Determine the forces applied on the beam in A and B. 2 kN/m 4 m 2 m 3 kN/m
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- PROBLEM 2. Determine the resultant force and specify where it acts on the beam measured from A. 200 lb/ft 500 lb 150 lb/ft A B 6 ft- -3 ft -3 ft-Determine the value of P acting to the left that is required to pull the wedge out from under the 40-kN block. 40 kN 60° P 10°Cable AB supports the uniformly distributed load of 4 kN/m. If the slope of the cable at A is zero, compute (a) the maximum tensile force in the cable; and (b) the length of the cable.
- Find the internal force systems acting on sections 1 and 2.Resolve the 360-lb force into components along the cables AB and AC. Use =60 and =40.The center of gravity of the 850-N man is at G. If the man pulls on the rope with a 388-N force, determine the horizontal distance b between the man's feet and G.
- The horizontal boom carries the weight W=108lb at A. The boom is supported by the cables AB and AC. The tensions in the cables are TAB=120lb and TAC=160lb. Determine the single force R that is equivalent to three forces acting on the boom at A.The force F=5i+12j+4k lb is applied to the handle of the door. Determine the orthogonal component of F that is perpendicular to the plane of the door.Determine the magnitude of the resultant force if the load at E is increased by 29