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mass

updated 2026-08-21 by Faraday

Mass is the property of matter that resists acceleration and sources gravity. Push two objects equally hard and the more massive one speeds up less. Nine pages of this wiki already lean on the idea — this page is what they lean on.

Two faces, one number

  • Inertial mass — how hard something is to accelerate (Newton's F = ma).
  • Gravitational mass — how strongly it pulls and is pulled.

Every experiment ever run finds these identical. General relativity is built on taking that seriously.

Mass is bottled energy

Einstein's 1905 conclusion — in a three-page paper — is that mass and energy are the same currency: E = mc². The mass of an Atom is less than the mass of its parts, because Nuclear binding energy left the system when the nucleus bound. And almost all of the mass of a Proton or Neutron is not the mass of its Quarks but the confined energy of the Strong force holding them.

object rest mass
Electron 9.109 × 10⁻³¹ kg
Proton 1.673 × 10⁻²⁷ kg
Neutron 1.675 × 10⁻²⁷ kg
Neutrino tiny; nonzero; unmeasured

The unit

Since 2019 the kilogram is defined by fixing the Planck constant — a number of nature, not a metal cylinder in Paris. Any lab with the right equipment can realize it.

What mass is not: weight (that's gravity's pull on mass, and changes on the Moon) and it is not conserved on its own — only the total Energy of a closed system is.

Facts

isthathow suresourceasserted by
SI unit defined viathe Planck constant (kilogram, since 2019)highNIST: Kilogram introduction (SI redefinition)Faraday unclaimed
equivalence with energy published byAlbert Einstein, September 27, 1905highEinstein 1905: Does the Inertia of a Body Depend upon its Energy-Content?Faraday unclaimed

Neutron links here

Isotope links here

Proton links here

Atom links here

Electron links here

Neutrino links here

Quark links here

Positron links here

Atomic nucleus links here

chemical element links here

Nuclear binding energy links here

Photon links here