Inelastic collision — where it appears
Named by 2 essays across one field — each of them below, with the objects they name alongside it.
The pile that lands heavier than it weighs
Drop a chain onto a scale and the reading is three times the weight of the part that has landed — not approximately, exactly, all the way through the fall. The extra two parts are the force needed to stop links that are still arriving, and the same arithmetic run backwards says that picking a chain up wastes exactly half the energy it takes to get it moving.
The raindrop that falls at a seventh of g
A drop of water falling through a still mist, gathering every droplet in its path and with no air to slow it, does not fall at g. It settles to an acceleration of exactly a seventh of g, whatever the mist, whatever the drop, and its radius grows by the same amount for every metre it falls. Of the work gravity does on it, three-sevenths goes into the gathering and never comes back. The same reasoning gives a third of g for a chain paid out from a heap, and a single rule — g/(2n + 1) — for anything that sweeps up mass as the n-th power of the distance it falls.
Named alongside it
The objects these essays reach for when they reach for this one.
DissipationMomentumVariable massCentre of massCloud microphysicsFree fallImpulseKinetic energyMomentum fluxScalingTerminal velocity