A manometer filled with liquid A is connected to a large reservoir of water as shown in the figure below. The density of liquid A is 3 times greater than that of water. Determine the ratio, hw/hд, of the distances hw, and hд indicated in the figure. T hw water Liquid A hA ThA
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- One side of the container has a 03-m square door that is hinged at its top edge. If the container is filled with water, determine the smallest force F that must be applied to the bottom edge of the door to keep it closed.Consider a U-tube manometer used to measure the density Pa of liquid A, as shown below. Mercury is used as the base liquid for the manometer with density Phg = 13600kg/m³. If hng = 5mm and ha = 22.4 mm, find Pa. ha Pa U Phg hngAs shown in the figure, an inclined manometer is used to measure the pressure of the gas within the reservoir. The manometer fluid is mercury, which has a density of 845 Ib/ft3. The manometer fluid rises a distance d = 12 inches along the manometer tube, which is inclined e = 20° from the horizontal. The atmospheric pressure is 14.7 Ibf/in? and the acceleration of gravity is 32.2 ft/s?. Patm = 14.7 Ibf/in.? Gas reservoir g = 32.2 ft/s? a 20 in. Mercury (p = 845 Ib/ft³) Determine the gas pressure, in Ibf/in?. Express the pressure as a gage or a vacuum pressure, as appropriate, in Ibf/in2.
- Determine the horizontal and vertical components of the liquid pressure acting on the semicylindrical gate ABC, as shown in the figure. The width into the paper is 1 m. 1 m Liquid ( s.g. = 0.88 ) 4 m B + 3.8 m 1 m what is the resultant force due to liquid acting on that gate 幸Q5 A U-tube manometer similar to that shown below is used to measure the gauge pressure of water (mass density p = 1000 kg /m3). If the density of mercury is 13.6 x 103 kg /m³, what will be the gauge pressure at A if h1 = 0.45 m and D is 0.7 m above BC. Wwater WmercuryGate AB is a square with a dimension of 3m. Wherein it is tilted with an angle of inclination of 60°. The gate is submerged with oil (sg=0.82) on its left side. From point A of the gate it measures 3m vertically. Determine the following: a) The force acting on the gate. b) the location of the force. *
- The pressure of the natural gas installation is as follows.As you can see, mercury (mercury), oil (oil) and water (water) fluidsIt is measured with a manometer. Open end of the manometer (X + 85)It is under the influence of kPa ambient pressure. The relative content of mercury and oil (relative to water)density (SG) and density of water (ρwater = 997 kg / m3) is known.Determine the absolute pressure in the installation (X=00)The flat surface shown is submerged vertically in water. Find the fluid force against the surface. The weight density of water is 9810 N/m³. 4 m Enter the exact answer. F = i 1m 3 m NA water pipe is connected to a double-U manometer as shown in the figure below. The dimensions of the system is displayed in the figure. The local atmospheric pressure is 14.7 psia. Determine the absolute pressure at the center of the water pipe. (The water density is ; The specific gravity (SG) of oil is 0.80; The SG 1000??/?3of mercury is 13.6.)
- A B с OIL WATER 1.0M 0.5m In the tank open to the atm. shown in the figure below, there is on oil layer 1 meter high on a 0.5 meter high water layer. Since pont & is in the Middle of paints A and C. calculate the pressures at points A, B, C, D in Kla. (Density of water 1000 kg/m³, density of oil 800 kg/m³)The relative densities of A and B liquids in the manometer in the figure are 1.25 and 0.5, respectively. The liquid around point a is water and the tank on the left is open to the atmosphere as shown in the figure. Accordingly, calculate the absolute pressure at point a in kPa.A closed glass tube (hydrometer) of long th Lond diometer D float in a tank filled with a liquid of unknown specific gravity (s) as shown in the figure. The glow of partly tube is partly filled with oir and partly with filled with a liquid of weight 3. Find the specific gravity of the fluid in tenk. when making your calculations the wall weight of the glass tube will be neglected. CODU Ass. Y. Ms L/3 L/3 L/3 ibin AIR HAVA SIV S.G.=3 LIQUID S=?