Suppose the particle of the previous problem has a mass m and a speed v before the collision and

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Suppose the particle of the previous problem has a mass
m and a speed v before the collision and it sticks to the
rod after the collision. The rod has a mass M. (a) Find
the velocity of the centre of mass C of the system
constituting “the rod plus the particle”. (b) Find the
velocity of the particle with respect to C before the
collision. (c) Find the velocity of the rod with respect to
C before the collision. (d) Find the angular momentum
of the particle and of the rod about the centre of mass
C before the collision. (e) Find the moment of inertia of
the system about the vertical axis through the centre of
mass C after the collision. (f) Find the velocity of the
centre of mass C and the angular velocity of the system
about the centre of mass after the collision.

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Why are we taking relative velocity of rod in calculation of angular momentum in part d..?

jeeaspirant
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Sir part e mein angular momentum after colision mein Iw + mvr kyu nhi liya

parthhooda
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Sir for part e, why is ML^2/12 is added?

TheLofiSP