Cable Beam In the figure above, a beam of weight 750 N and length 3.5 m is suspended horizontally. On the left it is hinged to a wall; on the right it is supported by a cable bolted to the wall at distance D above the beam. The least tension that will snap the cable is 1300 N. Draw the relevant forces acting on the beam in the picture. Show/Use sum of forces and sum of torques equations to calculate the following: (a) What value of D corresponds to that tension? and (b) What is the magnitude of the force F at the hinge? (No credit will be given for formulas that appear out of nowhere..draw a free-body diagram to justify all your equations)

Mechanics of Materials (MindTap Course List)
9th Edition
ISBN:9781337093347
Author:Barry J. Goodno, James M. Gere
Publisher:Barry J. Goodno, James M. Gere
Chapter2: Axially Loaded Members
Section: Chapter Questions
Problem 2.4.5P: A solid circular steel cylinder S is encased in a hollow circular aluminum tube A. The cylinder and...
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Cable
Beam
In the figure above, a beam of weight 750 N and length 3.5 m is suspended
horizontally. On the left it is hinged to a wall; on the right it is supported by a cable
bolted to the wall at distance D above the beam. The least tension that will snap the
cable is 1300 N. Draw the relevant forces acting on the beam in the picture.
Show/Use sum of forces and sum of torques equations to calculate the following:
(a) What value of D corresponds to that tension? and (b) What is the magnitude of
the force F at the hinge? (No credit will be given for formulas that appear out of
nowhere.draw a free-body diagram to justify all your equations)
Transcribed Image Text:Cable Beam In the figure above, a beam of weight 750 N and length 3.5 m is suspended horizontally. On the left it is hinged to a wall; on the right it is supported by a cable bolted to the wall at distance D above the beam. The least tension that will snap the cable is 1300 N. Draw the relevant forces acting on the beam in the picture. Show/Use sum of forces and sum of torques equations to calculate the following: (a) What value of D corresponds to that tension? and (b) What is the magnitude of the force F at the hinge? (No credit will be given for formulas that appear out of nowhere.draw a free-body diagram to justify all your equations)
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