Kinetic Theory
Which equation represents the ideal gas equation for $n$ moles of a gas?
According to the kinetic theory of gases, the pressure $P$ exerted by an ideal gas of density $\rho$ having RMS speed $v_{rms}$ is given by:
The average translational kinetic energy of a gas molecule is directly proportional to its:
How many degrees of freedom does a monoatomic gas molecule (like Helium) possess?
According to the law of equipartition of energy, the energy associated with each degree of freedom per molecule in thermal equilibrium at temperature $T$ is:
The ratio of specific heats $\gamma = C_p / C_v$ for a monoatomic ideal gas is:
Which of the following correct relationship exists between RMS speed ($v_{rms}$), average speed ($v_{avg}$), and most probable speed ($v_{mp}$) of gas molecules?
At what temperature does the root mean square (RMS) speed of gas molecules theoretically become zero?
If the absolute temperature of a gas is increased by $4$ times, its RMS speed will become:
What is the approximate value of Universal Gas Constant $R$ in SI units?
The molar specific heat capacity at constant volume ($C_v$) for a monoatomic gas is:
Which of the following equations correctly represents Mayer's relation for molar specific heat capacities of an ideal gas?