Metonic cycle — where it appears
Named by 3 essays across one field — each of them below, with the objects they name alongside it.
Also named here as tropical year — the same set of essays touches all of them, so they are one junction rather than several.
A year that is not a whole number of days
The tropical year is 365.24219 days, so every calendar is a fraction chosen to approximate 0.24219. The continued fraction says which fractions are best, and the one in use is not among them.
A month that has to be tabulated
A lunisolar calendar reconciles two periods that share no common multiple, so every historical cycle is a convergent of one continued fraction. Meton's nineteen years is wrong by two hours, which is a day in two hundred and nineteen years — and that is why the moon that fixes Easter is a table rather than the sky.
A full moon computed from the year number
The date of Easter is defined by the Moon and computed without looking at it — ten lines of integer arithmetic on the year number, a finite machine that repeats itself exactly every 5.7 million years. Its output has a spike on 19 April that no sky produces, a table that has kept pace with the real Moon for four centuries, and a Julian twin that is now four days behind it.
Named alongside it
The objects these essays reach for when they reach for this one.
Synodic monthTropical yearComputusContinued fractionEpactIntercalationLunisolar calendarBest approximationCalendar driftConvergentEcclesiastical moonGolden number