$A$ piston of mass $M$ is hung from a massless spring whose restoring force law is given by $F = -kx^3$,where $k$ is the spring constant of appropriate dimension. The piston separates the vertical chamber into two parts,where the bottom part is filled with $n$ moles of an ideal gas. An external work is done on the gas isothermally (at a constant temperature $T$) with the help of a heating filament (with negligible volume) mounted in the lower part of the chamber,so that the piston moves up from a height $L_0$ to $L_1$. Calculate the total energy delivered by the filament. (Assume the spring to be in its natural length before heating.)

  • A
    $3 n R T \ln \left(\frac{L_1}{L_0}\right) + 2 Mg \left(L_1 - L_0\right) + \frac{k}{3} \left(L_1^3 - L_0^3\right)$
  • B
    $n R T \ln \left(\frac{L_1^2}{L_0^2}\right) + \frac{Mg}{2} \left(L_1 - L_0\right) + \frac{k}{4} \left(L_1^4 - L_0^4\right)$
  • C
    $n R T \ln \left(\frac{L_1}{L_0}\right) + Mg \left(L_1 - L_0\right) + \frac{k}{4} \left(L_1^4 - L_0^4\right)$
  • D
    $n R T \ln \left(\frac{L_1}{L_0}\right) + Mg \left(L_1 - L_0\right) + \frac{3k}{4} \left(L_1^4 - L_0^4\right)$

Explore More

Similar Questions

In an isothermal reversible expansion,if the volume of $96\, g$ of oxygen at $27^{\circ}C$ is increased from $70\, L$ to $140\, L$,then the work done by the gas will be

In an isothermal expansion,what happens to the internal energy of the gas?

Is the melting of ice an adiabatic or an isothermal process?

$A$ gas undergoes a change at constant temperature. Which of the following quantities remain fixed?

The work done in doubling the volume of $5$ moles of an ideal gas at a constant temperature of $500 \, K$ is ....... $J$.

Vedclass Products

For Students

Vedclass Test Series

Mock tests in real JEE/NEET style with performance analysis. 5-day free trial.

Start Free Trial
For Teachers

Exam Paper Generator

Generate Set A/B/C/D exam papers from 7.5L+ questions in 2 minutes. 3 chapters free.

Try Free
For Institutes

Online Exam Module

Live online exams with unlimited students, 360° analytics & white-label branding.

See Demo