Figure 2.4 shows a rope is supporting a 185 kg uniform beam which is 16.0 m long. One end of the beam is hinged at the wall and the other end of the beam supports a m = 15.2 kg load. The rope is attached to the end of the beam and makes an angle of 30.5° with the horizontal beam. (d) 30.5° `Hinge m Figure 2.4 Calculate (i) the tension in the rope, and (ii) the magnitude and direction of force acting at the hinge.

Elements Of Electromagnetics
7th Edition
ISBN:9780190698614
Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
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Figure 2.4 shows a rope is supporting a 185 kg uniform beam which is 16.0 m
long. One end of the beam is hinged at the wall and the other end of the beam
supports a m = 15.2 kg load. The rope is attached to the end of the beam and
makes an angle of 30.5° with the horizontal beam.
(d)
30.5
`Hinge
m
Figure 2.4
Calculate
(i)
the tension in the rope, and
(ii)
the magnitude and direction of force acting at the hinge.
Transcribed Image Text:Figure 2.4 shows a rope is supporting a 185 kg uniform beam which is 16.0 m long. One end of the beam is hinged at the wall and the other end of the beam supports a m = 15.2 kg load. The rope is attached to the end of the beam and makes an angle of 30.5° with the horizontal beam. (d) 30.5 `Hinge m Figure 2.4 Calculate (i) the tension in the rope, and (ii) the magnitude and direction of force acting at the hinge.
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