3) Solve the change in volume of one cubic meter of water when it is subjected to an increase in pressure of 1840 KN Bulk modulus of elasticity is 2.16 X10 GN m²
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- The 12-ft wide quarter-circular gate AB is hinged at A. Determine the contact force between the gate and the smooth surface at B due to water pressure acting on the gate. Use =62.4lb/ft3 for water.A 27 m vertical column of fluid (density 1878 kg.m3) is located where g= 9.65 m/sec2. Find the pressure at the base of the column.Ans. 489.313 kPa Please give me the solution.Caleulate the force F required to Keep the parabolic gate in static equilibrium as shown in the Fiqure. Consider width - 2m leaving the page, a=8.8m, b=4.8m and S6=8.4 of the fluid. Express the result in Newtons. Cwrite all required steps) Fluido SG
- A tank is filled with fluid under prcssurc anti the prcssurc gauge fixcd at the top indicatcs a prcssurc of 21 kPa. The curved surfacc of the top is quarter of a circular part of radius 2.6 m. calculate the magnitude (N) and direction (degree) of the resultant force on the cun'ed surface. (p=950kg./m³for fluid)2. The tank shown contains alcohol (SG=D0.78) and covered by a circular plug 1.2 m in diameter. Calculate the hydrostatic force F Am acting on the plug and its center of pressure. 8m 1.2 m 3. The gate as shown is 3 m normal to the page. It keeps the two liquids from mixing with each onough clocuro botween the oil andAnswer 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.
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- Determine the pressure difference between points C and D. Take the specific weights to be Benzene: 8640 N/m?, Mercury:133100 N/m? Kerosene: 7885 N/m³, Water: 9790 N/m², Air: 12 N/m³. Water Benzene, Air D C 50 cm 19 cm 30 cm 18 cm 24 cm ст Mercury- Kerosine (answer) Pamm and (c) the value of y in millimeters. waler 9.79 kN/m. (@) Determine the pressure pA in kPa, (b) the value of h in Thaid is prevented from moving to the top of the tank. Use unit weight of The pressure -13.4 KPa gage and pe 13.42 kPa gage. Assume the cleaning mall open cylindrical tank containing cleaning fluid (s.g.-0.8) at a height h. KAoindrical tank contains water at a height of 55 mm, as shown. Inside is a Problem 2-52 Ans: (a) 12.88; (b) 10.2; (c) 101 PA Air Water 55 mm Mercury (s.g. 13.6) Problem 2-53 mtal manometer shown is measuring the difference in pressure two RAPES. The indicating liquid is mercury (specific gravity13.6), h is 675 225 mm, and ha is 300 mm. What is the pressure differential umEthe two pipes Ans: 89.32 kPa2m Water. 20°C 4m He. 20 3m H.W3 water in a tank is pressurized to 85cmHg as show in Fig. Determine the hydrostatic forces per meter width on panel AB? note: Ans: =501 KN