Structural Analysis
6th Edition
ISBN: 9781337630931
Author: KASSIMALI, Aslam.
Publisher: Cengage,
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Determine the force P on the cable if the spring is compressed 0.5 in. when the
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- The hoist supports the 150-kg engine. Determine the force in members DB and FB. Also determine the reactions on the floor at A and C. m m 2 m BO E 2 m 1marrow_forwardProblem 4: The wall crane supports a load of 800 lb. Determine the horizontal and vertical components of reaction at the pins A and D. Also, what is the force in the cable at the winch W? 4 ft- E W 800 lbarrow_forwardProblem 3: Inputs: ● F = 1800 N P = 600 N (same as previous problem) a = b = 3 m (same as previous problem) c = 8 m (same as previous problem) The frame is comprised of two members. All joints are pinned. Compute the reactions at pins A and C, as well as the forces at pin B. P с a) Ax (Indicate left/right) b) Ay (Indicate up/down) c) Cx (Indicate left/right) d) Cy (Indicate up/down) e) Bx (no need to indicate direction since this is an internal force) f) a F B b C Net force in y-direction at pin B, using the FBD for bar BC. This is not necessarily By by itself. Again, no need for direction here.arrow_forward
- The solid 32 mm diameter steel [E = 200 GPa] shaft supports two belt pulleys. Assume that the bearing at B can be idealized as a roller support and that the bearing at D can be idealized as a pin support. For the loading shown, determine: (a) the shaft deflection at pulley A. (b) the shaft deflection at pulley C. Assume P = 500 N, Q = 1000 N, LAB = 600 mm, LBC = 800 mm, LCD = 800 mm.arrow_forwardAll members are of negligible weight and all joints are pin connections. The structure is supported by two hinges at point G and K and one roller at point A. Member OP is subjected to a distributed load and is held by two cables IO and NP. The entire system is in equilibrium.arrow_forwardF11-4. The linkage is subjected to a force of P = 6 kN. Determine the angle for equilibrium. The spring is unstretched at # = 60°. Neglect the mass of the links. 0.9 m B k = 20 kN/m www P=6 kN 0.9 marrow_forward
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