Determine the internal resisting forces and moment trans- mitted by section aa in 1450 N 60° B 240 mm A 250 N 160 300 140 mm mm mm
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A: The free-body diagram of the problem will be as follows,
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Q: 1 A 150-N pull T is applied to a cord, which is wound securely around the inner hub of the drum.…
A: As per given Force =150 N r1=0.125m r2=0.2m We have determine moment T and angle
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Q: 2/37 A 150-N pull T is applied to a cord, which is wound securely around the inner hub of the drum.…
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Q: Determine the internal forces and bending moment at point C. Express these based on the sign…
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- Determine the nominal resisting moment capacity (Mn)for a W 27 × 94 for the following unbraced lengths: (1) 5 ft, (2) 15 ft, and(3) 30 ft.(a) Determine the internal shear force and bending moment in member BCDE immediatelyto the left and to the right of pt. D. (b) Determine the internal shear force and bending momentin member AC at mid-length between pts. A & C.Provide FBDs to illustrate the direction of each internal force.Solve Prob. 7.29 if =0.
- The W24 * 104 A-36 steel beam is used to support the uniform distributed load and a concentrated force which is applied at its end. If the force acts at an angle with the vertical as shown, determine the horizontal and vertical displacement at A.The bar has a thickness of 1 in. and the allowable bending stress is sallow= 30 ksi. Determine the maximum moment M that can be applied.Determine the internal normal force, shear force, and bending moment at points D and E of the bell crank that is pinned at A and supported by a short link BC.
- The three-bar truss in Fig. a is subjected to a horizontal force of 5 kip. If the cross-sectional area of each member is 0.20 in2, determine the horizontal displacement at point B. E = 29(103) ksi.The piston of an automobile engine is held to the connecting rod by a wrist pin having an external diameter of 20 mm and internal diameter of 11 mm. The length of the bearing in the rod end is 25 mm and the bearing in each boss of the piston is 15 mm. The maximum load transmitted is 14.50 kN. (a) Determine the bearing pressure between the rod end and the wrist pin. (b) Compare the maximum bending stress in the pin, assuming that it is a simple beam with a uniform load. Please solve completely ?The beam safely supports shear forces and bending moments of 2kN and 6.5 kN-m respectively. Based on this criterion, can it be safely subjected to the loads F = 1kN and C = 1.6 kN-m? Use the area method
- Determine the smallest allowable diameter of the shaft which is subjected to the concentrated forces. The journal bearing at A and B only support vertical forces. The allowable bending stress is σallow= 160 MPa F1= 10kN F2=18kN L1=500 mm L2= 400mm L3=590mmAn A-36 steel strap having a thickness of 10 mm and a width of 20 mm is bent into a circular arc of radius r = 10 m. Determine the maximum bending stress in the strap.Determine the maximum bending stress in the handle of the cable cutter at section a–a. A force of 45 lb is applied to the handles.