Using first- and second-order integrated rate laws Consider this reaction: H_CO,(@g) — H_O{q} +CO,(ng) At a certain temperature it obeys this rate law. Tate-(0.70 M¹-)[HCO,1 M Suppose a vessel contains H,CO, at a concentration of 0.340 M Calculate the concentration of H₂CO, in the vessel 67.0 seconds later. You may assume no other reaction is important Round your answer to 2 significant digits Explanation Check DwTyBASO 5 262_5W4C70A/Eatong 20 Arit

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Ⓒ KINETICS AND EQU
Using first- and second-order integrated rate laws
Consider this reaction:
A ALEKSA
H_CO, (@g) – H,O@q}+CD, (a)
At a certain temperature it obeys this rate law..
rate (0.70 M)[H₂CO,]
Explanation
x+
Suppose a vessel contains H,CO, at a concentration of 0.340 M. Calculate the concentration of H₂CO, in the vessel 67.0 seconds later. You may assume no
other reaction is important.
Round your answer to 2 significant digits.
Check
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Accessibilty
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Transcribed Image Text:E www-www.aleks.com/alekscy//it.ee/To.gr/P3H-1822webw790435PLXWARDwQdXwm2 5W4C70A0Eq Ⓒ KINETICS AND EQU Using first- and second-order integrated rate laws Consider this reaction: A ALEKSA H_CO, (@g) – H,O@q}+CD, (a) At a certain temperature it obeys this rate law.. rate (0.70 M)[H₂CO,] Explanation x+ Suppose a vessel contains H,CO, at a concentration of 0.340 M. Calculate the concentration of H₂CO, in the vessel 67.0 seconds later. You may assume no other reaction is important. Round your answer to 2 significant digits. Check ©2022 McGraw HR LLC Alghed Sms of Use Pruncy Center 986 0 Accessibilty 1014AM 2222 Arif do 121
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