-2 m 3 m 2 m ww of D A
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Suppose that k = 190 N/m . (Figure 1)
Part A
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- Analysis this graph and explain the relationship between the friction factor and Reynolds numberWhich of the following is true about the relation of the Energy Grade Line (EGL) to the Hydraulic Grade Line (HGL) at a reservoir? O EGL is above the HGL O EGL is below the HGL O EGL is the same height as the HGL O Not enough information givenHere the problem.solve it fast.
- The thin-walled cantilever box beam shown in Fig. P.14.10 carries a vertically downward load of 100 kN at its free end. Calculate the principal strains at the point A which lies at the edge of the top cover of the beam at the built-in end. Take E=200000 N/mm² and v=0.3. Ans. ɛ1=9.33×10-4, ɛn=-2.87×10-4.In Figure Q3 (a) frame ABC is being used to support a small rocket engine that is being tested, and is rigidly mounted at A. The rocket engine exerts a force P=20 kN at point C as shown. (a) Present shear and moment diagrams for frame ABC as shown in Figure Q3 (a), highlighting all key values. (b) Calculate the vertical displacement at point C on the frame. The flexural stiffness of the section used for the frame is El=4x107 Nm². Neglect axial and shear deformations. (c) Figure Q3 (b) shows the same frame and loading with the addition of a truss of length 1.0m between C and D. Calculate the load in truss CD if its stiffness is EA=4×108 N.How do you determine the capacity of the reservoir? Explain theprocess for determining the capacity of the reservoir using mass curvemethod.
- An open rectangular tank is 4m long, 2m wide and 2m high kounted on a truck full of waterm Calculate the volume of water spilled out when the truck from the rest accelerated 2.45 m/s^2A Herschel-Bulkley fluid (density of 1300 kg/m3) is expected to be transported to another unit operation in a mass flow rate of 10000 kg/h. It has been identified that this fluid is having a consistence index of 5 Pa.snand a flow behavior index of 0.7. Given that the total traveling distance is 300 m with mechanical energy losses no more than 90 J/kg, determine the smallest possible diameter of the transport piping with a liquid yield stress of 25 Pa. To ease the calculation, you may assume the fiction factor is 0.01 for the first guessA pump operating at 1846 rpm delivers 154 gpm at 64 ft head. If the pump is operated at 2076 rpm, what is the corresponding head (ft)?
- Water is to be moved from one large reservoir to another at a higher elevation as indicated in figure shown The loss of available energy associated with 2.5 ft^3/s being pumped from sections 1 to 2 is 120 times of the velocity head. Determine the amount of shaft power required. Section (2) Bn inside diarmeter pipe 3D I 500 Section (1) Pump Select the correct response 1.14 hp 1.28 hp 1.07 hp 1.56 hpi need the answer quicklyWith a coefficient of friction 0019, what diameter of pipe is appropriate for a pipeline to carry 17 m'imin with a loss of head of 2m per km.
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