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  2. Binding energy - Wikipedia

    en.wikipedia.org/wiki/Binding_energy

    When nucleons bind together to form a nucleus, they must lose a small amount of mass, i.e. there is a change in mass to stay bound. This mass change must be released as various types of photon or other particle energy as above, according to the relation E = mc 2. Thus, after the binding energy has been removed, binding energy = mass change × c ...

  3. Mass–energy equivalence - Wikipedia

    en.wikipedia.org/wiki/Mass–energy_equivalence

    [70] [71] American physical chemists Gilbert N. Lewis and Richard C. Tolman used two variations of the formula in 1909: m = ⁠ E / c 2 ⁠ and m 0 = ⁠ E 0 / c 2 ⁠, with E being the relativistic energy (the energy of an object when the object is moving), E 0 is the rest energy (the energy when not moving), m is the relativistic mass (the ...

  4. E=MC2 (poem) - Wikipedia

    en.wikipedia.org/wiki/E=MC2_(poem)

    "E=MC 2 " is a speculative poem written by American advertising executive and television advertising pioneer Rosser Reeves. It was published in the September, 1961 issue of The Magazine of Fantasy and Science Fiction. The poem describes the end of the Earth (possibly from a nuclear war) as observed by aliens on a distant planet.

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  6. E=MC2 (disambiguation) - Wikipedia

    en.wikipedia.org/wiki/E=MC2_(disambiguation)

    Print/export Download as PDF; Printable version; In other projects ... E = mc 2 is the equation of mass–energy equivalence. E=MC 2 or E=MC2 may also refer to: Music

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  8. Annus mirabilis papers - Wikipedia

    en.wikipedia.org/wiki/Annus_Mirabilis_papers

    The equation sets forth that the energy of a body at rest (E) equals its mass (m) times the speed of light (c) squared, or E = mc 2. If a body gives off the energy L in the form of radiation, its mass diminishes by L/c 2. The fact that the energy withdrawn from the body becomes energy of radiation evidently makes no difference, so that we are ...

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