11) A horizontal, uniform bar of mass 26 kg and length 3.0 m is hinged to a wall on its left side and held with a rope on the right side with tension 260 N at an angle of 40 degrees. A 10 kg block is placed a distance L from the left side of the bar. The system is in static equilibrium. Find the distance L. Rope 10 kg L 40° Uniform bar mass 26 kg and length 3.0 m

Physics for Scientists and Engineers: Foundations and Connections
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Author:Katz, Debora M.
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Chapter14: Static Equilibrium, Elasticity, And Fracture
Section: Chapter Questions
Problem 30PQ: A 5.45-N beam of uniform density is 1.60 m long. The beam is supported at an angle of 35.0 by a...
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11) A horizontal, uniform bar of mass 26 kg and length 3.0 m is hinged to a wall on its left
side and held with a rope on the right side with tension 260N at an angle of 40 degrees.
A 10 kg block is placed a distance L from the left side of the bar. The system is in static
equilibrium. Find the distance L.
Rope
10 kg
L
40°
Uniform bar
mass 26 kg and length 3.0 m
Transcribed Image Text:11) A horizontal, uniform bar of mass 26 kg and length 3.0 m is hinged to a wall on its left side and held with a rope on the right side with tension 260N at an angle of 40 degrees. A 10 kg block is placed a distance L from the left side of the bar. The system is in static equilibrium. Find the distance L. Rope 10 kg L 40° Uniform bar mass 26 kg and length 3.0 m
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