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Three identical spherical shells, each of mass m and radius r, are placed as shown in figure. Consider an axis XX' which is touching two shells and passing through the diameter of third shell. The moment of inertia of the system consisting of these three spherical shell about XX' axis is,

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Important Questions on Rotational Mechanics

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Two point masses m1 and m2 are placed at the opposite ends of a rigid rod of length L and negligible mass. The rod is to be set rotating about an axis perpendicular to it. The position of point P on this rod through which the axis should pass so that the work required to set the rod rotating with angular velocity ω0 is minimum is given by,

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From a disc of radius R and mass M, a circular hole of diameter R, whose rim passes through the centre is cut. What is the moment of inertia of the remaining part of the disc about a perpendicular axis, passing through the centre?
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A disc and a sphere of the same radius but different masses roll off on two inclined planes of the same altitude and length. Which one of the two objects gets to the bottom of the plane first?
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Two rotating bodies A and B of masses m and 2 m with moments of inertia IA and IBIB>IA have equal kinetic energy of rotation. If LA and LB be their angular momenta respectively, then
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A solid sphere of mass m and radius R is rotating about its diameter. A solid cylinder of the same mass and same radius is also rotating about its geometrical axis with angular speed twice that of sphere. The ratio of their kinetic energies of rotation EsphereEcylinder will be
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A solid sphere is in rolling motion. In rolling motion a body possesses translational kinetic energy (Kt) as well as rotational kinetic energy (Kr) simultaneously. The ratio kt :(Kt+Kr) for sphere is 
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A solid sphere is rotating freely about its symmetry axis in free space. The radius of the sphere is increased keeping its mass same. Which of the following physical quantities would remain constant for the sphere?
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A gramophone record is revolving with angular velocity ω  A coin is placed at a distance r from the centre of the record. The static coefficient of friction is μ. The coin will revolve with the record if