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Please solve quickly and show all your work, I will upvote immediately. Thank you! Water flows...
Water flows through the pipe as shown in the below figure. Determine the net tension in the bolts if minor losses are neglected and the wheels on which the pipe rests are frictionless. Please clearly show the steps of the trial & error method. Bolts 50 mm 10 m Cast Iron 20 m 30 m
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3) (15 points) Determine whether the set {0.0.0] is a basis for R or not? Justify your answer clearly.
4. Water flows through the pipe as shown with Bolts 80 mm the coefficient of friction between the wheels and the surface is μ = 0.3 . If the weight of the 20m horizontal pipe (roughness = 0.15 mm) is 200N with a diameter of 80mm (Neglect Minor Losses): 3.0 m Galvanized iron What is the velocity in the horizontal pipe and friction factor? 1. What is the fluid pressure at the location of the Bolts? 2. 3. Draw a...
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Q3. Water is transported from reservoir A to reservoir B by using two pipes connected in series. With the following characteristics: diameters, D1 = 300 mm, D2 = 400 mm, the lengths, L1 = 100 m, L2 = 400 m friction factor, fı = f2 =0.025, minor loss coefficients, K1 =0.5, K2= 3, K3 = 1, reservoir elevations, ZA= 2.5 m, ZB= 27.5 m. Determine the discharge if; a) Minor losses are ignored b)...
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Q2) Water flows steadily with negligible viscous effects through a pipe as shown in the figure below. If the pipe cross section area is 0.2 m2 and the difference in manometers level (h)-7 cm (0.07 m), find the flow rate in the pipe.
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The figure illustrates the nonpermanent connection of a steel cylinder head to a grade 30 cast-iron pressure vessel using N bolts. A confined gasket seal has an effective sealing diameter D. The cylinder stores gas at a maximum pressure Pg For the specifications given in the table for the specific problem assigned, select a suitable bolt length, assuming bolts are available in increments of 5 mm. Then...
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Please neatly set your calculations/tables and show all necessary steps. Thanks in advance. Use the Hardy-Cross Method to analyse the system. Determine the flows in all pipes and residual heads at the various nodes for the node draw-offs given in Figure 1. Use the Hazen- Williams friction formula and assume a friction factor C of 110 for all pipes. The minimum pipe size is 100 mm...
Please show all steps. Thank you A 1.0-cm-diameter pipe widens to 2.0 cm, then narrows to 5.0 mm. Liquid flows through the first segment at a speed of 7.0 m/s . A) What is the speed in the second segment? b) What is the speed in the third segment? C) What is the volume flow rate through the pipe?
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Viscous losses in a pipe are expressed in terms of a friction factor, f. It is important to know the frictional forces in pipe flow because they result in pressure loss which must be accounted for in the piping system. For turbulent low in pipes, the friction factor is caleulated using the Colebrook e/D 2.51 where e is the roughness height, D is the pipe diameter...
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The figure illustrates the nonpermanent connection of a steel cylinder head to a grade 30 cast-iron pressure vessel using N bolts. A confined gasket seal has an effective sealing diameter D. The cylinder stores gas at a maximum pressure Pg For the specifications given in the table for the specific problem assigned, select a suitable bolt length, assuming bolts are available in increments of 5 mm. Then determine...