 significant digits. Also be
sure your answer has the correct unit symbol.
G
Transcribed Image Text:O Kinetics and Equilibrium Deducing a rate law from the change in concentration over time A chemistry graduate student is studying the rate of this reaction: - 250, (g) 250, (g)+0₂ (g) He fills a reaction vessel with SO3 and measures its concentration as the reaction proceeds: [so,] time (milliseconds) 0 0.0300M 10. 0.0202 M 20. 0.0135 M 30. 0.00909 M 40. 0.00611 M Use this data to answer the following questions. Write the rate law for this reaction. Calculate the value of the rate constant k. rate = k □·□ k = 0 Round your answer to 2 significant digits. Also be sure your answer has the correct unit symbol. G
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