Home
Class 11
CHEMISTRY
A plot of volume (V) versus temperature ...

A plot of volume (V) versus temperature (T) for a gas at constant pressure is a straight line passing through the origin. The plots at different values of pressure are shown in figure. Which of the following order of pressure is correct for this gas ?

A

`p_(1) gt p_(2) gt p_(3) gt p_(4)`

B

`p_(1) = p_(2) = p_(3) = p_(4)`

C

`p_(1) lt p_(2) lt p_(3) lt p_(4)`

D

`p_(1) lt p_(2) = p_(3) lt p_(4)`

Text Solution

Verified by Experts

The correct Answer is:
C

At a particular temperature, `pV =` constant
`{:("Thus,",p_(1)V_(1)=p_(2)V_(2)=p_(3)V_(3)=p_(4)V_(4)),("As",V_(1) gt V_(2) gt V_(3) gt V_(4)),("Therefore,",p_(1) lt p_(2) lt p_(3) lt p_(4)):}`
Promotional Banner

Topper's Solved these Questions

  • STATES OF MATTER

    NCERT EXEMPLAR|Exercise MCQ More Than One Option|4 Videos
  • STATES OF MATTER

    NCERT EXEMPLAR|Exercise Short Answer Type Question|23 Videos
  • SOME BASIC CONCEPTS OF CHEMISTRY

    NCERT EXEMPLAR|Exercise All Questions|45 Videos
  • STRUCTURE OF ATOM

    NCERT EXEMPLAR|Exercise All Questions|53 Videos

Similar Questions

Explore conceptually related problems

A plot of volume (V)versus temperature (T) for agas at constant pressure is a straight line passing through the origin the plots at different values of pressure are show in the figure which of the following order of pressure is correct for this gas?

A plot of P vs T for a given mass of gas at constant volume is a straight line . P vs T at constant volumes V_(1) and V_(2) for an ideal gas are shown below : Which of the following is correct ?

For V versus T curves at constant pressure P_1 and P_2 for and ideal gas shown in figure-

Which of the following will give a linear plot at constant pressure ?

The volume-temperature graphs of a given mass of an ideal gas at constant pressure are shown below. What is the correct order of pressure ?

Assertion: The plot of volume (V) versus pressure (P) at constant temperature is a hyperbola in the first quadrant. Reason: V prop 1//P at constant temperature.