Home
Class 11
PHYSICS
Suppose there are N molecules each of ma...

Suppose there are N molecules each of mass m, of an ideal gas in a container. The x component of velocity of a molecule is denoted by `u_(x)`. The gas is enclosed using a horizontal piston of area A as shown.

The pressure of the gas can also be written in terms of momentum transferred per collision `(Deltap)` and collision frequency (f) on the wall of area A as

A

`Deltapxxf`

B

`(Deltap)/(Axxf)`

C

`(Deltapxxf)/(A)`

D

none of these

Text Solution

Verified by Experts

The correct Answer is:
C
Promotional Banner

Topper's Solved these Questions

  • KINETIC THEORY OF GASES

    CENGAGE PHYSICS|Exercise Fill in the blanks|8 Videos
  • KINETIC THEORY OF GASES

    CENGAGE PHYSICS|Exercise Multiple correct|3 Videos
  • KINETIC THEORY OF GASES

    CENGAGE PHYSICS|Exercise Compression|2 Videos
  • KINEMATICS-2

    CENGAGE PHYSICS|Exercise Exercise Integer|9 Videos
  • KINETIC THEORY OF GASES AND FIRST LAW OF THERMODYNAMICS

    CENGAGE PHYSICS|Exercise Interger|11 Videos

Similar Questions

Explore conceptually related problems

Suppose there are N molecules each of mass m, of an ideal gas in a container. The x component of velocity of a molecule is denoted by u_(x) . The gas is enclosed using a horizontal piston of area A as shown. The pressure of the gas is

Suppose there are N molecules each of mass m, of an ideal gas in a container. The x component of velocity of a molecule is denoted by u_(x) . The gas is enclosed using a horizontal piston of area A as shown. If the temperature of gas is doubled keeping volume constant, we know from the gas law that the pressure will be doubled. On microscopic level this increase in pressure is because

Suppose there are N molecules each of mass m, of an ideal gas in a container. The x component of velocity of a molecule is denoted by u_(x) . The gas is enclosed using a horizontal piston of area A as shown. If the piston is moved in so as to reduce the volume of gas by half, keeping the temperature of gas constant, we know from the gas law that the pressure will be doubled. On microscopic level the increase in pressure on the Vertical side walls is because

Suppose there are N molecules each of mass m, of an ideal gas in a container. The x component of velocity of a molecule is denoted by u_(x) . The gas is enclosed using a horizontal piston of area A as shown. If the piston is moved so as to reduce the volume of gas by half, keeping the temperature of gas constant , we know from the gas law that the pressure will be doubled. On microscopic level the increase in pressure on the piston is because

Collision frequency (Z) of a gas at a particular pressure

The average momentum of a molecule in a sample of an ideal gas depends on

The collision taking place among gas molecules depends upon

What is the average velocity of the molecules of an ideal gas ?