The cylinder of weight, W, shown below is being hoisted up with the force F against the vertical wall. If us = 0.57 a. Determine the reaction force (resultant of normal force and frictional force) against the vertical wall. b. Calculate the force, F, needed to set the cylindrical roller in motion W or W1 (in kN) = 516

Structural Analysis
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ISBN:9781337630931
Author:KASSIMALI, Aslam.
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Chapter2: Loads On Structures
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The cylinder of weight, W, shown below is being hoisted up with the force F against the vertical wall. If us = 0.57 a. Determine the reaction force (resultant of normal force and frictional force) against the vertical wall. b. Calculate the force, F, needed to set the cylindrical roller in motion W or W1 (in kN) = 516
1. The cylinder of weight, W (see the table of values), shown below is being hoisted up with the force
F against the vertical wall. If us = 0.57
a.
Determine the reaction force (resultant of nomal force and frictional force) against the
vertical wall.
b.
Calculate the force, F, needed to set the cylindrical roller in motion.
Transcribed Image Text:1. The cylinder of weight, W (see the table of values), shown below is being hoisted up with the force F against the vertical wall. If us = 0.57 a. Determine the reaction force (resultant of nomal force and frictional force) against the vertical wall. b. Calculate the force, F, needed to set the cylindrical roller in motion.
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