Home
Class 11
PHYSICS
Find the number of atoms in molecule of ...

Find the number of atoms in molecule of a gas for which the ratio of specific heats at constant pressure and constant volume`lamda` becomes `(25)/(21)` times if the rotational degree of freedom of its molecules are frozen. Assume that the gas molecules originally had translational and rotational degree of freedom.

Text Solution

Verified by Experts

The correct Answer is:
Two
Promotional Banner

Topper's Solved these Questions

  • KINETIC THEORY OF GASES

    ARIHANT|Exercise Level 2|18 Videos
  • KINETIC THEORY OF GASES

    ARIHANT|Exercise Level 3|4 Videos
  • KINEMATICS

    ARIHANT|Exercise Level 3|33 Videos
  • MOMENTUM AND CENTRE OF MASS

    ARIHANT|Exercise Momentum And Center of Mass|117 Videos

Similar Questions

Explore conceptually related problems

The degrees of freedom of a molecule of a triatomic gas are

For a gas if ratio of specific heats at constant pressure and volume is g then value of degrees of freedom is

An ideal gas has molecules with 5 degrees of freedom. The ratio of specific heats at constant pressure (C_(p)) and at constant volume (C_(v)) is

The number of degrees of freedom of molecules of argon gas is

A gas have 3 translation and 2 Rotational degree of freedom. Find (C_p)/(C_v) ?

An ideal gas has molecules with f degrees of freedom.The ratio of specific heats at constant pressure (C_(P)) and at constant volume (C_(V)) is ?

Name the factors on which degrees of freedom of a gas molecule depend.

Mean kinetic energy per degree of freedom for gas molecule is

Assertion : The number of degrees of freedom of triatomic molecules is 6 Reason : Triatomic molecules have three translational degrees of freedom and three rotational degrees of freedom.