In an Atwood's machine, two blocks of different mass are hung over a pulley. As the heavier block descends, the lighter block rises, and the pulley begins to rotate. The heavier block has a mass of 520 g and the lighter block has a mass of 480 g. The pulley has a radius of 5.0 cm and is mounted on frictionless bearings.
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- An old vinyl record is a thin plastic disk of radius 0.25 m and mass 126 g. It is freely rotating at 45 rev/min. You are able to stop the record from rotating in 6 s by pressing your finer against the rim and exerting a radially directed force of 9 N. (Recommendation: If you don't know what a vinyl record is, please do a Google search for an image to help your understanding.) What is the coefficient of kinetic frictions between the record and your finger??Two blocks are connected by massless string that is wrapped around a pulley. Block 1 has a mass m1=6.00 kg, block 2 has a mass m2=2.00 kg, while the pulley has a mass of 1.00 kg and a radius of 18.0 cm. When the pulley turns, there is friction in the axel that exerts a torque of magnitude 0.410 N m. If block 1 is released from rest at a height h=1.40 m, how long does it take to drop to the floor?An Atwood's machine consists of blocks of masses m₁ = 13.0 kg and m₂ = 19.0 kg attached by a cord running over a pulley as in the figure below. The pulley is a solid cylinder with mass M = 6.80 kg and radius r = 0.200 m. The block of mass m₂ is allowed to drop, and the cord turns the pulley without slipping. M T₁ T₂ Q (a) Why must the tension T₂ be greater than the tension T₁? This answer has not been graded yet. (b) What is the acceleration of the system, assuming the pulley axis is frictionless? (Give the magnitude of a.) m/s² (c) Find the tensions T₁ and T₂- T₁ = T₂ =
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