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- 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 absolute pressure in the tank is found to be 1.206 bar. In the measurement of this pressure a U-tube manometer was used. The difference in level was found to be 72,5 cm. The barometric pressure was 72 cm of Determine the specific weight of the liquid used in the manometer. A standard atmospheric pressure = 1.01325 bar.Both a gage and a manometer are attached to a gas tank to measure its pressure. If the reading on the pressure gage is 80 kPa, determine the distance between the two fluid levels of the manometer if the fluid is: a. Mercury (S.G. = 13.6) b. Sea water (S.G. = 1.06
- 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 WmercuryQ2. a. Gauge (G) and mercury manometric (MM) tensiometers was were installed at 30 and 100cm respectively below the soil surface. The distance from the gauge to center of the ceramic cup is 50cm and from the mercury level in the reservoir to soil surface is 30 cm. Reading for the G. tensoimeter was - 61kP(kilopascals) and for the height of the mercury level in the MM tensiometer was -55KP Answer the following: 1. calculate the matric potential of the GT and MMT 2. Find the total potential of GT and MMT 3. indicate the flow direction between the two tensiometer.Q.- Two water tanks are connected to each other through a mercury manometer with inclined tube as shown in Fig. If the pressure difference between the two tanks of (P.- P, 20 kPa), determine the parameters a and 0. Water 26.8 cm 2a Water Stercuy
- ASAP dont round off initial values, round off final ans only pls ty The pressure at a point in the seawater is 99 kPa, determine the pressure in kPa 48.13 meters below this point?Both a gage and a manometer are attached to a gas tank to measure its pressure. If the reading on the pressure gage is 65 kPa, determine the distance between the two fluid levels of the manometer if the fluid is (a) mercury SG = 13.6or (b) water P = 65 kPa Gas h = ?Q1// A differential manometer is connected to two pipes as shown in Figure. The pipe A is containing carbon tetrachloride sp.gr. = 0.8 and the pipe B is contain an oil of sp.gr. = 1.594. Find the difference of mercury level if the pressure difference in the two pipes be 0.1 kg/cm2 PA 2.5m PB Pa Pb P₂ 1m Pm mercury
- Both a gage and a manometer are attached to a gas tank to measure its pressure. If the reading on the pressure gage is 80 kPa, determine the distance between the 2 fluid levels of the manometer if the fluid is a) Mercury (p = 13,600 kg/m3) Answer: h = 0.60 m b) Water (p = 1,000 kg/m³) Answer: h = 8.16 m P= 80 kPa Gas h= ? 1-63Determine the pressure difference between points C and D. Take the specific weights to be Benzene: 8640 N/m?, Mercury:133100 N/m? Kerosene: 7885 N/m³, Water: 9790 N/m², Air: 12 N/m³. Water Benzene, Air D C 50 cm 19 cm 30 cm 18 cm 24 cm ст Mercury- Kerosine (answer) PaDetermine the pressure difference between the inside and outside of the 0.1 mm diameter air bublle in a liquid if the surface tension at the air-liquid interface is 0.075 N/m. Express your answer in 3 decimal places and in kPa. Kindly place a clear solution and the correct answer, following the required decimal places. :)