T₂ T₁ T₂ 0 A system of three cables supports a 256.0.-N barrel as shown. If 8 - 30.0° find the tensions T3 in N.
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- Consider the figure below. (a) Find the tension in each cable supporting the 604-N cat burglar. (Assume the angle 0 of the inclined cable is 31.0°.) inclined cable horizontal cable vertical cable (h Suppose the horizontal cable were reattached higher up on the wall. Would the tension in the inclined cable increase, decrease, or stay the same? O increase O decrease O stay the same NNNThe crate has a weight of 3.15 kN. Determine the tension in supporting cable AB and AC.A force of 39 lb is required to hold a 62 lb toolbox on an incline. What angle does the incline make with the horizontal? O A. 39.0° OB. 71.7° OC. 51.0° O D. 18.3°
- The pulley system holding a crate of unknown weight is at equilibrium. Cord BD can support a maximum load of FBD = 1860 N. www D 01 A B a. Determine the maximum weight of the crate, W. b. Determine the angle 0₁. Round your final answers to 3 significant digits/figures. ) N W = 0₁ = 12 5 13 degreesThe leg and cast in the figure weigh 220 N (w1). Determine the weight wz and the angle alpha needed so that no force is exerted on the hip joint by the leg plus the cast. 110 NConsider the figure below. (a) Find the tension in each cable supporting the 640-N cat burglar. (Assume the angle 0 of the inclined cable is 31.0°.) inclined cable horizontal cable N vertical cable (b) Suppose the horizontal cable were reattached higher up on the wall. Would the tension in the inclined cable increase, decrease, or stay the same? O increase decrease O stay the same
- Two cables are tied together at Cand are loaded as shownin Figure -03. Determine the tension (a) in cable AC, (b) in cable BC.The pulley and all surfaces are frictionless. Suppose both blocks are made of solid gold. In addition, each block has a mass of 2.38 kg. Find the tension (in N) in the connecting the two gold blocks. Round your answer to 2 decimal places.A carpenter holds a 17-lb 2-in. by 4-in. board as shown. If he exerts vertical forces on the board, determine the forces at A and B (use positive if the force is up and negative if down). A Answers: NA = NB = i i 3' -17 34 B 9¹ ! lb ! lb