System is released from rest. Moment of inertia of pulley=D0.02 slug ft2. Slanted surface: smooth. Determine: magnitude of velocity of 13 lb weight when it has fallen 2.1 ft. M1 10 M2 Figure 4: r=5 in, M1=5 lb, M2=13 lb, 0=20°
System is released from rest. Moment of inertia of pulley=D0.02 slug ft2. Slanted surface: smooth. Determine: magnitude of velocity of 13 lb weight when it has fallen 2.1 ft. M1 10 M2 Figure 4: r=5 in, M1=5 lb, M2=13 lb, 0=20°
Elements Of Electromagnetics
7th Edition
ISBN:9780190698614
Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
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
Transcribed Image Text:4
System is released from rest. Moment of
inertia of pulley=D0.02 slug ft². Slanted
surface: smooth. Determine: magnitude
of velocity of 13 lb weight when it has
fallen 2.1 ft.
M1
M2
Figure 4: r=5 in, M1=5 lb, M2=13
lb, 0=20°
4.
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