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Q.What are zero-order reactions? Derive integrated rate equation for zero-order reactions.

Himachal HpboseHPBOSE Plus Two Board 2017Subjective· 2mImportance★★★★★
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For a zero-order reaction, rate = k (a constant), so integrating −d[A]/dt = k directly gives a linear decrease of concentration with time.

Zero-order reactions are reactions whose rate does not depend on the concentration of the reactant(s) at all — i.e., the rate remains constant throughout the reaction as long as some reactant is present:

Rate=k[A]0=k\text{Rate} = k[A]^0 = k

Derivation of the integrated rate equation: For a reaction A→productsA \rightarrow \text{products}, the rate of disappearance of A is:

−d[A]dt=k-\dfrac{d[A]}{dt} = k

Separating variables and integrating from initial concentration [A]0[A]_0 at t=0t=0 to concentration [A][A] at time tt:

−∫[A]0[A]d[A]=k∫0tdt-\int_{[A]_0}^{[A]} d[A] = k\int_0^t dt

−([A]−[A]0)=kt-\big([A] - [A]_0\big) = kt

[A]=[A]0−kt[A] = [A]_0 - kt …

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