Column-$I$ shows graphs of thermodynamic processes, and column-$II$ contains information about various thermodynamic variables. Match column-$I$ with the information in column-$II$.
Column-$I$Column-$II$
$(A)$ $PV$ vs $V$ (Isothermal expansion)$(P)$ $W$ > 0
$(B)$ $P$ vs $T$ (Isochoric heating)$(Q)$ $W$ < 0
$(C)$ $P$ vs $V$ (Isobaric expansion)$(R)$ $\Delta Q$ > 0
$(D)$ $V$ vs $T$ (Isobaric compression)$(S)$ $\Delta U$ > 0
$(T)$ $\Delta U$ < 0

  • A
    $A-PR, B-RS, C-PR, D-QT$
  • B
    $A-PR, B-RS, C-PRS, D-QT$
  • C
    $A-PR, B-QS, C-RS, D-Q$
  • D
    $A-RS, B-PS, C-QR, D-QT$

Explore More

Similar Questions

$A$ soap bubble of radius $r$ contains a monoatomic ideal gas. The gas is heated in such a manner that the bubble remains in mechanical equilibrium. Assuming that the soap material of the bubble has no heat capacity,the molar heat capacity of the gas in the process will be (Neglect atmospheric pressure). (in $R$)

Answer the following questions based on the $P-T$ phase diagram of $CO_{2}$:
$(a)$ $CO_{2}$ at $1 \; atm$ pressure and temperature $-60^{\circ} C$ is compressed isothermally. Does it go through a liquid phase?
$(b)$ What happens when $CO_{2}$ at $4 \; atm$ pressure is cooled from room temperature at constant pressure?
$(c)$ Describe qualitatively the changes in a given mass of solid $CO_{2}$ at $10 \; atm$ pressure and temperature $-65^{\circ} C$ as it is heated up to room temperature at constant pressure.
$(d)$ $CO_{2}$ is heated to a temperature $70^{\circ} C$ and compressed isothermally. What changes in its properties do you expect to observe?

The efficiency of a thermodynamic cycle $1-2-3-1$ (see picture) is $20\%$ and for another thermodynamic cycle $1-3-4-1$ efficiency is equal to $10\%$. Determine the efficiency $\eta$ (in $\%$) of the thermodynamic cycle $1-2-3-4-1$. The gas is assumed to be ideal.

Difficult
View Solution

The ratio of the work done, change in internal energy, and heat absorbed when a diatomic gas expands at constant pressure is

$A$ quantity of heat $Q$ is supplied to a monoatomic ideal gas which expands at constant pressure. What is the fraction of heat converted into work? Given $\gamma = \frac{C_p}{C_v} = \frac{5}{3}$.

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