d. How does the magnitude of angular acceleration of the pulley depend on the hanging mass? i. As the hanging mass increases, the angular acceleration INCREASES or DECREASES e. How does the magnitude of acceleration of the hanging mass depend on the hanging mass? i. As the hanging mass increases, the angular acceleration INCREASES or DECREASES f. How are your answers to (d) and (e) related?

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18th Edition
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Chapter10: Fixed-axis Rotation
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Problem 8CQ: A massless tether with a masses tied to both ends rotates about a fixed axis through the center. Can...
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A mass (between 0.01 kg and 1 kg) is hung by a string from the edge of a
massive (between 0 kg and 2 kg) disk-shaped pulley (with a radius between 0.1
and 4 meters) as shown (position given in meters, time given in seconds,
and angular velocity given in radians/second).
Time: 1,48
omega = +7.252
Transcribed Image Text:A mass (between 0.01 kg and 1 kg) is hung by a string from the edge of a massive (between 0 kg and 2 kg) disk-shaped pulley (with a radius between 0.1 and 4 meters) as shown (position given in meters, time given in seconds, and angular velocity given in radians/second). Time: 1,48 omega = +7.252
For d, e, and f set the mass of the pulley to 0.5 kg, the radius of the pulley to 2 m, and vary the hanging
mass.
d. How does the magnitude of angular acceleration of the pulley depend on the hanging mass?
i. As the hanging mass increases, the angular acceleration
INCREASES
or
DECREASES
e. How does the magnitude of acceleration of the hanging mass depend on the hanging mass?
i. As the hanging mass increases, the angular acceleration
INCREASES
or
DECREASES
f.
How are your answers to (d) and (e) related?
Transcribed Image Text:For d, e, and f set the mass of the pulley to 0.5 kg, the radius of the pulley to 2 m, and vary the hanging mass. d. How does the magnitude of angular acceleration of the pulley depend on the hanging mass? i. As the hanging mass increases, the angular acceleration INCREASES or DECREASES e. How does the magnitude of acceleration of the hanging mass depend on the hanging mass? i. As the hanging mass increases, the angular acceleration INCREASES or DECREASES f. How are your answers to (d) and (e) related?
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