A 12-m uniform beam is hinged to a vertical wall and held horizontally by a 5.0-m cable attached to the wall 4.0 m above the hinge, as shown in (Figure 1). The metal of this cable has a test strength of 0.900 kN, which means that it will break if the tension in it exceeds that amount.   Part A: What is the heaviest beam that the cable can support with the given configuration?   Part B: Find the horizontal component of the force the hinge exerts on the beam. Part C: Find the vertical component of the force the hinge exerts on the beam.

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Chapter1: Units And Measurement
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Problem 77P: What is the area of a circle 3.102 cm in diameter?
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A 12-m uniform beam is hinged to a vertical wall and held horizontally by a 5.0-m cable attached to the wall 4.0 m above the hinge, as shown in (Figure 1). The metal of this cable has a test strength of 0.900 kN, which means that it will break if the tension in it exceeds that amount.

 

Part A: What is the heaviest beam that the cable can support with the given configuration?

 

Part B: Find the horizontal component of the force the hinge exerts on the beam.

Part C: Find the vertical component of the force the hinge exerts on the beam.

 

5.0 m
cable
4.0 m
Transcribed Image Text:5.0 m cable 4.0 m
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