IS determine the weight of the combine system
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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.Fluid with a density of 900 kg/m^3 is applying pressure on the gate shown. The depth of the water is equal to the height of the gate. The h is 12 m and width of the gate is 4 m. Determine the resultant pressure force acting on the gate? a)1611315 N b)5084000 N c)2542000 N d)52958 N e)105916 NThe density of seawater at a free surface where the pressure is 98 kPa is approximately 1030 kg/m3. Taking the bulk modulus of elasticity of seawater to be 2.34 × 109 N/m2 and expressing variation of pressure with depth z as dP = ?g dz determine the density and pressure at a depth of 2500 m. Disregard the effect of temperature.
- A spherical balloon containing Oxygen (initially at sea level) has a radius of 8 inches. If the uniform density of air is 0.07498lb/ft3 and that the pressure at sea level is 14.7psia, determine the new radius (inch) of the balloon if it has been brought above sea level by 6000ft.36. The top floor of a building is 20 m above the basement. Show that the water pressure in the basement isnearly 200 kPa greater than the water pressure on the top floor.A tank is divided into two sections by a 1x1-m square gate that is hinged at A . A couple with a magnitude of 490 N·m is required for the gate to rotate. If one side of the tank is filled with water at the rate of 0.1 m3 /min and the other side is filled simultaneously with methyl alcohol (density Pma = 789 kg/m3 ) at the rate of 0.2 m3 /min, determine at what time and in which direction the gate will rotate.
- When a 2-mm-diameter tube is inserted into a liquid in an open tank, the liquid is observed to rise 10 mm above the free surface of the liquid. The contact angle between the liquid and the tube is zero, and the specific weight of the liquid is 1.2 × 104 N/m3. Determine the value of the surface tension for this liquid. Show step-by-step, and explain each step. Thank you.vessel a, at elevation 2.438m, contains water under 103.4 kpa pressure. Vessel B at elevation 3.658 m, contains a liquid under 68.95 kpa pressure. if the deflection of the differential gage is 305 mm of mercury, with the lower level on the A side at elevation 0.305m, determine the specific gravity of the liquid in vessel B. Ans. 0.500A 3 m diameter , 7 m long cylindrical tank is completely filled with water. The tank is pulled by a truck on a level road with 7 m long axis being horizontal. Determine the pressure difference in kPa between the front and back ends of the tank along a horizontal line when the truck accelerates at 3 m/s^2. a.21 b.25 c.23 d.28
- A vertical composite fluid column whose upper end is open to the atmosphere is composed of 20 inches of mercury (S.G = 13.45), 30 inches of water (density = 62.4 lbm/ft3) and 35 inches of oil (S.G = 0.825). Determine the absolute pressure in psia: a) at the base of the column, b) at the oil-water interface, c) at the water-mercury interface.A fish tank that contains 60 cm high water is moved in the cabin of elevator. Determine the pressure in kPa at the bottom of the tank when the elevator is stationary. Include the free body diagram in your solution. a.7.69 b.5.89 c.6.46 d.4.0934.) The water in a tank is pressurized by air, and the pressure is measured by a multifluid manometer. The tank is located on a mountain at an altitude of 1400 m where the atmospheric pressure is 88 kPa. Determine the air pressure (kPa) in the tank if h 1 = 0.2 m, h 2 = 0.3 m, and h 3 = 0.45 m. Take the densities of water, oil, and mercury to be 1000 ??/?3, 840 ??/?3, and 13,600 ??/?3, respectively. (Answer with 3 decimal places, do not include the units)