\(\overset{22}{\underset{r=0}\sum} {\,\,} ^{22}C_r. ^{23}C_r \)
\(=\overset{22}{\underset{r=0}\sum} {\,\,} ^{22}C_r. ^{23}C_{23-r} \)
\(={\,\,}^{45}C_{23} \)
Hence, the correct option is (B): \(^{45}C_{23} \)
Let a line passing through the point $ (4,1,0) $ intersect the line $ L_1: \frac{x - 1}{2} = \frac{y - 2}{3} = \frac{z - 3}{4} $ at the point $ A(\alpha, \beta, \gamma) $ and the line $ L_2: x - 6 = y = -z + 4 $ at the point $ B(a, b, c) $. Then $ \begin{vmatrix} 1 & 0 & 1 \\ \alpha & \beta & \gamma \\ a & b & c \end{vmatrix} \text{ is equal to} $
Permutation is the method or the act of arranging members of a set into an order or a sequence.
Combination is the method of forming subsets by selecting data from a larger set in a way that the selection order does not matter.