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[" (c) "0.17" ."],[" Water is filled in ...

[" (c) "0.17" ."],[" Water is filled in a cylindrical area of the orifice and the "],[" The ratio of the cross-sectional area of the orifice and the "],[" beaker is "0.1" .The square of the speed of the liquid coming "],[" out from the orifice is "(g=10m/s^(2))],[[" (a) "50m^(2)/s^(2)," T"],[" (b) "50.5m^(2)/s^(2)," T "],[" (c) "51m^(2)/s^(2)," 3m "],[" (d) "52m^(2)/s^(2)," ( "]]

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What is filled in a cylindrical container to a height of 3 m . The ratio of the cross-sectional area of the orifice and the beaker is 0.1 . The square of the speed of the liquid coming out from the orifice is (g = 10 m//s^2) .

Water is filled in a cylindrical container to a height of 3m . The ratio of the cross-sectional area of the orifice and the beaker is 0.1 . The square of the speed of the liquid coming out from the orifice is (g=10m//s^(2)) .

Water is filled in a cylindrical container to a height of 3m . The ratio of the cross-sectional area of the orifice and the beaker is 0.1 . The square of the speed of the liquid coming out from the orifice is (g=10m//s^(2)) .

Water is filled in a cylindrical container to a height of 3m . The ratio of the cross-sectional area of the orifice and the beaker is 0.1 . The square of the speed of the liquid coming out from the orifice is (g=10m//s^(2)) .

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A cylindrical tank is filled with water to a level of 3m. A hole is opened at a height of 52.5 cm from bottom. The ratio of the area of the hole to that of cross-sectional area of the cylinder is 0.1. The square of the speed with which water is coming out from the orifice is (Take g= 10 m//s^(2) )

At the mount of the tap area of cross-section is 2.0cm^(2) and the speed of water is 3m//s . The area of cross-section of the water column 80 cm below the tap is (use g=10m//s^(2))

A tank of height 5m is full of water. There is a hole of cross-sectional area 1cm^(2) at its bottom. The volume of water that will come out from this hole per second is (g=10m//s^(2))