Q2) Determine the hydrostatic force acting on the circular window and locate its line of action
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- The hemispherical glass bowl is filled with water. Find the location y of the center of gravity of the filled bowl. Approximate the bowl as a thin shell of radius R=6.15in. Use 1=162lb/ft3 for glass and 2=62.4lb/ft3 for water.Calculate the fluid force on one side of the plate using the coordinate system shown below. Assume the density is 62.4 lb /t. 1078 Ib 3 The fluid force on one side of the plate is y () Surface of pool x (A) Depth x.y)Q3) Determine the center of gravity of the below figure symmetrical about the y-axis, then discuss your results. - 300 mm 150 mm B H E 400 mm Fig. Q3. uau 00t
- The plate picture below, bounded by the parabola y = 2² and y = 1, is submerged vertically in water (distance in meters).Calculate the fluid force F on the side of R. R 10) Water surface (√51.3) 7-2² √1The flat surface shown is submerged vertically in water. Find the fluid force against the surface. The weight density of water is 9810 N/m3. 1 m 3 m 6 m Enter the exact answer. F = i %3D1. A beaker of circular cross section of radius 8 cm is filled with mercury up to a height of 6 cm. Find the force exerted by the mercury on the bottom of the beaker. The atmospheric pressure = 105 N m. Density of mercury - 13600 kg/m3 . Take g =10
- Calculate the magnitude of the resultant force, FRin kN, to the nearest 10th. Fluid: Orange Purity Syrup with sg = 1.070 h. = 2.50 m Diameter = 2.85 m 30° Orange Purity Syrup sg = given he 4.6 m Diameter 1.2 m Circular view portName: Class Q-5 The dam in Fig. is a quarter circle 50 m wide into the paper. Determine the horizontal and vertical components of hydrostatic force against the dam and the point CP where the resultant strikes the dam. 20 m P. -0 20 m СР WaterProblem: 1.) For the curved surface AB: a.) Determine the magnitude, direction, and line of action of the vertical component of hydrostatic force acting on the surface. Here, L = 1. b.) Determine the magnitude, direction, and line of action of the horizontal component of hydrostatic force acting on the surface. c.) Determine the resultant hydrostatic force acting on the surface. Surface is 1 m long (normal to page) Water
- 4. Determine the pressure difference between the points at A and B. Take the density of air as 0.03486 kg/ ft^3. (Answer must be in kPa) 0.2 m Air 0.2 m ha - l4 sin 30° Liquid (S1 = 1.2) 30 [h3=l3 sin 30° 0.4 m Mercury (SHg = 13.6) 0.25 m Z-The flat surface shown is submerged vertically in water. Find the fluid force against the surface. The weight density of water is 9810 N/m. 6m 5m 8m Enter the exact answer. F = %3D7. Determine (a) the magnitude of the hydrostatic force on the quarter circle panel at the bottom of the water tank in the figure given below, (b) the point CP where the resultant force strikes the tank and (c) the angle of the resultant force with respect to the x-axis. 6 m 5m Water 2 m 2 m