4 ft 75 lb/ft D B E -2 ft. -2 ft- 1 ft '1 ft 1 ft 30° 150 lb
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Determine the resultant loadings acting on the cross sections at points D and E of the frame.
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- Problem 3 Compute the moment about point D.k = 2.5 lb/ft 5 G 0.85 4 ftThe figure below is the basic plot of pressure vs. volume for the Dual Standard Cycle. Constant pressure heat addition 3 4 PV = constant %3D Heat IN Adiabatic expansion 2 Heat OUT (Constant volume heat rejection) Constant volume heat addition 1 Adiabatic compression Volume (V) Using the Dual Air Standard Cycle and the following data: • Assume constant properties of air. R= 287 J/kgK; Cp = 1005 J/kgK; Cv = 718 J/kgK; y = 1.4 • Cycle compression ratio = 14 (V1/v2) • Air conditions prior to compression: Pressure = 1.3 bar; Temperature = 293K • Heat added at constant volume = 280000 J/kg • Heat added at constant pressure = 662000 J/kg Pressure (P)
- Show complete solutions and figures The diameters of the two cylinders A and B in the figure shown are 80 mm and 750 mm, respectively. The face of the piston is 1.2 m above the face of the weight platform. The space in between the piston and the weight is filled with oil (s.g.=0.80). If F=75 N, Determine the following: the value of Wrequired to maintain equilibrium. a) 38.6 N b) 86.3 N c) 63.8N d) 83.6 N e) None(A) Determine the reactions at supports including the forces in the internal hinges (if any). Show all free-body diagrams.If FB 560 N and Fc = 700 N, determine the magnitude and coordinate direction angles of the resultant force acting on the flag pole.
- Build in SolidworksThe figure below illustrates a hydraulic jack.a) Calculate the force F1 exerted by the operator to lift a load F2 of 104N, knowing that the diameter of the pump piston is 6 mm while the diameter of the load cylinder is equal to 25 mm. Answer: 576 N b) Determine the diameter of the load cylinder so that the force F1 is equal to 100 N. Answer: 0.06m4)
- 4. The sign is subjected to the uniform wind loading. Determine the stress components on the supporting post (r = 50 mm) at points a) A and B b) C and D.A 3.00 m long, 8.0 kg pole is attached to a wall by a hinge on its left side. A cable attached to the right end of the pole holds it horizontal. The cable attaches at a 55.0° angle. A 10.0 kg box hangs from the pole at a point 1.25 m from the right end of the pole. (see diagram) hinge. 55° 1,25m a) Write out the sum of the forces and sum of the torques equations. b) What will be the Tension on the cable? 10k₂ c) What will be the magnitude and direction of the force on the hinge?Support reactions? Kindly don't copy ,Solve it quick and clearly.
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