A small spherical monoatomic ideal gas bubble $\left(\gamma=\frac{3}{3}\right)$ is trapped inside a liquid of density $\rho_{\ell}$ (see figure). Assume that the bubble does not exchange any heat with the liquid. The bubble contains $n$ moles of gas. The temperature of the gas when the bubble is at the bottom is $\mathrm{T}_0$, the height of the liquid is H and the atmospheric pressure is $\mathrm{P}_0$ (Neglect surface tension).
As the bubble moves upwards, besides the buoyancy force the following forces are acting on it
Select the correct option:
A
Only the force of gravity
B
The force due to gravity and the force due to the pressure of the liquid
C
The force due to gravity, the force due to the pressure of the liquid and the force due to viscosity of the liquid
D
The force due to gravity and the force due to viscosity of the liquid
✓ Correct! Well done.
✗ Incorrect. Try again or view the solution.
Solution
Buoyant force is resultant of pressure-force of liquid.
Hello 👋 Welcome to Competishun – India’s most trusted platform for JEE & NEET preparation. Need help with JEE / NEET courses, fees, batches, test series or free study material? Chat with us now 👇