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- Two sphere, each 1.5m in diameter weighs 7KN and 20KN respectively. They are connected with a short rope and placed in oil (SG = 0.88). Determine the percentage of the volume of the lighter sphere protruding above the surface.Not a graded question, its a textbook problem The figure below represents a cylinder C i (d = 11 cm) that is inside a hollow cylinder (d = 11.1 cm). The inner cylinder, with a mass of 30 kg and a length of 25 cm (L), is subjected to a pressure P of 50 kPa at its bottom, rising at a constant speed of 2.5 m/s. a) Determine the dynamic viscosity of the lubricating oil that must be placed in the space between the piston and the cylinder; b) Determine the kinematic viscosity knowing that it consists of a mixture of 3 L of oil A (specific mass of 880 kg/m 3 ) and 2200 mL of oil B (specific mass of 940 kg/m 3 ). Data: g = 9.81 m/s 2Convert the following into S.I. units, show complete solution, Do not use conversion table in getting the direct equivalent of Psi, Psf, KPa, Pa, ft-lb, Etc. go for the basic and show the solution 1) 123kg/cm2 to KPa 2) 370 Psi to kg/cm2 3)60 ft-lb to KN-m
- Figure 2 shows an assembly made of a steel tube of internal and external diameter of 20 mm and 30 mm respectively, brass and copper bars, each having 25 mm of diameter. The three materials have equal length of 500 mm and are symmetrically rigidly fixed at the upper end while being joined by a horizontal collar (with negligible mass) at their bottom end. An application of a vertical downward load P on the assembly, results in storing a total of 20 J of energy. The moduli of elasticity for steel, brass and copper materials are ESt=200 GPa, EBr=100 GPa and ECu=80 GPa, respectively. Calculate 1. The load P if it is applied gradually.2. The load P if it is applied suddenly.3. The impact load P that falls from a height of 200 mm above the collar.A thin walled spherical tank is filled with water at a pressure of 4666 psig, the tank’svolume is then 805.407 in3. If the water is released from the tank, how many poundswill be collected at atmospheric pressure? Use 305 000 psi as an average value of bulkmodulus of elasticitytask in machine design Determine dimensions and materials for a flywheel that should be able to store energy. - The flywheel must store 30 MJ at a rotation speed of 5,000 rpm - The flywheel consists of a hub, a thin disc, and a solid ring. - The dimensions you have to decide are d1, d2, t and B - The design is shown in the sketch below which shows the wheel in cross section.
- Determine the change in volume of a thin cylinder of original volume 65.5 x 10- m3 and length 1.3 m if its wall thickness is 6 mm and the internal pressure 14 bar (1.4 MN/m2). For the cylinder material E = 210GN/mZ; v = 0.3A liquid has a volume of 1.3m^3 and weighs 1500kg Determine its unit weight (kN/m^3) Choices are: A. 6.90 B. 12.35 C. 9.87 D. 11.32An upside-down bowling pin is shown below. Assuming a uniform mass distribution within the pin, then Ix ________________ Iy (fill the space) a. = b. > c. < d. not enough information is given
- In Figure below, calculate Fx and Fy per unit width of the cylinderA 200-N weight is attached to a free end of a metallic wire that hangs from the ceiling. When a second 100-N weight is added to the wire, it stretches 3.0 mm. The diameter and the length of the wire are 1.0 mm and 2.0 m, respectively. What is Young's modulus of the metal used to manufacture the wire?An engineer, who is designing a water toy, is making preliminary calculations. A user of the product will apply a force F1 that moves a piston (D = 80 mm) at a speed of Vpiston = 300 mm/s. Water at 15 oC jets out of a converging nozzle of diameter d = 15 mm. To hold the toy stationary, the user applies a force F2 to the handle. Calculate F2. Neglect friction between the piston and the walls. Calculate F1. Neglect friction between the piston and the walls.