A light rope is wrapped several times around a large wheel with a radius of 0.450 m. The wheel rotates on frictionless bearings about a stationary horizontal axis, as shown in the figure (Figure 1). The free end of the rope is tied to a suitcase with a mass of 17.0 kg. The suitcase is released from rest at a height of 4.00 m above the ground. The suitcase has a speed of 3.85 m/s when it reaches the ground.   Calculate the angular velocity of the wheel when the suitcase reaches the ground.   Calculate the moment of inertia of the wheel.

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Chapter1: Units, Trigonometry. And Vectors
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A light rope is wrapped several times around a large wheel with a radius of 0.450 m. The wheel rotates on frictionless bearings about a stationary horizontal axis, as shown in the figure (Figure 1). The free end of the rope is tied to a suitcase with a mass of 17.0 kg. The suitcase is released from rest at a height of 4.00 m above the ground. The suitcase has a speed of 3.85 m/s when it reaches the ground.

 

Calculate the angular velocity of the wheel when the suitcase reaches the ground.

 

Calculate the moment of inertia of the wheel.

4.00 m
Transcribed Image Text:4.00 m
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