The figure shows a horizontal beam of mass M = 59.9 kg and length L = 6.2 m supported at its left end by a frictionless pin and at the other end by an ideal cable attached to wall h = 8 m above the beam. A mass m = 23.5 kg is suspended from the beam a distance d = 3.3 m from the wall. Find the tension in the cable. h T = -d→ m M -L- N

University Physics Volume 1
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Chapter12: Static Equilibrium And Elasticity
Section: Chapter Questions
Problem 38P: A uniform horizontal strut weighs 400.0 N. One end of the strut is attached to a hinged support the...
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The figure shows a horizontal beam of mass M = 59.9 kg and length L = 6.2 m
supported at its left end by a frictionless pin and at the other end by an ideal cable
attached to wall h = 8 m above the beam. A mass m = 23.5 kg is suspended from
the beam a distance d = 3.3 m from the wall. Find the tension in the cable.
h
T =
←d→
m
M
-L-
N
Transcribed Image Text:The figure shows a horizontal beam of mass M = 59.9 kg and length L = 6.2 m supported at its left end by a frictionless pin and at the other end by an ideal cable attached to wall h = 8 m above the beam. A mass m = 23.5 kg is suspended from the beam a distance d = 3.3 m from the wall. Find the tension in the cable. h T = ←d→ m M -L- N
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