\begin{tabular}{|l|l|l|l|}
\hline \multicolumn{2}{|c|}{ Column -I } & \multicolumn{2}{c|}{ Colum...
\begin{tabular}{|l|l|l|l|}
\hline \multicolumn{2}{|c|}{ Column -I } & \multicolumn{2}{c|}{ Column-II } \\
\hline A. & \( \begin{array}{l}\text { If } \sum n=210, \text { then } \sum n^{2} \text { is divisible by } \\
\text { the greatest prime number which is } \\
\text { greater than }\end{array} \) & p. & 16 \\
\hline B. & \( \begin{array}{l}\text { Between } 4 \text { and } 2916 \text { is inserted odd } \\
\text { number }(2 n+1) \text { G.Ms. Then the } \\
(n+1) \text { th G.M. is divisible by greatest } \\
\text { odd integer which is less titan }\end{array} \) & q. & 10 \\
\hline C. & \( \begin{array}{l}\text { In a certain progression, four } \\
\text { consecutive terms are } 40,30,24,20 . \\
\text { Then the integral part of the next term } \\
\text { of the progression is more than }\end{array} \) & r. & 34 \\
\hline D. & \( \begin{array}{l}\frac{a}{b}=1+\frac{4}{5}+\frac{7}{5^{2}}+\frac{10}{5^{3}}+\cdots \text { where H.C.F. }(a, b)\end{array} \) & s. & 30 \\
\hline
\end{tabular}
(a) \( \mathrm{A} \rightarrow \mathrm{q}, \mathrm{r}, \mathrm{s} ; \mathrm{B} \rightarrow \mathrm{r}, \mathrm{s} ; \mathrm{C} \rightarrow \mathrm{p}, \mathrm{q} ; \mathrm{D} \rightarrow \mathrm{r} \), s
(b) \( \mathrm{A} \rightarrow \mathrm{p}, \mathrm{q}, \mathrm{r}, \mathrm{s} ; \mathrm{B} \rightarrow \mathrm{r} \), s; C \( \rightarrow \) p, q; D \( \rightarrow \) r, s
(c) \( \mathrm{A} \rightarrow \mathrm{p}, \mathrm{q}, \mathrm{r}, \mathrm{s} ; \mathrm{B} \rightarrow \mathrm{r}, \mathrm{p} ; \mathrm{C} \rightarrow \mathrm{p}, \mathrm{q} ; \mathrm{D} \rightarrow \mathrm{r} \), s
(d) \( \mathrm{A} \rightarrow \mathrm{p}, \mathrm{q}, \mathrm{r}, \mathrm{s} ; \mathrm{B} \rightarrow \mathrm{r} ; \mathrm{C} \rightarrow \mathrm{p}, \mathrm{q} ; \mathrm{D} \rightarrow \mathrm{r}, \mathrm{s} \)
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