in the figure shown weighs 420N an Lion in the cable and the reactions at t 420N G cable
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A: Note: As per the policy, we can solve the first 3 subparts. Please resubmit the remaining parts.
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- The figure shows a three-pin arch. Determine the horizontal component of the pin reaction at A caused by the applied force P.The homogeneous 240-lb bar is supported by a rough horizontal surface at A, a smooth vertical surface at B, and the cable BC. Draw the FBD of the bar and count the unknowns.The 40-kghomogeneous disk is placed on a frictionless inclined surface and held in equilibrium by the horizontal force P and a couple C (C is not shown on the figure). Find P and C.
- The 350-lb homogeneous plate has the shape of an isosceles triangle. The plate is supported by a thrust hinge at A, a slider hinge at B, and the cable CD. Find the force in the cable and the magnitudes of the hinge reactions.The 180-lb homogeneous bar is supported by a ball-and-socket joint at A and two cables attached to B. Determine the forces in the cables.Two concrete blocks weighing 320 lb each form part of the retaining wall of a swimming pool. Will the blocks be in equilibrium when the pool is filled and the water exerts the line loading shown?
- The cylinder as shown below weighs 1000 N. It is supported by a rod with a cable at point B. Determine the following: a.) The Tension at Point B. b.) The Reaction at Point A.Two cylinders are being supported by the wires shown in the figure. Determine the following: 1.1 The tension developed in wire BC required for equilibrium of the 13.6-kg cylinder E and the 27.2-kg cylinder F is Blank 1 N. 1.2 The angle required for equilibrium of the 13.6-kg cylinder E and the 27.2-kg cylinder F is Blank 2°. 1.3 If cylinder E weighs 37 lb and = 12.8°, determine the weight of cylinder F.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.
- Given the figure below, determine the tension in the three cords (in kN) if the initial pull of the motor is 0.20 m/s, and is increased 0.50 m/s each added second.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 θ1 (Degree) = b) The value of θ2 (Degree) = c) The value of θ3 (Degree) = d) The value of Tension, T1 (N) = e) The value of Tension, T2 (N) =A loading car, as given in figure, is at rest on a track forming an angle of 25 with the vertical. The gross weight of the car and its load is 5500 lb. and it is applied at a point 30 in. from the track, halfway between the two axles. The car is held by a cable attached 24 in. from the track. Determine the tension in the cable and the reaction at each pair of wheels.