3 Knowing that for the extruded beam shown the allowable stress is 120 MPa in tension and 149 MPa in compression, determine the largest couple M that can be applied. 10 points 80 mm- 40 mm 54 mm The largest couple M that can be applied is 8.5824 KN-m.
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- The beam is supporting a distributed load of w=660 lb/ft. Determine the magnitudes of the resultant internal loadings acting on section b–b through the centroid C on the beam. Show all work and any FBDs that apply.A triangular block shown is subjected to the loads S = 1000 lb and T = 2000 lbs. If AB = 8 in and BC = 6 in, resolve each load into components normal and tangential to AC.The cable of the suspension bridge spans L=140m with a sag H=20m. The cable supports a uniformly distributed load of w0 N/m along the horizontal. If the maximum allowable force in the cable is 4 MN, determine the largest permissible value of w0.
- The beam shown is made of a nylon for which the allowable stress is 24 MPa in tension and 30 MPa in compression. Determine the largest couple M that can be applied to the beam. Solve Prob. 4.16, assuming that d = 40 mm. For Problem 4.17, flip the T cross section upside down. Do not reverse the way thecoupleis applied.(a) Determinethe largest coupleMthat can be applied. (b) Determine the largest compressive stress. (c) Determine the largesttensile stress. (d)Replace this beam by another that isrectangularwith the same total area,supportcanhave thesame maximum coupleM.Make acentrally locatedcircular extrusion of diameter:(d1)Determinethe diameter ofthis circle.(d2)Determinethe lengthsof the sidesof thisrectangleFor the steel truss and loading shown, determine the magnitude of the force (lb) of member BE, knowing that x = 12.2 ft, y = 7.8 ft, and P = 28550 lb. Round off only on the final answer expressed in 3 decimal places .Two solid cylindrical rods AB and BC are welded together at B and loaded as shown. Determine the magnitude of the force P (in lb) for which the tensile stress in rod AB is thrice the magnitude of the compressive stress in rod BC if Q = 29.13 lb. Express your answer in three decimal places.
- Determine (a) the compressive force in the bars shown after a temperature rise of 96oC, (b) the corresponding change in length of the bronze bar.For the clevis connection shown, the shear stress in the 0.577-in.-diameter bolt must be limited to 22 ksi. Determine the maximum load P that may be applied to the connection.Determine the total deformation of the circular bar when subjected to the system of loads shown. The load qo = 2P / L
- The beam shown is made of a nylon for which the allowable stress is 24 MPa in tension and 30 MPa in compression. Determine the largest couple M that can be applied to the beam.Two solid cylindrical rods AB and BC are welded together at B and loaded as shown. Determine the magnitude of the force P for which the tensile stress in rod AB is twice the magnitude as the compressive stress in rod BC.Determine the loads acting on pins A and D of the frame shown. On the other hand, if the pin at B can withstand a maximum shear force of 800 lb, determine the maximum distributed load that can be applied to member AB.