Problem 3 The 322-lb bell is at rest in the vertical position when it is struck by the 75.67-lb wooden beam suspended from two equal-length ropes. The center of mass of the bell is at point G and its radius of gyration about G is kg = 1.5 ft. The post strikes the bell with a velocity of 7.5 ft/s. The coefficient of restitution for the impact is e = Determine the mass moment of inertia of the bell about its pivot point. Determine the angular momentum of the system about the bell pivot point. Determine the angular velocity of the bell immediately after impact. Determine the velocity of the wooden beam immediately after impact. 0.65. 3 ft 4.5 ft

Elements Of Electromagnetics
7th Edition
ISBN:9780190698614
Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
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Problem 3
The 322-lb bell is at rest in the vertical position when it is struck by the 75.67-lb
wooden beam suspended from two equal-length ropes. The center of mass of the bell
is at point G and its radius of gyration about G is kg = 1.5 ft. The post strikes the bell
with a velocity of 7.5 ft/s. The coefficient of restitution for the impact is e =
Determine the mass moment of inertia of the bell about its pivot point.
Determine the angular momentum of the system about the bell pivot point.
Determine the angular velocity of the bell immediately after impact.
Determine the velocity of the wooden beam immediately after impact.
0.65.
3 ft
4.5 ft
Transcribed Image Text:Problem 3 The 322-lb bell is at rest in the vertical position when it is struck by the 75.67-lb wooden beam suspended from two equal-length ropes. The center of mass of the bell is at point G and its radius of gyration about G is kg = 1.5 ft. The post strikes the bell with a velocity of 7.5 ft/s. The coefficient of restitution for the impact is e = Determine the mass moment of inertia of the bell about its pivot point. Determine the angular momentum of the system about the bell pivot point. Determine the angular velocity of the bell immediately after impact. Determine the velocity of the wooden beam immediately after impact. 0.65. 3 ft 4.5 ft
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