(d) A long cord of negligible mass is wrapped around a third pulley, Pulley C, and attached to a spring scale, as shown in Figure 3. The spring scale is pulled downward so that it exerts a constant force of magnitude Fs on the cord. As the spring scale moves down a significant distance, the vertical portion of the cord moves closer and closer to the center of the pulley. Predict how the net torque exerted on the pulley and the rotational kinetic energy of the pulley will be changing, if at all, as the spring scale moves downward and the vertical portion moves closer to the center of the pulley. Net torque: Increasing Decreasing Not changing Rotational kinetic energy: _Increasing Decreasing Not changing Briefly provide reasoning for your predictions.

Mechanics of Materials (MindTap Course List)
9th Edition
ISBN:9781337093347
Author:Barry J. Goodno, James M. Gere
Publisher:Barry J. Goodno, James M. Gere
Chapter1: Tension, Compression, And Shear
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Pulley C
Spring
Scale
Figure 3
(d) A long cord of negligible mass is wrapped around a
third pulley, Pulley C, and attached to a spring scale, as
shown in Figure 3. The spring scale is pulled downward
so that it exerts a constant force of magnitude Fs on the
cord. As the spring scale moves down a significant
distance, the vertical portion of the cord moves closer
and closer to the center of the pulley.
Predict how the net torque exerted on the pulley and the
rotational kinetic energy of the pulley will be changing, if
at all, as the spring scale moves downward and the
vertical portion moves closer to the center of the pulley.
Net torque:
Increasing Decreasing
Not
changing
Rotational kinetic energy: ,
Increasing
Decreasing Not changing
Briefly provide reasoning for your predictions.
I
x? X2
Ω
!!
Transcribed Image Text:Pulley C Spring Scale Figure 3 (d) A long cord of negligible mass is wrapped around a third pulley, Pulley C, and attached to a spring scale, as shown in Figure 3. The spring scale is pulled downward so that it exerts a constant force of magnitude Fs on the cord. As the spring scale moves down a significant distance, the vertical portion of the cord moves closer and closer to the center of the pulley. Predict how the net torque exerted on the pulley and the rotational kinetic energy of the pulley will be changing, if at all, as the spring scale moves downward and the vertical portion moves closer to the center of the pulley. Net torque: Increasing Decreasing Not changing Rotational kinetic energy: , Increasing Decreasing Not changing Briefly provide reasoning for your predictions. I x? X2 Ω !!
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