QI/ An iron block of mass 30 kg is hanging from the two supports A and B as shown in the diagram. Determine the tensions in both the ropes.by using Lami's Theorem 45/ 30 30 kg
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- 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.Determine the tensions in the cables. Use gravity g = 9.81 m/s squared. Look for tensions AC, BC, and CDDetermine the tensions T1 and T2 in the strings required to maintain equilibrium for the suspended object weighs W = 38.7N shown in the figure. Take, α = 29.8° & β = 50.2°. The value of Tension, T1 (N) = The value of Tension, T2 (N) =
- ابحثوا بالملفات Q1 :Determine the tensions T₁ and T₂ in the ropes AB and CD as shown in the below Figure that were used to support a machine component has long 3 m and weight 2500 N, then discuss your results.A boom hinged at the base of a vertical mast is used to lift a 2000 lb load. Find the tension in the cable and the reaction R at the end of the boom. The angle of the boom is 40 degrees with the horizontal and the cable is 60 degrees with the vertical mast. Pls include given, formula, fbd, and solution.Determine the force in the cable OC and the elongation of the spring OA, OB necessary to support a box of mass (M) 400 kg as shown in the figure below. If a = 4 m, b = 5 m, c = 3 m, k1= 5000 N/mm and k2= 4000 N/mm. NB: All calculation must be in Newton (N) and please include FBD
- The jib crane is fixed at (A) and carry a box of ( 2500 kg ) mass, as shown in the figure. Determine the reactions on the jib crane at point ( A ). 60 5 m 7 mA woman who weighs 4.92E+2 N is leaning against a smooth vertical wall, as the drawing below shows. As shown, h1 = 1.19 m, h2 = 0.420 m and θ = 59.5°. Calculate the force FN (directed perpendicular to the wall) exerted on her shoulders by the wall.*Show clearly all pertinent solutions and state the assumptions made, if any. Alie Abdul is nearing completion in assembling the giant robot doll. He needs to exert a 408.75N force on the pulley cable to lift the doll robot’s head (50kg) to attach to its body. Note: robot head’s weight is acting in the z- direction. a. Draw the FBD of the robot’s head. b.Determine the tensions in the four cables. Assume pulley E is frictionless.
- Determine the tensions T1 and T2 in the strings required to maintain equilibrium for the suspended object weighs W = 48.7N shown in the figure. Take, α = 29.4° & β = 47.5°. a) The value of Tension, T1 (N) = b) The value of Tension, T2 (N) =The homogeneous AB beam weighs 400 lbs. For each support condition in (a) a (d), plot the DCL of the beam and determine the number of unknowns.Determine the force in the cable OC and the elongation of the spring OA, OB necessary to support a box of mass (M) 400 kg as shown in the figure below. If a = 4 m, b = 5 m, c = 3 m, k1= 5000 N/mm and k2= 4000 N/mm. All calculation using equilibrium of particles equation and must be in Newton (N) and with FBD