3. A mass m = 0.400 kg hangs from the rim of a wheel of radius r = 0.15 m via a rope wound around the wheel. When released from rest, the mass falls 2.0 m in 6.5 s. Find... a. the linear acceleration, [0.095 m/s²] b. the tension in the rope, and [3.96 N] c. the moment of inertia of the wheel. [0.94 kg-m2]

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Chapter10: Fixed-axis Rotation
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3. A mass m = 0.400 kg hangs from the rim of a wheel of radius r = 0.15
m via a rope wound around the wheel. When released from rest, the
mass falls 2.0 m in 6.5 s. Find...
a. the linear acceleration, [0.095 m/s²]
M
b. the tension in the rope, and [3.96 N]
c. the moment of inertia of the wheel. [0.94 kg m2]
Transcribed Image Text:3. A mass m = 0.400 kg hangs from the rim of a wheel of radius r = 0.15 m via a rope wound around the wheel. When released from rest, the mass falls 2.0 m in 6.5 s. Find... a. the linear acceleration, [0.095 m/s²] M b. the tension in the rope, and [3.96 N] c. the moment of inertia of the wheel. [0.94 kg m2]
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