A hole is made at the bottom of the tank filled with water (density 1000 kg/m^ 3 )
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There are two identical small holes of area of cross section a on the opposite sides of a tank containing liquid of density ρ. The differences in height between the holes is h. The tank is resting ona smooth horizontal surface. The horizontal force which will have to be applied on the tank to keep it in equilibrium is
07
Oct
There are two identical small holes of area of cross section a on the opposite sides of a tank containing liquid of density ρ. The differences in height between the holes is h. The tank is resting ona smooth horizontal surface. The horizontal force which will have to be applied on the tank to keep [...]
The opening near the bottom of the vessel shown in the figure has an area A. A disc is held against the opening keep the liquid from running out. Let F1 be the net forces on the disc applied by liquid and air in this case. Now the disc is moved away from the opening a short distance. The liquid comes out and strikes the disc in elastically. Let F2 be the force exerted by the liquid in this condition. The F1/F2 is
07
Oct
The opening near the bottom of the vessel shown in the figure has an area A. A disc is held against the opening keep the liquid from running out. Let F1 be the net forces on the disc applied by liquid and air in this case. Now the disc is moved away from the opening [...]
A hole is made at the bottom of the tank filled with water (density 1000 kg/m^ 3 ), If the total pressure at the bottom ofthe tankis 3 atmosphere ( 1 atmosphere = 10 ^ 5 N/m ^2 ), then the velocity of efflux is :
07
Oct
A hole is made at the bottom of the tank filled with water (density 1000 kg/m^ 3 ), If the total pressure at the bottom ofthe tankis 3 atmosphere ( 1 atmosphere = 10 ^ 5 N/m ^2 ), then the velocity of efflux is : A hole is made at the bottom of the [...]