The block on a smooth inclined plane is moving down with a constant acceleration of 5m/s^2. The block on the inclined plane is 48 kg and the hanging mass is 16 kg. The radius of the pulley is 0.38 m. The angle theta is 47 degrees. Determine the moment of inertia of the pulley.

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ISBN:9781938168277
Author:William Moebs, Samuel J. Ling, Jeff Sanny
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Chapter11: Angular Momentum
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Problem 76P: The precession angular velocity of a gyroscope is 1.0 rad/s. If the mass of the rotating disk is 0.4...
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The block on a smooth inclined plane is moving down with a constant acceleration of 5m/s^2. The block on the inclined plane is 48 kg and the hanging mass is 16 kg. The radius of the pulley is 0.38 m. The angle theta is 47 degrees. Determine the moment of inertia of the pulley.

The block on a smooth inclined plane is moving down with a constant accéleration UI
m.
The block on the inclined plane is 48 kg and the hanging mass is 16 kg. The radius of the pulley is 0.38 m. The angle theta is 47 degress. Determine the moment of inertia of the pulle
ROUND OFF FINAL ASWER UP TO 2 DECIMAL PLACES. INPUT THE NUMBER ONLY.
Transcribed Image Text:The block on a smooth inclined plane is moving down with a constant accéleration UI m. The block on the inclined plane is 48 kg and the hanging mass is 16 kg. The radius of the pulley is 0.38 m. The angle theta is 47 degress. Determine the moment of inertia of the pulle ROUND OFF FINAL ASWER UP TO 2 DECIMAL PLACES. INPUT THE NUMBER ONLY.
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