The flat surface shown is submerged vertically in water. Find the fluid force against the surface. The weight density of water is 62.41lb/ft°. -6 ft 6 ft 6 ft Enter the exact answer. F = i lb
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- Find the fluid force on the vertical side of the tank, where the dimensions are given in feet. Assume that the tank is full of water. (The weight-density of water is 62.4 pounds per cubic foot. Round your answer to one decimal place.)The area of the top side of a piece of sheet metal is 9 square feet . The sheet metal is submerged horizontally in 5 feet of ethyl alcohol. Find the fluid force on the top side.The area of the top side of a piece of sheet metal is given. The sheet metal is submerged horizontally in 8 feet of water. Find the fluid force on the top side. 3 square feet
- a circular porthole on a vertical ide of a submarine (submerged in seawater) has a diameter of 3 ft. Find the fluid force on the porthole, assuming that the center of the circle is 13 feet below the surface. (Assume the weight-density of seawater is 64 pounds per cubic foot. SOLVE BY INTEGRATION)A box of height 3 m3 m and a square base of side 2 m2 m is submerged in a pool of water. The top of the box is 2 m2 m below the surface of the water. Calculate the fluid force on the top and bottom of the box. The density of water is 1000 kg/m3.The viewing portion of the rectangular glass window in a typical fish tank at the New England Aquarium in Boston is 63 in. wide and runs from 0.5 in. below the water’s surface to 33.5 in. below the surface. Find the fluid force against this portion of the window. The weight-density of seawater is 64 lb/ft3. (In case you were wondering, the glass is 3/4 in. thick and the tank walls extend 4 in. above the water to keep the fish from jumping out.
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