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.As 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.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 hng
- Very small pressure differences p A -p B can be measuredaccurately by the two-fluid differential manometerin Fig. . Density ρ 2 is only slightly larger than thatof the upper fluid ρ 1 . Derive an expression for the proportionalitybetween h and p A - p B if the reservoirs arevery large.A manometer consists of two tubes A and B, with verticalaxes and uniform cross-sectional areas 500 mm2and 800 mm2respectively, connected by a U-tube C of cross-sectional area70 mm2throughout. Tube A contains a liquid of relative density0.8; tube B contains one of relative density 0.9. The surfaceof separation between the two liquids is in the vertical side of Cconnected to tube A. What additional pressure, applied to thetube B, would cause the surface of separation to rise 60 mm inthe tube C?In the figure, fluid 2 is carbon tetrachloride(1.589) and fluid 1 is benzene (SG = 0.877). If the atmospheric pressure is 101.5 kPa, determine the absolute pressure at point A. Patm fluid 1 35cm 12 cm fluid 2 Fig. 2-26 Do not write the unit. You will only input the numerical answer in the space provided. Unit of the Correct Answer: kPa abs
- A 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.)Check the pressure difference between A and B of the manometer given in the figure. calculation?( h1 = 20 cm, h2 = 25 cm, h3 = 35 cm, h4 = 40 cm, h5 = 35 cm )( ρ1 = 1000 kg/m3, ρ2 = 13600 kg/m3, ρ3 = 950 kg/m3, ρhava = 1.2 kg/m3 )consider the figure shown. Determine the pressure at point A if the tank contains a liquid with specific gravity of 0.957 and if the mercury from point D to E in the manometer has density of 13,550 kg/m^3. Report final answer in Pascal (Pa). Use specific weight of water as 9.81 kN/m^3
- The water in a tank is pressurized by air, and the pressure is measured by a multifluid manometer as shown to the right. Determine the gage pressure of air in the tank if h1 = 0.2 m, h2 = 0.25 m, and h3 = 0.7 m. The specific gravity of the oil is 0.85.The inverted U-tube manometer of Fig. contains oil (SG 0.9) and water as shown. Find The pressure differential between pipes A and B. If a =1.5 m , h= 90 cm and b=2 m.Please answer both. I have last count left. thank you