3 m A 2 m CA 2 m B 4 m -4m D
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- Compute the magnitude of the pin reaction at B. Neglect the weights of the structural members.Find the magnitude of the pin reaction at B caused by the weight W=80lb. Neglect the weights of the members.The bar ABC is supported by three identical, ideal springs. Note that the springs are always vertical because the collars to which they are attached are free to slide on the horizontal rail. Find the angle at equilibrium if W = kL. Neglect the weight of the bar.
- The mechanism of negligible weight supports the weight W. Find the value of for equilibrium. Is the equilibrium position stable or unstable?The cable supports three 400-lb loads as shown. If the maximum allowable tension in the cable is 900 lb, find the smallest possible sag hC at C.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.
- A boom hinged at the base of a vertical mast is used to lift a 2000 load. Find the tension in the cable and the reaction R 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. Show complete solution including FBD.Find the forces in bars AB, CD, ID, HG, HD. Use P as 82 KNQuestion 7 Find the value of The reaction force at the support A .
- Find the smallest value of Pfor which the 400-lb crate in the figure below will be in equilibrium in the position shown.A crane boom which weighs 200 lbs and which is 10 feet long is supported so that it makes an angle of 50° with the supporting wall and so that the rope makes an angle of 70° with the wall. If a load of 100 lbs is hung on the end of the boom, what tension occurs in the rope and what thrust does the support exert on the lower end of the boom? with formula, free body diagram and solution plsA uniform bar 3.00 m long is held by ropes at the ends making angle 60.0 and 30.0,respectively, with the horizontal. A weight of 200 N is hung 0.500 m from the leftend where the 60.0 rope is attached. Find the tension in the ropes (T1 & T2) andthe weight (W) of the bar