TOUT CE TW Question 18 Figure 1 Top View Note: Vectors not drawn to scale. F- Figure 2 Top View Note: Vectors not drawn

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TOUT CE TW Question 18 Figure 1 Top View Note: Vectors not drawn to scale. F- Figure 2 Top View Note: Vectors not drawn

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Tout Ce Tw Question 18 Figure 1 Top View Note Vectors Not Drawn To Scale F Figure 2 Top View Note Vectors Not Drawn 1
Tout Ce Tw Question 18 Figure 1 Top View Note Vectors Not Drawn To Scale F Figure 2 Top View Note Vectors Not Drawn 1 (84.78 KiB) Viewed 44 times
Tout Ce Tw Question 18 Figure 1 Top View Note Vectors Not Drawn To Scale F Figure 2 Top View Note Vectors Not Drawn 2
Tout Ce Tw Question 18 Figure 1 Top View Note Vectors Not Drawn To Scale F Figure 2 Top View Note Vectors Not Drawn 2 (116.41 KiB) Viewed 44 times
TOUT CE TW Question 18 Figure 1 Top View Note: Vectors not drawn to scale. F- Figure 2 Top View Note: Vectors not drawn to scale. A rigid disk with rotational inertia I, about its center of mass is initially at rest. The disk is free to rotate without friction about a vertical axis through its center. A constant force F1 that results in a torque T is applied to the edge of the disk. This torque causes the disk to rotate, as shown in Figure 1. After a time Ato, a second force F2 is also applied to the edge of the disk, resulting in a torque T2, as shown in Figure 2. Which two of the following predictions are correct abor the motion of the disk after F2 is applied to the disk? S i two answers. Submit

www.u vurururunu vyru R. UTVIRTINT that results in a torque Ti is applied to the edge of the disk. This torque causes the disk to rotate, as shown in Figure 1. After a time Ato, a second force F is also applied to the edge of the disk, resulting in a torque T2, as shown in Figure 2. Which two of the following predictions are correct about the motion of the disk after F2 is applied to the disk? Select two answers. If the magnitude T2 <T1, the disk will continue to spin in the same direction but with zero change in angular velocity per unit time. If the magnitude T2 = T1, the disk will continue to spin in the same direction but with zero change in angular velocity per unit time. If the magnitude T2 = 271, the disk will eventually come to rest and then spin in the opposite direction with a smaller change in angular velocity per unit of time than before T2 was applied. If the magnitude T2 > 271, the disk will eventually come to rest and then spin in the opposite direction with a greater change in angular velocity per unit of time than before T2 was applied. Submit
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