Determine the required mass (in kg) of the suspended cylinder then find the magnitude of the resultant reaction forces (in kN) at support A, if the tension in the chain wrapped around the freely turning gear is to be T=2.2 kN. The cable hanging the cylinder is connected to AB at point B. Ignore the weight of the cable, chain and pulley, and also ignore the weight of members.

International Edition---engineering Mechanics: Statics, 4th Edition
4th Edition
ISBN:9781305501607
Author:Andrew Pytel And Jaan Kiusalaas
Publisher:Andrew Pytel And Jaan Kiusalaas
Chapter6: Beams And Cables
Section: Chapter Questions
Problem 6.90P: The 14-kN weight is suspended from a small pulley that is free to roll on the cable. The length of...
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Determine the required mass (in kg) of the suspended cylinder then find the magnitude of
the resultant reaction forces (in kN) at support A, if the tension in the chain wrapped around
the freely turning gear is to be T=2.2 kN. The cable hanging the cylinder is connected to AB
at point B. Ignore the weight of the cable, chain and pulley, and also ignore the weight of members.
450
30°
300 mm
T
Transcribed Image Text:Determine the required mass (in kg) of the suspended cylinder then find the magnitude of the resultant reaction forces (in kN) at support A, if the tension in the chain wrapped around the freely turning gear is to be T=2.2 kN. The cable hanging the cylinder is connected to AB at point B. Ignore the weight of the cable, chain and pulley, and also ignore the weight of members. 450 30° 300 mm T
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