Problem
If the Boltzmann constant suddenly doubled, how would the following change: the pressure of a gas at fixed , , and the latent heat of evaporation?
Solution
I analyse one quantity at a time using the relations of kinetic theory, keeping , , fixed and substituting . The pressure is proportional to , so it doubles: The root-mean-square speed depends on (since ): The latent heat is an energy tied to molecular bonds: it does not contain , so its value per particle does not change directly. What matters for boiling, however, is the dimensionless ratio that governs the Clausius–Clapeyron relation: Halving makes it easier to overcome the bonds: the liquid would evaporate at lower temperatures.
Links
Topics: Kinetic theory of gases Concepts: Pressure · Latent heat and changes of state Skills: Analysis of limiting cases and sci-fi physics