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A wheel in uniform motion about an axis passing through its centre and perpendicular to its plane is considered to be in mechanical (translational plus rotational) equilibrium because no net external force or torque is required to sustain its motion. However, the particles that constitute the wheel do experience a centripetal the acceleration directed towards the centre. How do you reconcile this fact with the wheel being in equilibrium?
How would you set a half wheel into uniform motion about an axis passing through the centre of mass of the wheel and perpendicular to its plane? Will you require external forces to sustain the motion?
How would you set a half wheel into uniform motion about an axis passing through the centre of mass of the wheel and perpendicular to its plane? Will you require external forces to sustain the motion?
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Wheel is a rigid body. It is in uniform motion about axis passing through its centre and perpendicular to the plane of wheel.
The particles that constitute the wheel do experience a centripetal acceleration directed towards the centre. That acceleration arises due to internal elastic forces, which cancel out in pairs.
In a half wheel, the distribution of mass (of half wheel) about its centre of mass (through which axis of rotation passes) is not symmetrical about the axis of wheel. So, the direction of angular momentum of the wheel does not coincide with the direction of its angular velocity. Thus, an external torque is required to maintain the motion of the half wheel.
The particles that constitute the wheel do experience a centripetal acceleration directed towards the centre. That acceleration arises due to internal elastic forces, which cancel out in pairs.
In a half wheel, the distribution of mass (of half wheel) about its centre of mass (through which axis of rotation passes) is not symmetrical about the axis of wheel. So, the direction of angular momentum of the wheel does not coincide with the direction of its angular velocity. Thus, an external torque is required to maintain the motion of the half wheel.
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