Consider the following case of competing Ist order reactions. After the start of the reaction at...
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Consider the following case of competing Ist order reactions. After the start of the reaction at \( \mathrm{t}=0 \), with only \( \mathrm{P} \), concentration of \( \mathrm{Q} \) is equal to \( \mathrm{R} \) at all times.
\( \mathrm{P} \) The time in which all the three concentration will be
W equal is given by
(A) \( t=\frac{2.303}{2 k_{1}} \log _{10} 3 \)
(B) \( t=\frac{2.303}{2 \mathrm{k}_{2}} \log _{10} 3 \)
(C) \( t=\frac{2.303}{3 k_{1}} \log _{10} 2 \)
(D) \( t=\frac{2.303}{3 k_{2}} \log _{10} 2 \)
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