Home
Class 11
PHYSICS
Volume versus temperature graphs for a g...

Volume versus temperature graphs for a given mass of an ideal gas are shown in figure. At two different values of constant pressure. What can be inferred about relation between `P_(1)` and `P_(2)` ?

A

`P_(1) gtP_(2)`

B

`P_(1)=P_(2)`

C

`P_(1)ltP_(2)`

D

data is insufficient

Text Solution

Verified by Experts

The correct Answer is:
A

According to Charle's law
```VpropTorV/T="constant"=1/P`
As in graph, slope at `P_(2)` is more than slope at `P_(1).`
thereforeP_(1)gtP_(2)`
Promotional Banner

Topper's Solved these Questions

  • KINETIC THEORY

    NCERT FINGERTIPS ENGLISH|Exercise ASSERTION & REASON|10 Videos
  • KINETIC THEORY

    NCERT FINGERTIPS ENGLISH|Exercise Specific Heat Capacity|13 Videos
  • KINETIC THEORY

    NCERT FINGERTIPS ENGLISH|Exercise HOTS|10 Videos
  • GRAVITATION

    NCERT FINGERTIPS ENGLISH|Exercise Assertion And Reason|15 Videos
  • LAWS OF MOTION

    NCERT FINGERTIPS ENGLISH|Exercise Assertion And Reason|15 Videos

Similar Questions

Explore conceptually related problems

Pressure versus temperature graphs of an ideal gas are as shown in figure. Choose the wrong statement

Pressure versus temperature graphs of an ideal gas are as shown in figure. Choose the wrong statement

Pressure versus density graph of an ideal gas is shown in figure

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 ?

Figure shows volume - temperature (V-T) graph for same mass of an ideal gas at two different pressures P_1 and P_2 . Hence

Pressure versus temperature graph of an ideal gas is shown in figure. Density of the gas at point A is rho_(0) . Density at B will be

The graph of pressure and temperature for an ideal gas is as shown in figure. The given process is

Volume versus temperature graph of two moles of helium gas is as shown in figure. The ratio of heat absorbed and the work done by the gas in process 1-2 is

Volume versus temperature graph of two moles of helium gas is as shown in figure. The ratio of heat absorbed and the work done by the gas in process 1-2 is

Temperature versus pressure graph of an ideal gas is shown in Fig. During the process AB