Active gravitational mass — where it appears
Named by 2 essays across 2 fields — each of them below, with the objects they name alongside it.
The pull that has to equal the pull back
Every test of the equivalence principle drops two things and asks whether gravity pulls them equally. None of them asks whether they pull equally. A body's mass enters gravity twice — once as what is pulled and once as what does the pulling — and if the two ratios differed from one material to another, Newton's third law would fail and a lopsided body could push itself through space. The first test of this used a plastic cylinder floating in a liquid. The best uses the Moon, whose light crust is thicker on the side that never faces the Earth.
The light that pulls twice as hard as its mass
Energy has mass, E/c², and a box of light weighs that much more than an empty one. But the gravity something produces is not set by its energy alone. Pressure counts too, three times over, and light's pressure is a third of its energy — so a beam of light pulls on things beside it twice as hard as its mass would suggest. The box weighs only E/c² because its walls, straining to hold the light in, pull with a negative amount that exactly cancels the difference. Two parallel beams of light do not attract each other at all; two opposed ones attract four times as hard. And a substance whose pressure is negative enough does not pull at all — it pushes.
Named alongside it
The objects these essays reach for when they reach for this one.
Equation of stateEquivalence principleGeneral relativityGravitational massInertial massLunar laser rangingE = mc²Momentum conservationNewtons third lawNull experimentRadiation pressureStress energy tensor