After experimentally determining the order of this reaction, it was indeed found out to be 2nd order in HI(g). Please write the rate law. 2HI(g) → H2(g) + I(g)

Chemistry: The Molecular Science
5th Edition
ISBN:9781285199047
Author:John W. Moore, Conrad L. Stanitski
Publisher:John W. Moore, Conrad L. Stanitski
Chapter11: Chemical Kinetics: Rates Of Reactions
Section: Chapter Questions
Problem 21QRT: The reaction of CO(g) + NO2(g) is second-order in NO2 and zeroth-order in CO at temperatures less...
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After experimentally determining the order of this reaction, it was indeed found out to be
2nd order in HI(g).
Please write the rate law.
2HI(g) → H2(g) + L(g)
In the reaction,
A + B C + D
doubling the concentration of A {making it 2[A] } while keeping [B]
constant, increases the rate of the reaction by a factor of 8. Calculate the order of the
reaction in reactant A.
Rate = k [A]
Transcribed Image Text:After experimentally determining the order of this reaction, it was indeed found out to be 2nd order in HI(g). Please write the rate law. 2HI(g) → H2(g) + L(g) In the reaction, A + B C + D doubling the concentration of A {making it 2[A] } while keeping [B] constant, increases the rate of the reaction by a factor of 8. Calculate the order of the reaction in reactant A. Rate = k [A]
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