L A collar with a mass of 2 kg is rigidly attached at a distance d = 300 mm from d the end of a uniform slender rod AB. The rod has a mass of 5 kg and is of length = 400 mm. Knowing that the rod is released from rest in the position shown, Using the conservation of Energy principle, determine the angular velocity of the rod after it has rotated through 60°. Neglect the moment of inertia of the collar C. A В L

Elements Of Electromagnetics
7th Edition
ISBN:9780190698614
Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
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L
A collar with a mass of 2 kg is rigidly
d
attached at a distance d = 300 mm from
the end of a uniform slender rod AB. The
rod has a mass of 5 kg and is of length
L = 400 mm. Knowing that the rod is
released from rest in the position shown,
Using the conservation of Energy
principle, determine the angular velocity
of the rod after it has rotated through
60°. Neglect the moment of inertia of the
A
В
collar C.
Transcribed Image Text:L A collar with a mass of 2 kg is rigidly d attached at a distance d = 300 mm from the end of a uniform slender rod AB. The rod has a mass of 5 kg and is of length L = 400 mm. Knowing that the rod is released from rest in the position shown, Using the conservation of Energy principle, determine the angular velocity of the rod after it has rotated through 60°. Neglect the moment of inertia of the A В collar C.
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