Mean Free Path and RMS Speed
Mean Free Path and RMS Speed: Overview
This topic covers concepts, such as, Mean Free Path & Time for Successive Collisions between Walls etc.
Important Questions on Mean Free Path and RMS Speed
Derive the formula for time for successive collision between the walls of the container with the molecule.

For a gas with number of molecules per unit volume, Suppose the molecules of a gas are spheres of diameter the average speed of each molecule is . The time between two successive collisions is on the average

The mean free path and RMS velocity of a nitrogen molecule at a temperature are and , respectively. The mean time between two successive collisions will be , what is the value of .

The mean free path of molecules of a gas (radius ‘’) is inversely proportional to .

The mean free path of a gas sample is given by:

If the temperature and pressure of a gas is doubled the mean free path of the gas molecules

Calculate the time taken between two successive collisions for a helium molecule having a diameter and an average velocity of , consider molecules present per unit volume.

Derive the formula of the time interval between two successive collisions of molecules.

For a molecule of an ideal gas, the number density is and the mean free path is . The diameter of the gas molecule is

The velocity of five particles in are . Calculate r.m.s. speed in .

The root mean square velocity of a perfect gas is

The root mean square velocity of a gas molecule at is . The gas is

At what temperature is the root mean square speed of oxygen atom equal to the root mean square speed of helium gas atom at ? Atomic mass of oxygen and that of helium .

Define the following
Mean free path

Define the following
Free path

The temperature of an ideal gas is increased from to . If at , the RMS velocity of the gas molecules is , then at it becomes:

of nitrogen is enclosed in a vessel at a temperature of . At which temperature the velocity of nitrogen gas is twice it’s the velocity at ?

A gas is filled in a container at pressure . If the mass of molecules is halved and their speed is doubled, then the resultant pressure would be

In the following a statement of Assertion is followed by a statement of Reason.
Assertion: Mean free path of a gas molecule is inversely proportional to the density of gas.
Reason: Path of a gas molecule between two adjacent collision is straight line.
