Astronomical unit (AU) — where it appears
Named by 8 essays across 4 fields — each of them below, with the objects they name alongside it.
The law that links period to size, and weighs everything
Kepler found that the square of the period goes as the cube of the orbit. Newton found the constant of proportionality, and that constant is a mass — which is how every mass in astronomy has been obtained since.
The average depends on what is being averaged
Four ways of averaging one orbit's distance from its primary give four different numbers, and only two of them are the semi-major axis. Which two is not a matter of convention, and the same arithmetic decides how much sunlight a planet receives in a year.
Nothing in the sky is weighed in kilograms
The Sun's gravitational parameter is known to eleven significant figures. The Sun's mass is known to five. The two statements are about the same object and the difference between them is a constant measured in basements, which is the worst-determined fundamental constant in physics.
The solar system measured from inside one orbit
Venus never appears more than 47 degrees from the Sun. That single angle gives its orbital radius as a fraction of the Earth's, with no distance measured anywhere — and every other planet gives one up as easily.
The triangle that reaches the stars, and stops
Parallax is the only distance measurement in astronomy that assumes nothing. It is also the only one with a hard ceiling, and everything beyond that ceiling rests on it.
Every distance is measured with the last one
No single method reaches from a planet to a distant galaxy. The ladder is built rung by rung, each calibrated on the one below, and the errors multiply all the way up.
A brightness is a distance only if something is known
The inverse square law turns a brightness into a distance in one line. The line contains a quantity that has never been measured for any object outside the solar system.
A right angle short by a seventh of a degree
When the Moon is exactly half lit, the angle at the Moon between the Sun and the Earth is a right angle, so the angle seen from the Earth gives the Sun's distance in units of the Moon's. Aristarchus measured 87° and concluded the Sun was nineteen times further away. The construction was exact; the angle he needed was 89.85°, and at that angle a tenth of a degree is the whole answer.
Named alongside it
The objects these essays reach for when they reach for this one.
Distance ladderParsecAbsolute magnitudeDistance modulusEccentricityGreatest elongationKepler's third lawMetallicityPeriapsisPhotometryRelative scaleTrigonometric parallax