a) Pressure meters A and B reads 500 kPa absolute and 300 kPa absolute respectively, as shown in Figure 1. Determine the specific gravity of the unknown fluid.
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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.THERMOFLUID A 3-m-wide, 8-m-high rectangular gate is located at the end of a rectangular passage that is connected to a large open tank filled with water as shown in Figure 2. The gate is hinged at its bottom and held closed by a horizontal force, FH, located at the center of the gate. The maximum value for FH is 3,500 kN. a) Determine the maximum water depth, h, above the center of the gate that can exist without the gate opening b) If the gate is hinged at the top, what is the value of h? Explain your answer.A triangular gate having horizontal base of 1.0m and an altitude of 1.5m is inclined 45° from the vertical with the vertex pointing upward. The vertex of the gate is 2.4m vertically below the surface of the water. What normal force , in KN, must be applied at the vertex of the gate to open it's hinged at the base?
- Please be clear with your solution. A Triangular gate having a horizontal base of 1.30 m and an altitude of 2 m is inclined 45o from the vertical with vertex pointing upward. The base of the gate is 2.70 m below the surface of oil (s = 0.80). What normal force must be applied at the vertex of the gate to open it? Show figureIn Fig.= both the tank and the tube are open to theatmosphere. If L = 2.13 m, what is the angle of tilt θ of thetube?Consider a cubical water tank with a side length of 4 m. The tank is half filled with water, and is open to the atmosphere. Now, a truck carrying this tank is accelerated at a rate of 7 m/s^2 on a flat road. The maximum vertical rise (in meters) of free surface of the water is? only HANDWRITTEN answer needed ( NOT TYPED)
- A vertical tube, 3-cm diameter and 1.2-m long, has its upper end open to the atmosphere. The tube contains equal volumes of oil (RD 0.85) and water. If the tube is full, find a) the gage pressure at the bottom of the tube; b) the total weight of the liquidsA circular tank with a diameter of 4.5m is filled with two immiscible fluids. Water to a depth of 3m andoil with a relative density of 0,9 to a depth of 2mDetermine the Hydrostatic force acting on the verticalside of the tank and the position of the centre of pressure from the oil-free surface.A glass tube 5 ft long and 1 inch in diameter with one end closed is inserted vertically with the open end down, into a tank of water until the open end is submerged to a depth of 4 ft. If the barometric pressure is 14.30 lb per sq.in, and neglecting vapor pressure, how high will water rise in the tube?
- Note: Please state what formula you are using. And please be clear and detailed with your solution. Atleast explain. It will help me, thanks. Problem: A Triangular gate having a horizontal base of 1.30 m and an altitude of 2 m is inclined 45o from the vertical with vertex pointing upward. The base of the gate is 2.70 m below the surface of oil (s = 0.80). What normal force must be applied at the vertex of the gate to open it? Show figureclosed cylindrical container is filled with a fluid that has a specific gravity of 2.7. What is thepressure exerted by this fluid at a depth of 20m?A bottle consist of a cylinder 35 cm in diameter and 30 cm high and a neck 5 cm in diameter and 30 cm long. The bottle is inserted into a body of water, with the open end of the neck first until the neck is completely filled with water. Assuming the pressure of the atmosphere is standard, and neglecting vapor pressure, what is the depth to which the open end is submerged below the free surface? Show correct figure.