5. The crane shown has a smooth collar at B and could rotate about the pin at A if not for the collar at B. The crane is rated to hold a load of 2000 kg. The horizontal, uniform beam has a mass of 230 kg and length 3 m. The vertical beam and is 3.8 m long and 290 kg. The load can only travel a distance 2.7 m. Calculate the reactions at A and B at maximum load conditions. 2.7 m

International Edition---engineering Mechanics: Statics, 4th Edition
4th Edition
ISBN:9781305501607
Author:Andrew Pytel And Jaan Kiusalaas
Publisher:Andrew Pytel And Jaan Kiusalaas
Chapter5: Three-dimensional Equilibrium
Section: Chapter Questions
Problem 5.56RP: The uniform bars AB and BC each weigh 4 lb/ft. Calculate the tension in cable DE, and the magnitudes...
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5. The crane shown has a smooth collar at B and could rotate about the pin at A if
not for the collar at B. The crane is rated to hold a load of 2000 kg. The
horizontal, uniform beam has a mass of 230 kg and length 3 m. The vertical
beam and is 3.8 m long and 290 kg. The load can only travel a distance 2.7 m.
Calculate the reactions at A and B at maximum load conditions.
2.7 m
3.8 m
Transcribed Image Text:5. The crane shown has a smooth collar at B and could rotate about the pin at A if not for the collar at B. The crane is rated to hold a load of 2000 kg. The horizontal, uniform beam has a mass of 230 kg and length 3 m. The vertical beam and is 3.8 m long and 290 kg. The load can only travel a distance 2.7 m. Calculate the reactions at A and B at maximum load conditions. 2.7 m 3.8 m
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