The pulley in (Figure 1) has radius 0.160 m and moment of inertia 0.380 kg-m². The rope does not slip on the pulley rim. Figure 4.00 kg 5.00 m 2.00 kg < 1 of 1 > Part A Use energy methods to calculate the speed of the 4.00 kg block just before it strikes the floor. Express your answer with the appropriate units. V= HA Value Submit Request Answer Units < Return to Assignment Provide Feedback Review | Constants ?

University Physics Volume 1
18th Edition
ISBN:9781938168277
Author:William Moebs, Samuel J. Ling, Jeff Sanny
Publisher:William Moebs, Samuel J. Ling, Jeff Sanny
Chapter11: Angular Momentum
Section: Chapter Questions
Problem 80AP: The mass of a hoop of radius 1.0 m is 6.0 kg. It rolls across a horizontal surface with a speed of...
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Item 11
The pulley in (Eigure 1) has radius 0.160 m and
moment of inertia 0.380 kg. m². The rope does not
slip on the pulley rim.
Figure
4.00 kg
5.00 m
2.00 kg
1 of 1
Part A
Use energy methods to calculate the speed of the 4.00 kg block just before it strikes the floor.
Express your answer with the appropriate units.
V=
Submit
μA
Value
Request Answer
< Return to Assignment
Units
SWIN
Provide Feedback
?
11 of 11
Review | Constants
Transcribed Image Text:Item 11 The pulley in (Eigure 1) has radius 0.160 m and moment of inertia 0.380 kg. m². The rope does not slip on the pulley rim. Figure 4.00 kg 5.00 m 2.00 kg 1 of 1 Part A Use energy methods to calculate the speed of the 4.00 kg block just before it strikes the floor. Express your answer with the appropriate units. V= Submit μA Value Request Answer < Return to Assignment Units SWIN Provide Feedback ? 11 of 11 Review | Constants
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