PROBLEM 2 A ring M of mass m = 0,5 kg is shoved at p. A at velocity v and begins to move on a wire frame shaped as a three-quartered circle of radius R=0,2 m (as shown on the figure). At p. D the ring is flying off at velocity vp=1 m/s. If all resistances are neglected, determine the v velocity as well as the normal reaction magnitude when the ring is at point B.

Elements Of Electromagnetics
7th Edition
ISBN:9780190698614
Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
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PROBLEM 2
A ring M of mass m = 0,5 kg is shoved at p. A at velocity VA
and begins to move on a wire frame shaped as a three-quartered
circle of radius R=0,2 m (as shown on the figure). At p. D
the ring is flying off at velocity vp=1 m/s. If all resistances
are neglected, determine the v velocity as well as the normal M
TON
reaction magnitude when the ring is at point B.
PROBLEM 3
B
D
R
C
Transcribed Image Text:PROBLEM 2 A ring M of mass m = 0,5 kg is shoved at p. A at velocity VA and begins to move on a wire frame shaped as a three-quartered circle of radius R=0,2 m (as shown on the figure). At p. D the ring is flying off at velocity vp=1 m/s. If all resistances are neglected, determine the v velocity as well as the normal M TON reaction magnitude when the ring is at point B. PROBLEM 3 B D R C
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