Home
Class 11
PHYSICS
A wooden block of mass 8 kg is tied to a...

A wooden block of mass 8 kg is tied to a string attached to the bottome of the tank. In the equilibrium the block is completely immersed in water. If relative density of wood is 0.8 and `g=10 ms^(-2)`, the tension T, in the string is

Promotional Banner

Similar Questions

Explore conceptually related problems

A wooden block of mass 8kg is tied to a string attached to the bottom of a tank. The block is completely inside the water. Relative density of wood is 0.8. Taking g= 10m//s^(2) , What is the tension in the string ?

A 0.5 kg block of brass (density 8xx103Kg m^(-3) ) is suspended from a string. What is the tension in the string if the block is completely immersed in water? (g =10ms^(-2))

A silver block of mass 3.1 kg is connected to a string and is then immersed in a liquid of relative density 0.82 . Find the tension in the string , if relative density of silver is 10.5

A silver block of mass 3.1 kg is connected to a string and is then immersed in a liquid of relative density 0.82 . Find the tension in the string , if relative density of silver is 10.5

A block of bras of mass 0.5 kg and density 8xx10^(3)kg//m^(3) is suspended from a string. What will be the tension in the string if the block is completely immersed in water? (g=10ms^(-2))

A woman of mass 50 kg stands on a wooden block placed over a tank of water. The wooden block is such that the woman is entirely above water. If relative density of wood is 0.85, the volume of the wooden block is:

A block of silver of mass 4 kg hanging from a string is immersed in a liquid of relative density 0.72 . If relative density of silver is 10 , then tension in the string will be

A block of silver of mass 4 kg hanging from a string is immersed in a liquid of relative density 0.72 . If relative density of silver is 10 , then tension in the string will be

A block of silver of mass 4 kg hanging from a string is immersed in a liquid of relative density 0.72 . If relative density of silver is 10 , then tension in the string will be