Water flows steadily from a nozzle into a large tank as shown in the figure below. The water then flows from the tank as a jet of diameter d. Determine the value of d if the water level in the tank remains constant. Viscous effects are negligible. d= ft 3 ft 0.093-ft diameter 1 ft 4 ft 0.15-ft diameter
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- A differential U-tube manometer is used to measure the change in pressure between two points in a pipe line that carries water. The gauge fluid is mercury of relative density 13.6. Calculate the difference in pressure between points A and B if x = 0.25 m, and y = 0.35 m. Take the density of water (Pw= 1000 kg/m³) Pi P₂ 4 A B y Pa J Pi>P2 0The tank is filled with water and kerosene to the depths shown in (Figure 1). The tank has a width of 3.0 m Take p = 1000 kg/m³, p = 814 kg/m³. Figure A 60° 3 m B 1 of 1 1 m Part A Determine the total resultant force the liquids exert on side AB of the tank. Express your answer to three significant figures and include the appropriate units. FR = μA xa Xb Value a b Provide Feedback Units X. 10m Submit Previous Answers Request Answer X X Incorrect; Try Again; 5 attempts remaining ? www Next >Water flows steadily from a nozzle into a large tank as shown in the figure below. The water then flows from the tank as a jet of diameter d. Determine the value of d if the water level in the tank remains constant. Viscous effects are negligible. 3 ft d = 0.13-ft diameter ↓ 1 ft ft 4 ft 0.15-ft
- Container has some fluid as shown in figure if container is moving with uniform velocity 10 m/s, then the gauge pressure at point 'B' is kPa. (Pabs (P. = 100 kPa) atm 8 m at A = 130 kPa) 14 4 m A 5 m 'Unit width' 10 m/s XA force of 450 N is exerted on lever AB as shown in the figure. End B is connected to a piston which fits into a cylinder having a diameter of 60 mm. What force FD acts on the larger piston, if the volume between C and D is filled with water? Please provide complete explanation in every solution. Thank you.Consider oil flowing through a horizontal pipe at a rate of 3 liter/s. There are two sections of the pipe with diameters 10 cm and 7 cm and the two sections are connected by a smooth reducing section as shown in the schematic. We use a manometer with glycerin as the manometer fluid (with glycerin density of Pglycerin 1,260 kg/m³) to measure the pressure difference between the two pipe sections. Assume that frictional effects are negligible and consider specific gravity of oil as SGoil = 0.76. What is the manometer reading, h (i.e. differential height of glycerin between the two arms of the manometer)? 10 cm I h 7 cm-
- The Newtonian fluid shown in is confined between the plate and a fixed surface as shown in (Figure 1). Its velocity profile is defined by u = (8y-0.3y2) mm/s, where y is in mm. The plate has a surface area of 29(10³) mm² in contact with the fluid. Take μ = 0.482 N. s/m². Suppose that h = 6 mm. Figure h < 1 of 1 Part A Determine the force P that must be applied to the plate to cause this motion. Express your answer to three significant figures and include the appropriate units. xa P= 67.1 μA Xb a b X.10n < Return to Assignment mN Submit Previous Answers Request Answer X Incorrect; Try Again; 2 attempts remaining ? Provide Feedback1. The figure shows a tank discharging through a pipe with a nozzle at its end. Find the discharge and the pressure at the base of the nozzle. Losses are: Tank to the base of nozzle is 5(V1)²/2g and through the nozzle is 0.05(V2)²/2g. (V is the velocity in the pipe and Vz is the velocity at the tip of the nozzle) Water D= 150mm! V Dz= 50mmA piston with a diameter of 15 cm was placed in a cylinder connected to a 1.27 cm inclined tube manometer as shown in the figure. Inside of cylinder and manometer unit weight 9270 N / m3 is filled with an oil. When the weight W is placed on the upper part of the cylinder, the liquid height in the manometer rises from (1) to (2). Piston Find the W weight ignoring the change in position 15cm Piston OIL 30°
- A tank ABCDEF shown in given figure is filled with water. A small opening at E keeps the pressure at E atmospheric. (a) Calculate the acceleration a, required to cause onset of cavitation at A. (b) What will be the pressures at that acceleration at points B, C, D and F? [Assume local atmospheric pressure head 10.0 m of water and vapour pressure head = 0.5 m (abs) of water] 1.2 m Opening E a, 5.0 m 1.5 m 2.3 m A + 0.8 m B 6.2 mIn the figure below, a fluid with a specific gravity of 0.77 is flowing. The mass flow rate is recorder to be 18.5 kg/s and the pressure gage at point 1 is 175 kPag. Point 2 is right after the nozzle. The diameter of the nozzle is 4.87 cm. Note that the angle shown is 35 degrees. Determine the flow rate in m^3/s 13.5m p 175 kPag 7.73 cm-Water flows steadily from a nozzle into a large tank as shown below. The water then flows from the tank as a jet of diameter d. (a) Using the piezometer tube shown, determine the flow rate through the nozzle. (b) Using the flow rate determine the value d if the water in the tank remains constant. Viscous effects are negligible.