Match the column-I with column-II. \begin{tabular}{|l|l|l|l|} \hline \multicolumn{1}{|c|}{} & Co...

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Match the column-I with column-II.
\begin{tabular}{|l|l|l|l|}
\hline \multicolumn{1}{|c|}{} & Column-I & & Column-II \\
\hline A. & \( \begin{array}{l}\text { Partial vapour } \\
\text { pressure of } \\
\text { liquid }\end{array} \) & p. & \( \begin{array}{l}\text { Denoted by } \\
\text { Particles after association } \\
\mathrm{i}=\frac{\text { or dissociation }}{} \\
\text { Initial number of particles }\end{array} \) \\
\hline B. & \( \begin{array}{l}\text { Vapour } \\
\text { composition }\end{array} \) & q. & \( \mathrm{P}_{\mathrm{A}}=\mathrm{P}_{\mathrm{A}}^{\mathrm{o}} \cdot \mathrm{x}_{\mathrm{A}} \) \\
\hline C. & \( \begin{array}{l}\text { Depression in } \\
\text { Freezing point }\end{array} \) & r. & \( \mathrm{X}_{\mathrm{A}}^{\prime}=\frac{\mathrm{P}_{\mathrm{A}}}{\mathrm{P}_{\mathrm{T}}} \) \\
\hline D. & \( \begin{array}{l}\text { Vant Hoff } \\
\text { factor }\end{array} \) & s. & \( \Delta \mathrm{T}_{\mathrm{f}}=\mathrm{k}_{\mathrm{f}} \mathrm{xm} \) \\
\hline
\end{tabular}
(1) A-(q); B-(r); C-(s); D-(p)
(2) A-(p); B-(q); C-(r); D-(s)
(3) A-(p); B-(s); C-(p); D-(r)
(4) A-(p); B-(s); C-(p); D-(r)
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