19–31. The 10-g bullet having a velocity of 800 m/s is fired into the edge of the 5-kg disk as shown. Determine the angular velocity of the disk just after the bullet becomes embedded into its edge. Also, calculate the angle 0 the disk will swing when it stops. The disk is originally at rest. The rod AB has a mass of 3 kg. A 2 m В v = 800 m/s 0.4 m Probs. 19-30/31

Elements Of Electromagnetics
7th Edition
ISBN:9780190698614
Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
ChapterMA: Math Assessment
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19–31. The 10-g bullet having a velocity of 800 m/s is fired
into the edge of the 5-kg disk as shown. Determine the
angular velocity of the disk just after the bullet becomes
embedded into its edge. Also, calculate the angle 0 the disk
will swing when it stops. The disk is originally at rest. The
rod AB has a mass of 3 kg.
2 m
B
v = 800 m/s
0.4 m
Probs. 19–30/31
Transcribed Image Text:19–31. The 10-g bullet having a velocity of 800 m/s is fired into the edge of the 5-kg disk as shown. Determine the angular velocity of the disk just after the bullet becomes embedded into its edge. Also, calculate the angle 0 the disk will swing when it stops. The disk is originally at rest. The rod AB has a mass of 3 kg. 2 m B v = 800 m/s 0.4 m Probs. 19–30/31
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