Home
Class 12
PHYSICS
A mercury drop of radius 1.0 cm is spray...

A mercury drop of radius 1.0 cm is sprayed into `10^(6)` droplets of equal sizes. The energy expended in this process is (Given, surface tension of mercury is `32 xx 10^(-2) Nm^(-1)`)

Promotional Banner

Similar Questions

Explore conceptually related problems

A mercury drop of radius 1 cm is sprayed into 10^(6) drops of equal size. The energy expended in joules is (surface tension of mercury is 460 xx 10^(-3) Nm^(-1) )

A mercury drop of radius 1 cm is sprayed into 10^(6) drops of equil size. The energy expended in joule is (surface tension of mercury is (460xx10^(-3)N//m)

A mercury drop of radius 1 cm is sprayed into 10^6 drops of equal size. The energy expended in joule is (Surface tension of mercury is 460 xx10 N m^-1 )

A mercury drop of radius 1 cm is sprayed into 10^(6) droplets of equal size. Calculate the energy expended if surface tension of mercury is 35xx10^(-3)N//m .

A mercury drop of radius 1 cm is sprayed into 10^(6) dropletes of equal size. Calculates the energy expanded if surface tension of mercury is 35 xx 10^(-3) N//m .

A mercury drop of radius 1.0 cm is sprayed into 10^(8) droplets of equal size. Calculate the energy expanded. (Surface tension of mercury = 32 xx 10^(-2) N//m ).

A mercury drop of radius 1.0 cm is sprayed into 10^(8) droplets of equal size. Calculate the energy expanded. (Surface tension of mercury = 32 xx 10^(-2) N//m ).