143236 Water is filled in a container upto height of $3 \mathrm{~m}$. A small hole of area ' $A_{0}$ ' is punched in the wall of the container at a height $\mathbf{0 . 5 2 5} \mathrm{m}$ from the bottom. The cross sectional area of the container is $A$. If $A_{0} / A=0.1$ then $v^{2}$ is (where $v$ is the velocity of water coming out of the hole)
143236 Water is filled in a container upto height of $3 \mathrm{~m}$. A small hole of area ' $A_{0}$ ' is punched in the wall of the container at a height $\mathbf{0 . 5 2 5} \mathrm{m}$ from the bottom. The cross sectional area of the container is $A$. If $A_{0} / A=0.1$ then $v^{2}$ is (where $v$ is the velocity of water coming out of the hole)
143236 Water is filled in a container upto height of $3 \mathrm{~m}$. A small hole of area ' $A_{0}$ ' is punched in the wall of the container at a height $\mathbf{0 . 5 2 5} \mathrm{m}$ from the bottom. The cross sectional area of the container is $A$. If $A_{0} / A=0.1$ then $v^{2}$ is (where $v$ is the velocity of water coming out of the hole)
143236 Water is filled in a container upto height of $3 \mathrm{~m}$. A small hole of area ' $A_{0}$ ' is punched in the wall of the container at a height $\mathbf{0 . 5 2 5} \mathrm{m}$ from the bottom. The cross sectional area of the container is $A$. If $A_{0} / A=0.1$ then $v^{2}$ is (where $v$ is the velocity of water coming out of the hole)