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WHAT IS MEANING OF MOMENT OF INERTIA?

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Moment of inertia is the mass property of a rigid body that determines the torque needed for a desired angular acceleration about an axis of rotation. Moment of inertia depends on the shape of the body and may be different around different axes of rotation.
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Moment of inertia is the mass property of a rigid body that determines the torque needed for a desired angular acceleration about an axis of rotation. Moment of inertia depends on the shape of the body and may be different around different axes of rotation. A larger moment of inertia around a given axis...
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Moment of inertia is the mass property of a rigid body that determines the torque needed for a desired angular acceleration about an axis of rotation. Moment of inertia depends on the shape of the body and may be different around different axes of rotation. A larger moment of inertia around a given axis requires more torque to increase the rotation, or to stop the rotation, of a body about that axis. Moment of inertia depends on the amount and distribution of its mass, and can be found through the sum of moments of inertia of the masses making up the whole object, under the same conditions. For example, if ma + mb = mc, then Ia + Ib = Ic read less
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Moment of inertia is the ability of a rigid body about an axis of rotation which determines torque needed for a desired angular acceleration.
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Physics Lecturer for IIT JEE/NEET/IB

The product of mass and square of radius of gyration
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Moment of inertia is a concept applied for rotational motion. What mass is for linear motion, MI is for rotational motion. The corresponding quantity for force is torque. So the angular acceleration of a body is proportional to the torque applied and inversely proportional to moment of inertia about...
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Moment of inertia is a concept applied for rotational motion. What mass is for linear motion, MI is for rotational motion. The corresponding quantity for force is torque. So the angular acceleration of a body is proportional to the torque applied and inversely proportional to moment of inertia about an axis. MI changes with axis orientation. MI determines how much torque would be required to produced a given angular acceleration about an axis. read less
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A quantity expressing a body's tendency to resist angular acceleration, which is the sum of the products of the mass of each particle in the body with the square of its distance from the axis of rotation.
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Moment of inertia is the mass property of a rigid body that determines the torque needed for a desired angular acceleration about an axis of rotation. Moment of inertia depends on the shape of the body and may be different around different axes of rotation. When a body is rotating around an axis, a...
read more
Moment of inertia is the mass property of a rigid body that determines the torque needed for a desired angular acceleration about an axis of rotation. Moment of inertia depends on the shape of the body and may be different around different axes of rotation. When a body is rotating around an axis, a torque must be applied to change its angular momentum. The amount of torque needed for any given change in angular momentum is proportional to the moment of inertia of the body. Moment of inertia I is defined as the ratio of the angular momentum L of a system to its angular velocity ? around a principal axis, that is Moment of inertia may be expressed in terms of kilogram-square metres (kg•m2) in SI units and pound-square feet (lbm•ft2) in imperial or US units. read less
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Moment of inertia is the ability of a rigid body about an axis of rotation which determines torque needed for a desired angular acceleration.
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