Consider this reaction: H₂CO3 (aq) → H₂O (aq) + CO₂ (aq) At a certain temperature it obeys this rate law. rate = (18.7 M¹-s-¹) [H₂CO₂] -1 S Suppose a vessel contains H₂CO3 at a concentration of 0.380M. Calculate the concentration of H₂CO3 in the vessel 0.470 seconds later. You may assume no other reaction is important. Round your answer to 2 significant digits. M 0 X

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Chapter1: Chemical Foundations
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Consider this reaction:
H₂CO3 (aq) → H₂O (aq)+ CO₂ (aq)
At a certain temperature it obeys this rate law.
1
-1
rate = (18.7 M¹-s¯¹) [H₂CO3]²
Suppose a vessel contains H₂CO at a concentration of 0.380M. Calculate the concentration of H₂CO3 in the vessel 0.470 seconds later. You may assume no
other reaction is important.
Round your answer to 2 significant digits.
M
x10
×
Ś
Transcribed Image Text:Consider this reaction: H₂CO3 (aq) → H₂O (aq)+ CO₂ (aq) At a certain temperature it obeys this rate law. 1 -1 rate = (18.7 M¹-s¯¹) [H₂CO3]² Suppose a vessel contains H₂CO at a concentration of 0.380M. Calculate the concentration of H₂CO3 in the vessel 0.470 seconds later. You may assume no other reaction is important. Round your answer to 2 significant digits. M x10 × Ś
Consider this reaction:
2C1₂05 (g) → 2Cl₂ (g) +50₂ (g)
At a certain temperature it obeys this rate law.
rate = (8.98 × 10-4
')[c,os]
-1
S
Suppose a vessel contains Cl₂05 at a concentration of 1.40M. Calculate the concentration of Cl₂O5 in the vessel 690. seconds later. You may assume no other
reaction is important.
Round your answer to 2 significant digits.
Transcribed Image Text:Consider this reaction: 2C1₂05 (g) → 2Cl₂ (g) +50₂ (g) At a certain temperature it obeys this rate law. rate = (8.98 × 10-4 ')[c,os] -1 S Suppose a vessel contains Cl₂05 at a concentration of 1.40M. Calculate the concentration of Cl₂O5 in the vessel 690. seconds later. You may assume no other reaction is important. Round your answer to 2 significant digits.
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