Match the columns Column - I Column-II (A) \( \mathrm{k}=\frac{\left[\mathrm{R}_{0}\right]-[\mat...

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Match the columns
Column - I
Column-II
(A) \( \mathrm{k}=\frac{\left[\mathrm{R}_{0}\right]-[\mathrm{R}]}{\mathrm{t}} \)
(p) \( \mathrm{k}=\frac{2.303}{\mathrm{t}_{1 / 2}} \log 2 \)
(B) \( \mathrm{k}=\frac{2.303}{\mathrm{t}} \log \frac{\left[\mathrm{R}_{0}\right]}{[\mathrm{R}]} \)
(q) Rate constant for zero order reaction
(C) Value of \( \mathrm{k} \) for first
(r) \( \mathrm{k}=\frac{[\mathrm{R}]_{0}}{2 \mathrm{t}_{1 / 2}} \) order reaction when \( \mathrm{t}=\mathrm{t}_{\frac{1}{2}} \) and \( [\mathrm{R}]=\frac{[\mathrm{R}]_{0}}{2} \)
(D) Value of \( \mathrm{k} \) for zero
(s) Rate constant for first order reaction when order reaction \( \mathrm{t}=\mathrm{t}_{1 / 2} \) and \( [\mathrm{R}]=\frac{[\mathrm{R}]_{0}}{2} \)
(a) \( \mathrm{A}- \) (s), B-(q), C-(p), D-(r)
(b) \( \mathrm{A}- \) (q), B-(s), C-(p), D-(r)
(c) A-(q), B-(p), C-(s), D-(r)
(d) \( \mathrm{A}-(\mathrm{q}), \mathrm{B}-(\mathrm{s}), \mathrm{C}-(\mathrm{p}), \mathrm{D}-(\mathrm{t}) \)
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