Vibrational energy — where it appears
Named by 2 essays across one field — each of them below, with the objects they name alongside it.
Half a kT for every way of moving
A heat capacity ought to be a count. Every quadratic term in a system's energy carries half a kT of it, so warming a gas is a matter of enumerating the ways its molecules can move — and the fact that the count comes out wrong for hydrogen is how a thermometer measured Planck's constant.
The ball that weighs how a gas stores heat
Drop a steel ball into a glass tube that fits it closely, on top of a flask of gas, and it does not fall to the bottom. It bounces, up and down, on the gas trapped beneath it, with a period of about a second. The gas is a spring, and its stiffness is the pressure multiplied by a number that counts how many ways the gas's molecules can hold energy. So a stopwatch on a bouncing ball measures something that otherwise needs a calorimeter: whether the molecules can rotate, whether they can vibrate, and how far a vibration has woken up at the temperature of the room.
Named alongside it
The objects these essays reach for when they reach for this one.
Degrees of freedomEquipartitionHeat capacityAdiabatic indexAdiabatic processKinetic theoryPartition functionQuantisationRelaxation timeRotational energySimple harmonic motion