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Q.a) Derive integrated rate equation for the rate constant of a zero-order reaction.

(3)
b) Mention any two factors that affect the rate of a chemical reaction. (2)
Karnataka PUCKarnataka II PUC Board 2022Subjective· 5mImportance★★★★★
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Integrating the zero-order rate law −d[R]/dt=k-d[R]/dt = k gives [R]=[R]0−kt[R] = [R]_0 - kt, so k=([R]0−[R])/tk = ([R]_0-[R])/t; rate depends on concentration, temperature, catalyst, etc.

a) Integrated rate equation for a zero-order reaction

For a zero-order reaction the rate is independent of reactant concentration:

rate=−d[R]dt=k[R]0=k\text{rate} = -\frac{d[R]}{dt} = k[R]^0 = k

Rearrange and integrate between t=0t=0 (concentration [R]0[R]_0) and time tt (concentration [R][R]):

−d[R]=k dt-d[R] = k\,dt

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

−([R]−[R]0)=kt-\left([R] - [R]_0\right) = kt

[R]=[R]0−kt[R] = [R]_0 - kt

Rearranging for the rate constant:

k=[R]0−[R]tk = \frac{[R]_0 - [R]}{t}

This is a straight line ([R][R] vs tt) of slope −k-k and intercept [R]0[R]_0; the unit of kk is mol L−1 s−1\text{mol L}^{-1}\,\text{s}^{-1}.

b) Factors affecting the rate of a reaction (any two) …

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