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Q.Match the following: Column-I:

(i) Half life of first order reaction
(ii) K[A]^(1/2)[B]^(1/2)
(iii) Zero Order Reaction
(iv) NH4NO2 -> N2 + 2H2O ; Column-II:
(a) Order = 1
(b) Molecularity = 1
(c) t(1/2) = 0.693/K
(d) K = (1/t){[R]0 - [R]} OR The rate constant of a first order reaction is 60 sec^-1. How much time will it take to reduce the initial conc. of the reaction to its 1/16th value?
Haryana BsehBSEH Intermediate Board 2026Subjective· 2mImportance★★★★★
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Matching each kinetics fact to its correct pairing: half-life of a first-order reaction uses t1/2=0.693/Kt_{1/2}=0.693/K; a rate law K[A]1/2[B]1/2K[A]^{1/2}[B]^{1/2} has overall order 1; the zero-order integrated rate law is K=(1/t){[R]0−[R]}K=(1/t)\{[R]_0-[R]\}; and the decomposition of NH4NO2NH_4NO_2 is a classic example of a reaction with molecularity 1.

(i) Half life of a first order reaction → (c) t1/2=0.693/Kt_{1/2} = 0.693/K. This is the standard first-order half-life formula, independent of initial concentration.

(ii) Rate =K[A]1/2[B]1/2= K[A]^{1/2}[B]^{1/2} → (a) Order = 1. The overall order is the sum of the individual powers: 12+12=1\tfrac{1}{2} + \tfrac{1}{2} = 1.

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