Figure shows a composite pulley of that consist of two cylinders of R and 2R...

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Figure shows a composite pulley of that consist of two cylinders of R and 2R stacked MR coaxially Moment of inertia of composite pulley is A light string is wound over pulley and another pulley A of mass M is hanged through the string as shown in figure SRAMAY 2 3R C Go down with velocity Ro M MR2 The composite pulley is rotated with angular velocity o in the direction shown The pulley A will A Go up with velocity AYATHE B Go up with velocity Ro D Will not move

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To solve this problem we need to understand the relationship between the angular velocity of the composite pulley and the linear velocity of the mass M Given Composite pulley consists    See Answer
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