Match the columne: \begin{tabular}{|c|c|c|l|} \hline & \multicolumn{1}{|c|}{ Column-I } & \multi...

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Match the columne:
\begin{tabular}{|c|c|c|l|}
\hline & \multicolumn{1}{|c|}{ Column-I } & \multicolumn{1}{|c|}{ Column-II } \\
\hline A. & \( \vec{r} \times(\hat{i}+\hat{j})=\hat{i}-\hat{j} \) & p. & No locus \\
\hline B. & \( \vec{r} \cdot \hat{i}=\vec{r} \cdot \hat{j}=\vec{r} \cdot \hat{k} \) & q. & \( \begin{array}{l}\text { A plane bisecting the line } \\
\text { segment joining }(1,0,0) \\
\text { and }(0,1,0)\end{array} \) \\
\hline C. & \( |\vec{r}-\hat{i}|=|\vec{r}-\hat{j}| \) & r. & \( \begin{array}{l}\text { A line passing through } \\
(0,0,-1) \text { and perpendicular } \\
\text { to } z \text {-axis. }\end{array} \) \\
\hline D. & \( \vec{r} \times \hat{i}=\hat{i} \) & s. & \( \begin{array}{l}\text { Line passing through } \\
(2,2,2) \text { and equally } \\
\text { inclined with corrdinate } \\
\text { axes. }\end{array} \) \\
\hline
\end{tabular}
(a) \( \mathrm{A} \rightarrow \) (s), B \( \rightarrow \) (p), \( \mathrm{C} \rightarrow \) (q), \( \mathrm{D} \rightarrow \) (r)
(b) \( \mathrm{A} \rightarrow \) (r), B \( \rightarrow \) (s), \( \mathrm{C} \rightarrow \) (q), \( \mathrm{D} \rightarrow \) (p)
(c) \( \mathrm{A} \rightarrow \) (p), B \( \rightarrow \) (s), C \( \rightarrow \) (q), \( \mathrm{D} \rightarrow \) (r)
(d) \( \mathrm{A} \rightarrow(\mathrm{r}), \mathrm{B} \rightarrow \) (q), \( \mathrm{C} \rightarrow(\mathrm{s}), \mathrm{D} \rightarrow(\mathrm{s}) \)
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