What is the linear acceleration of the tallng bucket? buckot. Imagine in frictionless puliey in than shape of a solid cy
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What is the linear acceleration of the tallng bucket? buckot. Imagine in frictionless puliey in than shape of a solid cy
What is the value of the torque that is applied to the pulley by the bucket hanging on the cord? Use the tension from the previous question. Part E Find the moment of inertia of the rotating pulley using the torque and the angular acceleration. Part F Calculate the mass of the pulley using the moment of inertia.
Calculate the mass of the pulley using the moment of inertia. is Incorrect; Try Again; 3 attempts remaining Part G What is the change in the potential energy of the bucket from the top of the well to the water level?
What is the linear velocity of the falling bucket just as it hits the water? Use the previously calculated linear acceleration. * Incorrect; Try Again; 3 attempts remaining Part I What is the angular velocity of the rotating pulley just as the falling bucket hits the water? Use the relation between the angular velocity and the linear velocity.
What is the angular momentum of the rotating pulley just as the falling bucket hits the water? Use the moment of inertia and the angular velocity of the pulley. Part K What is the kinetic energy of the falling bucket just as it hits the water? Part L What is the kinetic energy of the rotating pulley just as the falling bucket hits the water?
What is the kinetic energy of the rotating pulley just as the falling bucket hits the water? Part M What is the total kinetic energy of the falling bucket and the rotating pulley just as the falling bucket hits the water? Give your answer to 3 sig figs.