Question No. 6 The fraction of a floating body of volume V, and density d, above the surface of a liquid of density d will be - do do d. d- do d. d. d- do
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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.Answer the following. A: When the pressure of liquid is increased from 3.5 MN/m² to 6.5 MN/m² its volume is found to decrease by (0.08) percent. What is the bulk modulus of elasticity of the liquid? B: An open cylindrical tank (1.2m) in diameter and (1.8m) deep is filled with water and rotated about its central axis at (60 r.p.m). How much liquid is spill and how deep of the water at the central axis.A circular plate of diameter 1.5 m which is placed vertically in water in such a way that the centre of the plate is 3 m below the free surface of water.The position (in mm) of centre of pressure from the free surface is
- 6. A rectangular tank with a bottom area of 5251n2 7in is filled to height 56 Slugs. of a liquid. with a mass of Determine the fluid's (a) weight, (b) density, and (c) specific gravity,A cylind er with density, p. height, h, radius, r is partially submerging at 6tatic, with depth, u in a fluid with density, Po, os shown Ratio o f a Circ Um ference to its diameter is T1. Determine all the forces acting on the cglinder at y-directionb. A rectangular plane surface 3m wide and 4m deep lies in water in such a way that its plane makes an angle of 30° with the free surface of water. Determine the total pressure force when the upper edge is 2m bel ow the free surface. Free surface of water A 30 2m h* E Upper edge B 2m View normal to plate 3 m -4 m
- 5. A rod with uniform diameter contains water and another liquid with 2 density that is two times the water density. The rod is floating in a liquid. Is the liquid (a) lighter than water, (b) water, or (c) heavier than water? Justify your answer. p-Puater p= 2pwaterFind the position of the center of pressure of a circular plate of diameter 1.5 m placed vertically in water in such a way that center of plate is 2 m below the free surface of water. a.3.19 m b.2.0 m c.3.714 m d.2.07 mDetermine the total force in kN on a circular plate of diameter 1.5 m whcih is placed vertically in water in such a way that center of plate is 2 m below the free surface of water.
- kindly answer asap ang give neat handwritten solution with higlighted final answers thanksA square section tank of 3m side and 2m length as shown has the top of one side wall in the shape of a cylinder as indicated. It contains oil with a density of 960 kg/m^3.(a) Determine the magnitude (in kN) and direction (R or L) of the horizontal component Fh of the hydrostatic force acting on the curved surface AB. Clearly drawn DIAGRAMS are required (b) Determine the magnitude (in kN) and direction (U or D) of the vertical component Fv of the hydrostatic force acting on the curved surface AB. Clearly drawn DIAGRAMS are required (c) Determine the magnitude (in kN) of the total hydrostatic force F acting on Curve AB (d) Determine the angle that the total force acting on the gate makes with the horizontalA 1.8 m diameter and 3.6 m long cylindrical container contains a fluid with specific gravity of 0.73. The container is positioned vertically and is full of the liquid. Disregarding atmospheric pressure, the hydrostatic force acting on the top and bottom surfaces in kN of this container respectively are a. 101.325, 65 b. 65, 0 c. 65, 101.325 d. 0, 65 With F.B.DA rectangular plate with a width of 16 m and height of 12 m is located 4 m below the water surface. The plate is tilted and makes angle of 35deg angle with the horizontal. The resultant hydrostatic force in kN acting on the top surface of this plate is include your free body diagram. a.9745 b.8470 c.5190 d.10,800