Collars A and B shown in Figure 2 have a mass of 10 kg and 20 kg respectively. If there is no friction between the collars and the bars, determine the magnitude of the stress at the AB chord. The value of g is 5+ k/10 where k is 4 and the length of AB is 3 meters. Determine the magnitude of the force F parallel to the bar GH necessary to keep the system in balance.

Elements Of Electromagnetics
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Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
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Problem 1
Collars A and B shown in Figure 2 have a mass of 10 kg and 20 kg respectively.
If there is no friction between the collars and the bars, determine the magnitude of the
stress at the AB chord. The value of g is 5+ k/10 where k is 4 and the length
of AB is 3 meters. Determine the magnitude of the force F parallel to the bar GH
necessary to keep the system in balance.
G
(0,9, 0) m
D
(0, 3, 0) m
3 m
B.
H
(4, 0, 0) m
(0, 0. 4) m
Figure 2
Transcribed Image Text:Problem 1 Collars A and B shown in Figure 2 have a mass of 10 kg and 20 kg respectively. If there is no friction between the collars and the bars, determine the magnitude of the stress at the AB chord. The value of g is 5+ k/10 where k is 4 and the length of AB is 3 meters. Determine the magnitude of the force F parallel to the bar GH necessary to keep the system in balance. G (0,9, 0) m D (0, 3, 0) m 3 m B. H (4, 0, 0) m (0, 0. 4) m Figure 2
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