\begin{tabular}{|l|l|l|c}
\multicolumn{2}{c|}{ Column I } & \multicolumn{2}{c}{ Column II } \\
\...
\begin{tabular}{|l|l|l|c}
\multicolumn{2}{c|}{ Column I } & \multicolumn{2}{c}{ Column II } \\
\hline (A) & The equation \( x^{3}-6 x^{2}+9 x+\lambda=0 \) have exactly one root is \( (1,3) \), then \( |[\lambda+1]| \) is (where \( [\cdot] \) denotes the greatest integer function) & (p) & 0 \\
(B) & If \( -3\frac{x^{2}-\lambda x-2}{x^{2}+x+1}2, \forall x \in R \), then I[ \( \lambda] \mid \) is (where \( [\cdot] \) denotes the greatest integer function) & (q) & 1 \\
\hline (C) & If \( x^{2}+\lambda x+1=0 \) and \( (b-c) x^{2}+(c-a) x+(a-b)=0 \) have both the roots common, then \( \mid[\lambda-1] b \) (where \( [\cdot] \) denotes the greatest integer function) & & \\
\hline
\end{tabular}
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