At a certain temperature the rate of this reaction is first order in N₂O5 with a rate constant of 0.0222 s 2N₂O5 (g) → 2N₂O4 (g) + O₂(g) Suppose a vessel contains N₂O5 at a concentration of 1.20 M. Calculate the concentration of N₂O5 in the vessel 52.0 seconds later. You may assume no other reaction is important. Round your answer to 2 significant digits. M x10 X

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Chapter1: Chemical Foundations
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www-awu.aleks.com/alekscgi/x/Isl.exe/10_u-IgNslkr7j8P3jH-UibwdleAUz2IYCCR4NM7yr_IpMriNwxObE8AQh1KpvSelejev-Tdu PS6C7h-fsNAPGB1ZaRgTTPXJcYxzQV8... ☆
O KINETICS AND EQUILIBRIUM
Using an integrated rate law for a first-order reaction
M
At a certain temperature the rate of this reaction is first order in N₂O5 with a rate constant of 0.0222 s
2N₂O5 (g) → 2N₂O4 (g) + O₂(g)
Suppose a vessel contains N₂O5 at a concentration of 1.20 M. Calculate the concentration of N₂O5 in the vessel 52.0 seconds later. You may assume no other
reaction is important.
Round your answer to 2 significant digits.
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Transcribed Image Text:C Gmail YouTube Translate www-awu.aleks.com/alekscgi/x/Isl.exe/10_u-IgNslkr7j8P3jH-UibwdleAUz2IYCCR4NM7yr_IpMriNwxObE8AQh1KpvSelejev-Tdu PS6C7h-fsNAPGB1ZaRgTTPXJcYxzQV8... ☆ O KINETICS AND EQUILIBRIUM Using an integrated rate law for a first-order reaction M At a certain temperature the rate of this reaction is first order in N₂O5 with a rate constant of 0.0222 s 2N₂O5 (g) → 2N₂O4 (g) + O₂(g) Suppose a vessel contains N₂O5 at a concentration of 1.20 M. Calculate the concentration of N₂O5 in the vessel 52.0 seconds later. You may assume no other reaction is important. Round your answer to 2 significant digits. 83°F Mostly cloudy Explanation Check X Q Search. h a Ⓒ2023 McGraw Hill LLC. All Rights Reserved. Terms of Use 3/5 lo Privacy Center | Acc
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