An air tank has three manometers connected to it. The fluids in them oil (Specific are gravity 0.8), water and mercury (Specific %3| gravity = 13.6). If the absolute pressure in the tank is 1.2 bar and barometer reads 760 mm of Hg. Estimate the height of fluid in each of manometer.
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- The gauge pressure in a balloon in measured by means of an open-tube manometer that uses water (density = 1.00 x 10° kg/m'). What gauge pressure p is indicated by a difference of 0.0151 m in the heights of the water columns? PaA liquid-filled tube called a manometer can be used to measure the pressure inside a container by comparing it to the atmospheric pressure and measuring the height of the liquid. Such a device (filled with water) is shown in the figure, measuring the pressure inside a balloon filled with an unknown gas. The water level on the side of the manometer which is open to the air is 22.3 cm higher than on the side connected to the balloon. a) Find the gauge pressure in the balloon, in units of Pa. Recall the density of water is 1000 kg/m3. b) Find the absolute pressure in the balloon, in units of Pa.A container of cross-sectional area 107 cm2 contains liquid of density 1.75 g/cm3 to a height of 6.80 cm above a small hole of area 1.00 cm2 in the side. (a) Find the speed of the fluid as it leaves the hole.(b) Find the flow rate through the hole.
- An oil tank is shaped like a right circular cylinder of diameter 4 ft. Find the total fluid force against one end when the axis is horizontal and the tank is half filled with oil of weight density 50 lb/ft³.A nozzle of inner radius 4.00 mm is connected to a hose of inner radius 12.00 mm. The nozzle shoots out water moving at 25.0 m/s. Determine velocity of the water in the hose moving?4.0 mm 16. Consider the following diagram. (let air be an ideal, incompressible fluid) 2.0 cm 1200 cm'/s a. If the air is found to have a flow rate of 1200 cm3/s as it leaves the 4.00 mm diameter pipe, what is the velocity of the air in both segments of the pipe? b. If the density of air is 1.28 kg/m3 and the end of the pipe on the right opens up to the atmosphere, what is the pressure of the pipe at the 2.00 cm diameter section? C. If the fluid in the bottom of the U-tube is mercury with a density of 13,600 kg/m3 what is the difference between the surface levels of both sides of the tube, marked as h in the diagram?
- QUESTION 2 The height difference is 760 mm, and the gauge pressure is 5,218.92 Pa. Find the density of the liquid inside the manometer. Note: Air pressure = 101, 325 Pa Po = Pa (h) Pressure p T y2 p+ pgyi `Pa + pgy2 O 0.70 kg/m O 106, 543 kg/m3 O 700 kgim O 13, 590 kg/m3A) A large, open at the top, upright cylindrical tank contains a brine with a density of 1.23 ✕ 103 kg/m3. If the air pressure is 101.3 kPa, determine the absolute pressure (in Pa) in the fluid at a depth of 28.0 m. B) Determine the force (in N) exerted by only the fluid on the window of an instrument probe at this depth if the window is circular and has a diameter of 4.15 cm.A beaker is filled with an unknown liquid up to a depth of 10.00cm . The gauge pressure at the bottom of the beaker is measured to be 1540.00Pa . What is the density of the liquid contained in the beaker?
- Use dimension analysis to determine the drag force, F, on a sphere moving through a fluid, in terms of the radius of the sphere, r, the velocity of the sphere, v and the viscosity of the fluid, µ. A. F = krv¬1µ¯1 B. F = kr-1v-1µ C. F = krvµ D. F = krv-'µ %3DWater flowing out of a horizontal pipe emerges through a nozzle. The radius of the pipe is 1.6 cm, and the radius of the nozzle is 0.67 cm. The speed of the water in the pipe is 0.58 m/s. Treat the water as an ideal fluid, and determine the absolute pressure of the water in the pipe. P₁ = JakaThe pressure difference between an oil tube and a water tube is measured with a dual fluid manometer, as shown in the figure. For specific heights and gravities given of the fluids. Calculate (PB - PA)