Capillary rise is given by:
\[ h = \frac{2T \cos \theta}{\rho g r} \]
If \(\theta = 0^\circ\), the rise is non-zero, so Statement-I is incorrect. Statement-II is correct as the contact angle depends on the materials involved.
Statement-1: \( \text{ClF}_3 \) has 3 possible structures.
Statement-2: \( \text{III} \) is the most stable structure due to least lone pair-bond pair (lp-bp) repulsion.
Which of the following options is correct?
The largest $ n \in \mathbb{N} $ such that $ 3^n $ divides 50! is: