Inductance — where it appears
Named by 2 essays across one field — each of them below, with the objects they name alongside it.
The coupling that is the same both ways
A small loop and a large one catch the same fraction of each other's field. Nothing in the geometry suggests it — one has twenty-one times the area of the other — and the two quantities are computed here by two integrals with nothing in common, over two surfaces of different shapes, agreeing to seven parts in ten thousand.
The push at the end of a pair of rails
A railgun is two metal rails, a sliding conductor across them and a very large current, and the push on the slider is half the inductance per metre times the current squared. The half is not a fudge. The slider sits at the end of two rails that stop, and a wire that stops gives exactly half the field of one that does not. Followed through, the same circuit pushes its own rails apart six times harder per metre than it pushes the projectile, stores as much energy in its field as it gives the projectile, and wastes less the faster it shoots.
Named alongside it
The objects these essays reach for when they reach for this one.
AntennaBiot–SavartBiot savart lawEfficiencyFaraday's lawLinearityThe Lorentz forceMagnetic energyMagnetic fluxMagnetic pressureMutual inductanceNeumann formula