15.7-N force is applied to a cord wrapped around a pulley of mass M = 3.63-kg and radius R = 22.5-cm The pulley accelerates uniformly from rest to an angular speed of 25.8 rad/s in 4.92-s. If there is a frictional torque = 1.31-mN at the axle, (a) determine the moment of inertia of the pulley, (b) determine the rough estimate of the moment of inertia. (The pulley rotates about its center)
A 15.7-N force is applied to a cord wrapped around a pulley of mass M = 3.63-kg and radius R = 22.5-cm The pulley accelerates uniformly from rest to an angular speed of 25.8 rad/s in 4.92-s. If there is a frictional torque = 1.31-mN at the axle,
(a) determine the moment of inertia of the pulley,
(b) determine the rough estimate of the moment of inertia.
(The pulley rotates about its center)
What is the difference be (a) and (b)?
(5) identical 18.1-gram masses are 10.7-cm from an axis of rotation and rotating at 102-revolutions per minute.
What is the moment of inertia of the 5-object system?
(The strings holding the masses are of negligible mass)
(5) identical 23.3-gram masses are 8.1-cm from an axis of rotation and rotating at 127-revolutions per minute.
What is the Rotational Kinetic Energy?
(The strings holding the masses are of negligible mass)
What will be the speed of a solid sphere of mass 8.03-kg and radius 12.4-cm when it reaches the bottom of an incline if it starts from rest at a vertical height 12.3-m and rolls without slipping?
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