Home
Class 11
PHYSICS
Calculate the pressure inside a small ai...

Calculate the pressure inside a small air bubble of radus `r` situated at a depth `h` below the free surface of liquids of densities `rho_(1)` and `rho_(2)` and surface tennsions `T_(1)` and `T_(2)`. The thickness of the first and second liquids are `h_(1)` and `h_(2)` respectively. Take atmosphere pressure `=P_(0)`.

A

`P_(0)+rho_(1)gh_(1)+rho_(2)g(h-h_(1))-(2T_(2))/r`

B

`P_(0)+rho_(1)gh_(1)+rho_(2)g(h-h_(1))+(2T_(2))/r`

C

`P_(0)-rho_(1)gh_(2)+rho_(2)g(h-h_(1))+(2T_(2))/r`

D

none of these

Text Solution

Verified by Experts

The correct Answer is:
B

`P_C=P_B+(2T)/r`
`P_B=P_A+rho_1g_1=rho-2g(h-h_1)`

where `P_A=P_0`
`P_C=P_0+rho_1gh_1+rho_2g(h-h_1)+(2T_2)/r`
Promotional Banner

Topper's Solved these Questions

  • MISCELLANEOUS VOLUME 2

    CENGAGE PHYSICS|Exercise MCQ_TYPE|20 Videos
  • MISCELLANEOUS VOLUME 2

    CENGAGE PHYSICS|Exercise LC_TYPE|34 Videos
  • MISCELLANEOUS KINEMATICS

    CENGAGE PHYSICS|Exercise Interger type|3 Videos
  • NEWTON'S LAWS OF MOTION 1

    CENGAGE PHYSICS|Exercise Integer|5 Videos

Similar Questions

Explore conceptually related problems

Calculate the pressure indise a small air bubble of radius 0.01 mm situated at a depth of h=20 m below the fre surface of liquid of density rho_(1)=10^(3)kg//m^(3), rho_(2)=800km//m^(3) and surface tension T_(2)=7.5xx10^(-2)N//m. The thickness of the first liqid is h_(1)=15 m and h_(2)=25m .

The pressure at depth h below the surface of a liquid of density rho open to the atmosphere is

A small air bubble of radius 0.1 mm is situated at a depth of 10 m below the free surface of water .The external pressure on the bubble will be

What will be the total pressure inside a spherical air bubble of radius 0.2 mm at a depth of 2m below the surface of a liquid of density 1.1 g//cm^(3) and surface tension 50 dyn e//cm . Atmospheric pressure is 1.01 xx 10^(5) Nm^(-2) .

If the atompspheric pressure is P _(a) then the jpressure P at depth a below the surface of a liquid of density rho open to the atmosphere is

The pressure inside a small air bubble of radius 0.1 mm situated just below the surface of water will be equal to [Take surface tension of water 70xx10^-3Nm^-1 and atmospheric pressure =1.013xx10^5Nm^-2 ]

What should be the pressure inside a small air bubble of 0.1mm radius situated just below the water surface. Surface tension of water =7.2xx10^(-2)N//m and atmosphere pressure =1.013xx10^(5)N//m^(2) .

A small air bubble of radius r in water is at depth h below the water surface. If P_0 is the atmospheric pressure, rho is the density of water and T is the surface tension of water, what is the pressure inside the bubble?

A small air bubble of radius 'r' is at a depth 'h' below the water surface (density of water = rho) . Surface tension of water is T, atmospheric pressure is p_(0) . Find pressure inside the air bubble for the condition r lt lt h

The absolute pressure at a depth h below the surface of a liquid of density rho is [Given P_(a) = atmospheric pressure, g = acceleration due to gravity]