Determine the magnitude of the pin reactions at B and C if W = 2400 lb. %3D
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A: Given Data :
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- For Probs. 4.61–4.68, (a) draw the free-body diagrams for the entire assembly (or structure) and each of its parts. Neglect friction and the weights of the members unless specified otherwise. Be sure to indicate all relevant dimensions. For each problem, (b) determine the total number of unknown forces and the total number of independent equilibrium equations.The 50 N homogeneous bar AB is suspended from a rope that runs over a small peg at C. The bar is kept in the position shown by the horizontal force P. Determine the smallest coefficient of static friction at C for which the bar will be at rest.A 150-lb block rests on a horizontal floor. The coefficient of friction between the block and the floor is 0.30. A pull of 40 lb, acting upward at an angle of 30° to the horizontal, is applied to the block. Determine whether or not the block will slide. - Draw Free-body diagram - Solve most simple way - use the formula Fmax= Ms (N)
- In the vise shown in the figure, the screw is single-threaded in the upper member; it passes through the lower member and is held by a frictionless washer. The pitch of the screw is 3 mm, its mean radius is 12 mm, and the coefficient of static friction is 0.15. Determine the magnitude P of the forces exerted by the jaws when M = 74-N·m couple is applied to the screw. The value of magnitude P is kN. Note: please show correct step by step working out!. And double check the final answer. Thanks.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 degreesAB and BC bars which are connected at pin B, each having a mass of 100 kg, as shown in the figure. If the coefficient static friction at piont C is 0.5 , determine the maximum value of force P for the system to be in static equilibrium.
- In the figure, the radius of cylinder A is 4m, cylinder B is 6m and cylinder C is 5m. Neglecting friction, a) solve For the reaction between A and B, b) reaction between the wall and B c) reaction between the Floor and A. Given: Distance between 15 KN and 40 KN load is 8m.A shaft, lever, and handle, welded together, with a combined mass of 20 kg acting at point G, supported by a thin link, CD, and two journal bearings, A and B. (Draw a single FBD for the combined rigid body shaft + lever + handle.)A uniform rod AB of mass 40 kg and length 10m rests with the end A on rough horizontal ground. The rod rests against a smooth peg C where AC = 8m. The rod is in limiting equilibrium at an angle of 15° to the horizontal. Please show working out Find:a) the magnitude of the reaction at Cb) the coefficient of friction between the rod and the ground.
- A portion of the shifter mechanism for a manual car transmission is shown in the figure. For the 8.7-N force exerted on the shift knob, determine the corresponding force P exerted by the shift link BC on the transmission (not shown). Neglect friction in the ball-and-socket joint at O, in the joint at B, and in the slip tube near support D. Note that a soft rubber bushing at D allows the slip tube to self-align with link.A safety device used by workers climbing ladders fixed to high structuresconsists of a rail attached to the ladder and asleeve that can slide on theflange of the rail. A chain connects the worker’s belt to the end of aneccentric cam that can be rotated about an axle attached to the sleeve at C.Determine the smallest allowable common value of the coefficient ofstatic friction between the flange of the rail, the pins at A and B, and theeccentric cam if the sleeve is not to slide down when the chain is pulledvertically downward.Write the equations of equilibrium for AB and BC section of the shaft in terms of T with the help of free body diagrams