40kN/m E B Im 40 kN/m ↓ ↓ ↓ 4m D ↓ ↓ Im ☑ 3m √ 100 kN.m 90kN 2m 5m Note: Members BC and CD are rigidly connected; the hinge at C only isolates member CF
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a) find axial and shear force diagrams
b) find bending moment diagram
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Check out a sample Q&A here- P2 = 18.95 Psi T2 = 575 R W12 = 32.59 Btu Q12 = 0 BtuSelect all true statements regarding the effect of the steel moment arm, gamma, on normalized P-M interaction diagrams. a. As gamma increases, the column flexural strength capacity increases b. As gamma increases, the column flexural strength capacity decreases c. As gamma increases, the column axial strength capacity increases d. As gamma increases, the column axial strength capacity decreasesDetermine the width and thickness of the leaves (in mm) of a leaf spring using the following specifications: Total load = 140 kN; Number of springs supporting the load = 4; Maximum number of leaves = 10; Span of the spring = 1000 mm; Permissible deflection = 80 mm; Modulus of elasticity, E = 200 kN/mm2; and allowable stress in spring material is 600 MPa.
- Prob # 1.A round bar made from SAE 1025 low Carbon steel is to support a direct tension load of 50,000 lbs. Using a factor of safety of 4, and assuming that the stress concentration factor, k = 1, What is the suitable standard diameter. Yield stress is 40,000 psi. a. 3 ½ inch b. 2 ¼ inch c. 2 9/16 inch d. 1 ½ inchQuestion 2 A load of 1.8 kN is hoisted by means of a rope on a lifting machine with a rotational frequency of 40 revolutions per min, and a drum whose diameter is 600 mm. Calculate the following: a) The power required for the load. b) Efficiency of the lifting machine, if an electric motor of 8kW is required to drive the lifting machine.Determine the horizontal displacement of joint C. The length, L, of trusses AC, BC is 1,300 mm. The applied force at joint C, is 5.0 kN. The cross-sectional area of both trusses, A, is 360 mm2. The elastic modulus of truss AC, E1, is 135 GPa. The elastic modulus of truss BC, E2, is 150 GPa.
- The force-deflection relation of a steel helical spring used in an engine is found experimentally as F( x) = 200 x + 50 x2 + 10 x3, where the force (F) and deflection (x) are measured in pounds and inches, respectively. If the spring undergoes a steady deflection of 0.5 in. during the operation of the engine, determine the equivalent linear spring constant of the spring at its steady deflection.Calculate the maximum force P that can be applied in a phosphor bronze spring having mean diameter of 150 mm and consisting of 24 turns of 10-mm diameter wire when the spring is stretched 180mm. Use G = 42 GPa. Group of answer choices 233.11 N 113.33 N 116.667 N 225.56 NAn 8-in diameter piston is pushed inside a cylinder having an 8.005in diameter. The gap is filled with a lubricant (v= 0.003 ft²/s, SG = 0.80). If the piston is moving at 0.5 ft/ s, find the frictional resistance when there is an engagement of 10 ft. a. 324.54 Ib b. 227.98 Ib c. 216.78|b d. 236.46 Ib e. 331.12 lb
- Qsafe = 187.586 MJMechanical Engineering A helical compressionspring is to exert a force of 36 N when compressed to alength of45 mm.Further compressed to a length of 31 mm, the force must be 54 N.Thespring will be installed in a machine that cycles slowly,and approximately 200 000totalcycles are expected.Tempretaureis not expected to exceed 80 °C. It is planned to install thespring in a hole having a diameter of 19 mm. Use ASTM A23X series steel wire.For this application, specify wire diameter, mean diameter,outer diameter, innerdiameter, free length, solid length, number of coils and type of end condition.Checkthe stresses at the maximum operation load and at the solid lengthA 5.0m long steel wire has a cross-sectional area of 0.55cm^2. Its proportional limit has a value of 0.0018 times its Young's modulus. Its breaking stress has a value of 0.0065 times its Young's modulus. The wire is fastened at its upper end and hangs vertically. a. How great a weight can be hung from the wire without exceeding the proportional limit? b. How much will the wire stretch under this load? c. What is the maximum weight that the wire can support?