Apply a load of 100 kg to the center of the design. Considering it as a two- dimensional problem, determine the force acting on member.
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- The homogeneous bar AB weighs 25 lb. Determine the magnitudes of the forces acting on the bar at A and B. Neglect friction.The homogeneous plate of weight W is supported by a ball-and-socket joint at D and three wires. Draw the FBD of the plate and count the unknowns.The homogeneous plate of weight W is suspended from two cables. Determine the force P that is necessary to keep the plate in the position shown.
- the homogeneous cylinder of weight W=100 N rests in a frictionless right angled corner. determine the contact forces NA and NB angle is 30 degreesA 10 m steel beam of mass 1000 kg extends 4 m beyond the edge of a flat roof. If a 2,000 kg object is placed on the beam 2 m beyond the roof edge and then to balance the beam a load of 750 kg must be placed on roof at _____ from the edge.Determine the forces in each member using any method discussed in your theory of structures/mechanics. Using Software is not allowed. Show complete solution and tabulate your answers indicating whether it is compression or tension. Use Pn = 205 kN, Po = Zero
- The forklift supports the engine. Determine the force that generates this load on element DB. Write your answer in Newtons. Consider Engine mass = 114 kg a = 1.47 m b = 1.81 mThe homogeneous cylinder of weight W = 100N rests in a frictionless right-angled corner. Determinethe contact forces NA and NB if θ = 30°.Don't copy from other websites solution. The wall crane supports a load of 660lb. The jib ABC has a weight of 152lb and member BD has a weight of 38lb. Each member is uniform and has a center of gtravity at its center. A)Determine the horizontal component of reaction at the pin A. B)Determine the vertical component of reaction at the pin A. C)Determine the horizontal component of reaction at the pin D. D)Determine the vertical component of reaction at the pin D. E)What is the force in the cable at the winch W?
- A 300kg counterweight with center of mass at G is mounted on the AB crank rod of the oil pump unit. If the motor supplies a torque M = 250Nm determine the force F developed by the fixed cable attached to the end of the mobile beam DEFThe Cylinder weighs 1000 kg, rest on an plane which is inclined at 34° from the horizontal. The normal force acting on a plane to the cylinder is 10 KN. Assume smooth surface, the cylinder leaned to a vertical rod of 8m long and has a weight of 5 KN which was supported by a cable and a hinged (as shown). Find the tensile force of the cable holding the rod and the reactions of hinged to support the cylinder from sliding.The hoist supports an engine of weight W in kg. Determine the force the load creates in member DB and in member FB, which contains the hydraulic cylinder H. Given: X=2 m ; L=3 m ; W= 123 kg.