Torque with pulleys and bucket of water

AI Thread Summary
The discussion revolves around calculating the torque exerted on a frictionless pulley by a bucket of water attached to a cord. The bucket, with a mass of 1.53 kg, falls for 2.04 seconds, covering a distance of 2.87 m. The torque is determined by the tension in the rope, which is influenced by the bucket's weight and acceleration. Participants are encouraged to apply Newton's second law to analyze the forces acting on the bucket to find the tension in the rope. The main goal is to find the unknown mass of the pulley based on these calculations.
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Imagine a frictionless pulley (a solid cylinder) of unknown mass M and radius r = 0.41 m is used to draw water from a well. A bucket of mass m = 1.53 kg is attached to a cord wrapped around the cylinder. A bucket starts from rest at the top of the well and falls for t = 2.04 s before hitting the water h = 2.87 m below the top of the well. Neglect the mass of the cord.

t = F*R
t=(1.53*9.81) * .41

t = 6.15 Nm??
 
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What's the question? (Find the unknown mass of the pulley?)

Hint: What directly exerts the torque on the cylinder is the tension in the rope, not the weight of the bucket.
 
sorry, the question is asking what the torque is; i can't seem to figure it out for some reason?
 
Find the tension in the rope.

Hints: Analyze the forces acting on the bucket. Apply Newton's 2nd law. (What's the acceleration of the bucket?)
 
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