The cylinder shown in the figure extends 8 ft into the paper. If the cylinder has the radius of 4 ft, compute the vertical component of the hydrostatic force of the oil on the cylinder. 90 Oil (s.g. - 0.85 ) 4 f 90°
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- Determine the volume of the concrete arch dam.The cylinder shown in the figure extends 8 ft into the paper. If the cylinder has the radius of 4 ft, compute the vertical component of the hydrostatic force of the oil on the cylinder. 90 Oil ( s.g. = 0.85 ) 4 ft . 06, 50°The cylinder shown in the figure extends 9ft into the paper. If the cylinder has the radius of 4 ft, compute the vertical component of the hydrostatic force of the oil on the cylinder. 90 Oil ( s.g. = 0.85 ) 4 ft 90° 50°
- 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.) Ib Trapezoid 4 6 2 Show My Work (Required) 3The given Figure is shown a curve surface. It is required to determine the magnitude, direction, and line of action of the vertical component, the horizontal component, and the resultant hydrostatic force acting on the surface in case () is 1.3 m, specific weight of water is 9770.5 N/m3, and width of the curve is 1.8 m. 1. B Water (write here only FH with two numbers after the decimal xxxxx.xx) for full answer use the pdf file 7192- A tank containing water is shown in Fig. Calculate the total resultant force acting on side ABCD of the container and the 6 ft location of the center of pressure. IF 62.4 Ib/ft3 Y = Water B -20 ft 3- Find the total pressure and position of center of pressure FREE WATER SURFACE on a triangular plate of base 2 m and height 3 m which is 60 2.5 immersed in water in such a way that the plane of the plate -2 m- makes an angle of 60 with the free surface of the water. .3 The base of the plate is parallel to water surface and at a depth of 2.5 m from water surface.
- A quarter circle dam with radius 20-m and 50-m perpendicular to the figure is shown. Solve for the horizontal and vertical components of the hydrostatic force against the dam and the center of pressure where the resultant strikes the dam. 20 m P.=0 20 m СРС WaterThe flat surface shown is submerged vertically in water. Find the fluid force against the surface. The weight density of water is 62.4lb/ft'. -8 ft 8 ft 8 ft Enter the exact answer. F = i lbThe figure below shows the cross-section of a tank full of water under pressure. The pressure in the tank is 19.62 kN m² and its length is 2 m in the paper. An empty cylinder lies along the length of the tank on one of its corner as shown. Find the resultant force acting on the curved surface ABC. 19.62 kNm R-1m 1.5m Tank fal of water
- Find the magnitude of the horizontal component of the force and find the vertical component of the force exerted by the fluid on the surface. Next, find the magnitude of the resultant force and its direction. Show the resultant force acting on the curved surface. The surface is 4.5 ft long. Oil sg = 0.85 9.50 ft -7.50 ftThe flat surface shown is submerged vertically in water. Find the fluid force against the surface. The weight density of water is 9810 N/m³. 4 m Enter the exact answer. F = i 1m 3 m N2- A tank containing water is shown in Fig. Calculate the total resultant force acting on side ABCD of the container and the 6 ft location of the center of pressure. Y = 62.4 Ib/ft3 Water -20 ft -