Home
Class 11
PHYSICS
Find the number of degrees of freedom of...

Find the number of degrees of freedom of molecules in a gas. Whose molar heat capacity
(a) at constant pressure `C_p = 29 J mol^-1 K^-1`
(b) `C = 29 J mol^-1 K^-1` in the precess (pT) = constant.

Promotional Banner

Similar Questions

Explore conceptually related problems

Find the number of degrees of freedom of molecules in a gas. Whose molar heat capacity (a) at constant pressure C_p = 29 J mol^-1 K^-1 (b) C = 29 J mol^-1 K^-1 in the process (pT) = constant.

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)

Find the molar mass and the number of degrees of freedom of molecules in a gas if its heat capacities are C_(v) = 650 J kg^(-1) K^(-1) and C_(P) = 910 J kg^(-1) K^(-1)

Find the molar mass and the number of degrees of freedom of molecules in a gas if its heat capacities are C_(v) = 650 J kg^(-1) K^(-1) and C_(P) = 910 J kg^(-1) K^(-1)

Find the number of degree of freedom (to the nearest integer) of molecule of gas, whose molar heat capacity is C = 29 J/mol/K in the process PT = constant)

Find the number of degrees of freedom for the molecules of a gas for which (a) C_p = 37.55 J mol^-1K^-1 in the process, PT = constant.

Calculate the molar specific heat of oxygen gas at constant volume. (R = 8.314 J mol^(-1) K^(-1) )

Find the molar mass and the number of degrees of freedom of a gas if its heat capacities are as c_(v)=650Jkg^(-1)K^(-1) and c_(p)=910J kg^(-1)K .

Calculate the molar specific heat of monoatomic gas at constant volume. (R=8.314 J mol^(-1) K^(-1) )

Calculate heat of combustion of benzene at constant pressure at 27^@C . (R=8.3 J mol^-1 K^-1)