Bohr model — where it appears
Named by 2 essays across one field — each of them below, with the objects they name alongside it.
The atom the size of a bacterium
Excite hydrogen's electron to the hundredth level and the atom is a micrometre across, bound by a thousandth of an electronvolt, pulled apart by the field of a torch battery, and — in its most circular state — able to live for nearly a second. Every one of those numbers is a power of n, and together they make the most exaggerated atom there is into one of the most useful.
The X-ray line that counts the protons
Strike a metal with fast electrons and it gives off X-rays at a few sharp energies characteristic of the metal. In 1913 Henry Moseley measured the strongest of them for element after element and found that the square root of its energy rose in equal steps, one step per element — as if something inside each atom were being counted. It was the charge on the nucleus. The periodic table had been ordered by weight; Moseley's line ordered it by protons, fixed the elements it was missing, and showed that an electron deep inside a heavy atom behaves like the electron in hydrogen, with the charge turned up.
Named alongside it
The objects these essays reach for when they reach for this one.
Atomic numberBlackbody radiationCorrespondence principleField ionisationLarmor formulaMoseleys lawPeriodic tableRydberg atomScaling lawScreeningSpontaneous emissionX ray fluorescence