Let A \& B are two independent events such that P(A)
\( =\frac{1}{3} \) and \( \mathrm{P}(\mathr....
Let A \& B are two independent events such that P(A)
\( \mathrm{P} \)
\( =\frac{1}{3} \) and \( \mathrm{P}(\mathrm{B})=\frac{1}{4} \). Then the following columns
W
\begin{tabular}{|l|l|c|c|}
\hline \multicolumn{2}{|c|}{ Column-I } & \multicolumn{2}{c|}{ Column-II } \\
\hline A. & \( P(A \cup B) \) is equal to & P. & \( \frac{1}{12} \) \\
\hline B. & \( P(A / A \cup B) \) is equal to & Q. & \( \frac{1}{2} \) \\
\hline C. & \( P\left(B / A^{\prime} \cap B^{\prime}\right) \) is equal to & R. & \( \frac{2}{3} \) \\
\hline D. & \( P\left(A^{\prime} / B\right) \) is equal to & S. & 0 \\
\hline
\end{tabular}
\begin{tabular}{lllll}
& A & B & C & D \\
(1) & \( \mathrm{P} \) & \( \mathrm{S} \) & \( \mathrm{Q} \) & \( \mathrm{R} \) \\
(2) & \( \mathrm{Q} \) & \( \mathrm{R} \) & \( \mathrm{S} \) & \( \mathrm{R} \) \\
(3) & \( \mathrm{Q} \) & \( \mathrm{S} \) & \( \mathrm{R} \) & \( \mathrm{P} \) \\
(4) & \( \mathrm{R} \) & \( \mathrm{S} \) & \( \mathrm{P} \) & \( \mathrm{Q} \)
\end{tabular}
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