Home
Class 11
CHEMISTRY
When 5 moles of an ideal gas having non-...

When 5 moles of an ideal gas having non- linear molecules is heated from 1000 K to 2000 K at cal. Assume that all the degree of freedom in molecules are active in this temperature range and the heat capacity of gas is temperature independent. The atomicity of gas is :[in2=0.7]

Promotional Banner

Similar Questions

Explore conceptually related problems

The mean translational kinetic energy of a molecule of an ideal gas at temperature T K is

A gas has molar heat capacity C = 4.5 R in the process PT = constant . The number of degrees of freedom of molecules in the gas is

Find the number of degrees of freedom of molecules in a gas whose molar heat capacity at constant pressure is equal to C_(P)=20J /(moL K)

The temperature of an ideal gas is increased from 120 K to 480 K. If at 120 K, the root mean square speed of gas molecules is v, then at 480 K it will be

The average degrees of freedom per molecule for a gas is 6. The gas performs 25J of work when it expands at constant pressure. The heat absorbed by the gas is

The molecules of an ideal gas have 6 degrees of freedom. The temperature of the gas is T. The average translational kinetic energy of its molecules is

One mole of an ideal gas requires 207 J heat to raise the temperature by 10K When heated at constant pressure. If the same gas is heated at constant volume to raise the temperature by 5K, then the heat required is