Home
Class 11
PHYSICS
A cylindrical tank has a small hole at b...

A cylindrical tank has a small hole at bottom. At `t = 0`, a tap starts to supply water into the tank at a constant rate `beta m^3//s`.
(a) Find the maximum level of water `H_(max)` in the tank ?
(b) At what time level of water becomes `h(h lt H_(max))` Given `a` , area of hole, `A` : area of tank.

Promotional Banner

Similar Questions

Explore conceptually related problems

A cylindrical tank of base area A has a small hole of areal a at the bottom. At time t=0 , a tap starts to supply water into the tank at a constant rate alpha m^(3)//s . (a) What is the maximum level of water h_(max) in the tank? (b) find the time when level of water becomes h(lt h_(max)) .

A cylindrical tank has a hole of 1 cm in its bottom. If the water is allowed to flow into the tank from a tube above it at the rate of 70 cm//sec . then the maximum height up to which water can rise in the tank is

A cylindrical tank has a hole of 1 cm in its bottom. If the water is allowed to flow into the tank from a tube above it at the rate of 70 cm//sec . then the maximum height up to which water can rise in the tank is

A cylindrical tank has a hole of 2cm^(2) at its bottom if the water is allowed to flow into tank from a tube above it at the rate of 100cm^(3)//s then find the maximum height upto which water can rise in the tank (take =g=10ms^(-2) )

A tank full of water has a small hole at its bottom. Let t_(1) be the time taken to empty the first half of the tank and t_(2) be the time needed to empty the rest half of the tank, then