5. A rod of length Do and mass 2Mo is at rest on a flat, horizontal surface. One end of the rod is connected to a pivot that the rod will rotate around if acted upon by a net torque. A lump of clay of mass mo is launched horizontally toward the center of the rod with velocity Vo, as shown in the figure. After the clay collides with the rod, the clay sticks to the rod and both objects rotate around the pivot with the common angular velocity wo. The rotational inertia of the clay-rod system is Is. What is clay's angular velocity immediately after the collision? mo Vo Do 2Mo

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Chapter1: Units, Trigonometry. And Vectors
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5. A rod of length Do and mass 2Mo is at rest on a flat, horizontal
surface. One end of the rod is connected to a pivot that the rod will
rotate around if acted upon by a net torque. A lump of clay of mass
mo is launched horizontally toward the center of the rod with
velocity Vo, as shown in the figure. After the clay collides with the
rod, the clay sticks to the rod and both objects rotate around the
pivot with the common angular velocity wo. The rotational inertia of
the clay-rod system is Is. What is clay's angular velocity
immediately after the collision?
mo
Vo
Do
2Mo
Transcribed Image Text:5. A rod of length Do and mass 2Mo is at rest on a flat, horizontal surface. One end of the rod is connected to a pivot that the rod will rotate around if acted upon by a net torque. A lump of clay of mass mo is launched horizontally toward the center of the rod with velocity Vo, as shown in the figure. After the clay collides with the rod, the clay sticks to the rod and both objects rotate around the pivot with the common angular velocity wo. The rotational inertia of the clay-rod system is Is. What is clay's angular velocity immediately after the collision? mo Vo Do 2Mo
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