40. The uniform boom shown below weighs 3000 N. It is supported by the horizontal guy wire and by the hinged support at point A. What are the forces on the boom due to the wire and due to the support at A? Does the force at A act along the boom? A 55° 2000 N 41. The uniform boom shown below weighs 700 N, and the object hanging from its right end weighs 400 N. The boom is supported by a light cable and by a hinge at the wall. Calculate the tension in the cable and the force on the hinge on the boom. Does the force on the hinge act along the boom? 20° 45° 400 N
40. The uniform boom shown below weighs 3000 N. It is supported by the horizontal guy wire and by the hinged support at point A. What are the forces on the boom due to the wire and due to the support at A? Does the force at A act along the boom? A 55° 2000 N 41. The uniform boom shown below weighs 700 N, and the object hanging from its right end weighs 400 N. The boom is supported by a light cable and by a hinge at the wall. Calculate the tension in the cable and the force on the hinge on the boom. Does the force on the hinge act along the boom? 20° 45° 400 N
Glencoe Physics: Principles and Problems, Student Edition
1st Edition
ISBN:9780078807213
Author:Paul W. Zitzewitz
Publisher:Paul W. Zitzewitz
Chapter8: Rotational Motion
Section: Chapter Questions
Problem 74A
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I need help with this problem and an explanation for the solution described below. (University Physics 1: Static Equilibrium, and Elasticity).

Transcribed Image Text:40. The uniform boom shown below weighs 3000 N. It is supported by the horizontal guy wire and by the
hinged support at point A. What are the forces on the boom due to the wire and due to the support at A?
Does the force at A act along the boom?
A
55°
2000 N
41. The uniform boom shown below weighs 700 N, and the object hanging from its right end weighs 400 N.
The boom is supported by a light cable and by a hinge at the wall. Calculate the tension in the cable and
the force on the hinge on the boom. Does the force on the hinge act along the boom?
20°
45°
400 N
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