Summary of thermodynamics formulae (ch. 8b, 9–12). Derivations and limits of validity are in the respective chapters.

Ideal gas PV=nRTPV = nRT

Internal energy (gas with ff degrees of freedom) Eint=f2nRTE_\text{int} = \tfrac{f}{2}nRT

First law

ΔEint=QL\Delta E_\text{int} = Q - L

Specific heats Cp=Cv+RC_p = C_v + R

Adiabatic transformation PVγ=costPV^\gamma = \text{cost}

Carnot efficiency η=1TfTc\eta = 1 - \frac{T_f}{T_c}

Second law

Entropy: ΔS=dQT\Delta S = \displaystyle\int \frac{\dd Q}{T}; in real processes ΔStot0\Delta S_\text{tot} \geq 0.

Topics: Thermodynamics · Kinetic theory of gases · Heat engines · Entropy and the second law

Related exercises: Worked exercise — reversible vs irreversible isothermal expansion · Problem — True or false on engines and fridges · Problem — True or false on reversibility and cycles