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- A Block ' A ' is placed on a smooth horizontal surface and a particle C is suspended with the help of light rod from point B of the block as shown. Now both the block A and the particle C are given velocity v0 towards left. The block A strikes a fixed wall and suddenly stops. Then, (The rod B C is free to rotate about B )
Q.
A Block ' $A$ ' is placed on a smooth horizontal surface and a particle $C$ is suspended with the help of light rod from point $B$ of the block as shown. Now both the block $A$ and the particle $C$ are given velocity $v_{0}$ towards left. The block $A$ strikes a fixed wall and suddenly stops. Then, (The rod $B C$ is free to rotate about $B$ )
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Solution:
As soon as the block hits the wall, the suspension point $B$ comes to a stop, while the particle $C$ keeps moving with a velocity $v_{0}$ towards left. In order that it complete a full circle, it must have enough kinetic energy so as to make it to the top of the circle.
$\frac{1}{2} m v_{0}^{2}=m g .2 l$
i.e., $v_{0}=\sqrt{4 g l},$
Since velocity at the highest point being zero.
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