Which of the following is the dimension of surface tension ? O MºLT-1 O MLT-1 O ML-1T-1 O MLOT-2
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A:
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Q: e force acting on the side of the tank when the acceleration is 5m/s2 vertically downward.
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Q: Which of the following is the dimension of surface tension ? M L-1 T-1 M L T-1 M0 L T-1 M L0 T-2
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- Determine the magnitude and point of application of the horizontal and vertical compenents of the hydrostatic pressure force acting on the prismatic surface a b c d e. The surface lenght (dimension perpendicular to the figure) is 4.5 m. The unit weight of water =9.81 Kn/m3Convert the following quantity to SI units and giving the answer using proper significant figures. 712 ft/sDetermine the resultant force acting on the 0.7-m-highand 0.7-m-wide triangular gate and itsline of action.
- 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)A two dimensional conservation force is zero on the X and Y Axes and satisfied condition (dfx/dy)= (dfy/dx)=(4N/m^2)by. What is the magnitude of the force at the point x=y=1mThe corner plate of the ship's hull is bent at a radius of 1.5 meters, following the arc of a circle. What is the magnitude of the force applying on the curved corner plate for 1 meter length of the hull section if the bottom of the hull is 4.3 m below the seawater (S.G. = 1.03) surface?
- Determine the magnitude of the force on the inclined gate 1.5m by 0.5m shown in the figure. The tank of water is completely closed and the pressure gage at the bottom of the tank reads 90,000 N/m2. Use 9800 N/cubic meter for water? Ans: 48022.5NThe round handle of a faucet is affixed to a shaft that lets a valve to be open and closed every time the round handle is rotated. Give the radius of the handle if the shaft has a diameter of 1 cm and the MA of the machine is 8.What is the equivalent resultant force and specify its location, measured from point 0 Choices: FR= 12.5 kN, d= 1.54 m FR= 13.5 kN, d= 1.44 m FR= 12.5 kN, d= 1.64 m FR= 13.5 kN, d= 1.54 m