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Part A A stone is suspended from the free end of a wire that is wrapped around the outer rim of a pulley, similar

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Part A A stone is suspended from the free end of a wire that is wrapped around the outer rim of a pulley, similar to what is shown in (Figure 1). The pulley is a uniform disk with mass 10.0 kg and radius 21.0 cm and turns on frictionless bearings. You measure that the stone travels a distance 12.1 m during a time interval of 3.50 s starting from rest. Find the mass of the stone. Express your answer with the appropriate units. Figure M Zm m = Value Units Submit Request Answer Part B Find the tension in the wire. Express your answer with the appropriate units. ? ? T = Value Units Submit Request Answer 1 of 1 Provide Feedback Part A A stone is suspended from the free end of a wire that is wrapped around the outer rim of a pulley, similar to what is shown in (Figure 1). The pulley is a uniform disk with mass 10.0 kg and radius 21.0 cm and turns on frictionless bearings. You measure that the stone travels a distance 12.1 m during a time interval of 3.50 s starting from rest. Find the mass of the stone. Express your answer with the appropriate units. Figure M Zm m = Value Units Submit Request Answer Part B Find the tension in the wire. Express your answer with the appropriate units. ? ? T = Value Units Submit Request Answer 1 of 1 Provide Feedback

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Part A To find the mass of the stone we can use the kinematic equation s 12at2 where s is the ... blur-text-image

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