Q7) A particle of mass m with speed vo collides with a uniform rod of mass M and length L inelastically on a horizontal frictionless table, as shown in the figure below. The moment of inertia of the rod about its center of mass is Icm-ML²/12. If the particle stops after the collision, find the following: a) the speed of the center of mass of the rod b) the angular speed of the rod. M, L 1/2
Q7) A particle of mass m with speed vo collides with a uniform rod of mass M and length L inelastically on a horizontal frictionless table, as shown in the figure below. The moment of inertia of the rod about its center of mass is Icm-ML²/12. If the particle stops after the collision, find the following: a) the speed of the center of mass of the rod b) the angular speed of the rod. M, L 1/2
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
Transcribed Image Text:Q7) A particle of mass m with speed vo collides with a uniform rod of mass M and length L inelastically on a
horizontal frictionless table, as shown in the figure below. The moment of inertia of the rod about its
center of mass is Icm-ML²/12. If the particle stops after the collision, find the following:
a) the speed of the center of mass of the rod
b) the angular speed of the rod.
M, L
1/2
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