A uniform solid sphere of 50 kg and radius 0.2 m rotates about a vertical axis on frictionless bearings. A massless cord passes around the equatör over a pulley of rotational inertia 0.8 kgm? and radius 0.2 m which is attached to a small object of mass 5 kg, free to fall under the influence of gravity. There is no friction on the axel of the pulley so that the cord does not slip on the pulley. What is the speed of the object after it has fallen a distance of 0.2 m from rest ? ( for the solid sphere ICM-(2/5)MR? and g = 10 m/s?) (hint: consider energy of the system and remember v-wr) spher Solid Sphere

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A uniform solid sphere of 50 kg and radius 0.2 m rotates about a vertical axis on frictionless bearings. À massless cord passes around the equator of the sphere
over a pulley of rotational inertia 0.8 kgm2 and radius 0.2 m which is attached to a small object of mass 5 kg, free to fall under the influence of gravity. There is
no friction on the axel of the pulley so that the cord does not slip on the pulley. What is the speed of the object after it has fallen a distance of 0.2 m from rest ? (
for the solid sphere ICM=(2/5)MR2 and g = 10 m/s2) (hint: consider energy of the system and remember v=wr)
Solid Sphere
Pulley, (1)
Object
20 cm
Transcribed Image Text:A uniform solid sphere of 50 kg and radius 0.2 m rotates about a vertical axis on frictionless bearings. À massless cord passes around the equator of the sphere over a pulley of rotational inertia 0.8 kgm2 and radius 0.2 m which is attached to a small object of mass 5 kg, free to fall under the influence of gravity. There is no friction on the axel of the pulley so that the cord does not slip on the pulley. What is the speed of the object after it has fallen a distance of 0.2 m from rest ? ( for the solid sphere ICM=(2/5)MR2 and g = 10 m/s2) (hint: consider energy of the system and remember v=wr) Solid Sphere Pulley, (1) Object 20 cm
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