*17-56. The two uniform 4-kg bars DC and EF are fixed (welded) together at E. Determine the normal force g, shear force VE, and moment ME, which DC exerts on EF at E if at the instant 0 = 60° BC has an angular velocity w = 2 rad/s and an angular acceleration a = 4 rad/s as shown. 1.5 m 2 m a = 4 rad/s w = 2 rad/s e = 60
*17-56. The two uniform 4-kg bars DC and EF are fixed (welded) together at E. Determine the normal force g, shear force VE, and moment ME, which DC exerts on EF at E if at the instant 0 = 60° BC has an angular velocity w = 2 rad/s and an angular acceleration a = 4 rad/s as shown. 1.5 m 2 m a = 4 rad/s w = 2 rad/s e = 60
Elements Of Electromagnetics
7th Edition
ISBN:9780190698614
Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
ChapterMA: Math Assessment
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
Transcribed Image Text:*17-56. The two uniform 4-kg bars DC and EF are fixed
(welded) together at E. Determine the normal force g,
shear force VE, and moment ME, which DC exerts on EF at
E if at the instant 0 = 60° BC has an angular velocity
w = 2 rad/s and an angular acceleration a = 4 rad/s
as shown.
1.5 m
2 m
a = 4 rad/s
w = 2 rad/s
e = 60
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