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(a) A large, open at the top, upright cylindrical tank contains a brine with a density...
(a) A large, open at the top, upright cylindrical tank contains fuel oil with a density of 0.890 x 103 kg/m². If the air pressure is 101.3 kPa, determine the absolute pressure (in Pa) in the fluid at a depth of 32.5 m. 283465x The absolute pressure at any point in the fluid is the sum of atmospheric pressure and the pressure due to the depth of the fluid. Did you remember to account for atmospheric pressure? Pa (b) Determine...
The figure shows a cylindrical tank of 80 em in diameter which is fully filled with water. In order to increase the flow from the tank to the exit pipe on the left, an additional pressure is applied to the water surface by an air compressor to supply air to the upper air chamber of the tank. The external walls of the tank are exposed to the atmospheric conditions of the area. You are required to determine the hydrostatic conditions...
A large cylindrical tank contains 0.720 m3 of nitrogen gas at 27.0 ∘C and 8350 Pa (absolute pressure). The tank has a tight-fitting piston that allows the volume to be changed.What will be the pressure if the volume is decreased to 0.460 m3 and the temperature is increased to 155 ∘C? My answers have been coming up wrong so I need help with this one
(a) Calculate the absolute pressure at an ocean depth of 150 m. Assume the density of sea water is 1 022 kg/m3 and the air above exerts a pressure of 101.3 kPa?? Pa (b) At this depth, what is the buoyant force on a spherical submarine having a diameter of 4.80 m? N
You are assigned the design of a cylindrical, pressurized water tank for a future colony on Mars, where the acceleration due to gravity is 3.71 meters per second per second. The pressure at the surface of the water will be 105 kPa , and the depth of the water will be 14.1 m . The pressure of the air in the building outside the tank will be 88.0 kPa . Find the net downward force on the tank's flat bottom,...
You are assigned the design of a cylindrical, pressurized water tank for a future colony on Mars, where the acceleration due to gravity is 3.71 m/s2. The pressure at the surface of the water will be 150 kPa , and the depth of the water will be 14.1 m . The pressure of the air outside the tank, which is elevated above the ground, will be 91.0 kPa . Find the net downward force on the tank's flat bottom, of...
You are assigned the design of a cylindrical, pressurized water tank for a future colony on Mars, where the acceleration due to gravity is 3.71 m/s2. The pressure at the surface of the water will be 145 kPa , and the depth of the water will be 14.4 m . The pressure of the air outside the tank, which is elevated above the ground, will be 95.0 kPa . A) Find the net downward force on the tank's flat bottom,...
An open tank has a vertical partition and on one side contains gasoline with a density p-580 kg/m at a depth of 4.6 m, as shown in the figure below. A rectangular gate that is 4.6 m high and 2 m wide and hinged at one end is located in the partition. Water is slowly added to the empty side of the tank. At what depth, h, will the gate start to open? Assumeh 46 m. Partition Concepts: The pressure...
As a means of fire protection, an amusement park has a large cylindrical tank with an open top. Water exits the tank through a 6.15 cm diameter hose which ends with a 2.10 cm diameter tap. If a plug is inserted into the tap and the water level in the tank is kept 7.50 m above the tap, determine the following. (a) force of friction (in N) exerted by the tap on the plug (b) mass of water (in kg)...
An open tank has a vertical partition and on one side contains gasoline with a density p = 770 kg/m3 at a depth of 8.7 m, as shown in the figure below. A rectangular gate that is 8.7 m high and 2 m wide and hinged at one end is located in the partition. Water is slowly added to the empty side of the tank. At what depth, h, will the gate start to open? -Partition Stop 8.7m Water Gasoline...