In the figure (Figure 1), the cylinder and pulley turn without friction about stationary horizontal axles that pass through their centers. A light rope is wrapped around the cylinder, passes over the pulley, and has a 3.00-kg box suspended from its free end. There is no slipping between the rope and the pulley surface. The uniform cylinder has mass 5.00 kg and radius 40.0 cm. The pulley is a uniform disk with mass 2.00 kg and radius 20.0 cm. The box is released from rest and descends as the rope unwraps from the cylinder. Part A Find the speed of the box when it has fallen 1.50 m. nν ΑΣφ Figure 1 of 1 <> m/s Submit Request Answer Provide Feedback Pulley Cylinder Box

University Physics Volume 1
18th Edition
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Author:William Moebs, Samuel J. Ling, Jeff Sanny
Publisher:William Moebs, Samuel J. Ling, Jeff Sanny
Chapter11: Angular Momentum
Section: Chapter Questions
Problem 89AP: A solid cylinder of mass 2.0 kg and radius 20 cm is rotating counterclockwise around a vertical axis...
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In the figure (Figure 1), the cylinder and pulley turn
without friction about stationary horizontal axles that
pass through their centers. A light rope is wrapped
around the cylinder, passes over the pulley, and has a
3.00-kg box suspended from its free end. There is no
slipping between the rope and the pulley surface. The
uniform cylinder has mass 5.00 kg and radius 40.0
cm. The pulley is a uniform disk with mass 2.00 kg
and radius 20.0 cm. The box is released from rest and
descends as the rope unwraps from the cylinder.
Part A
Find the speed of the box when it has fallen 1.50 m.
nν ΑΣφ
Figure
1 of 1
<>
m/s
Submit
Request Answer
Provide Feedback
Pulley
Cylinder
Box
Transcribed Image Text:In the figure (Figure 1), the cylinder and pulley turn without friction about stationary horizontal axles that pass through their centers. A light rope is wrapped around the cylinder, passes over the pulley, and has a 3.00-kg box suspended from its free end. There is no slipping between the rope and the pulley surface. The uniform cylinder has mass 5.00 kg and radius 40.0 cm. The pulley is a uniform disk with mass 2.00 kg and radius 20.0 cm. The box is released from rest and descends as the rope unwraps from the cylinder. Part A Find the speed of the box when it has fallen 1.50 m. nν ΑΣφ Figure 1 of 1 <> m/s Submit Request Answer Provide Feedback Pulley Cylinder Box
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