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  2. 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 ...

  3. Energy–momentum relation - Wikipedia

    en.wikipedia.org/wiki/Energy–momentum_relation

    The energy and momentum of an object measured in two inertial frames in energy–momentum space – the yellow frame measures E and p while the blue frame measures E ′ and p ′. The green arrow is the four-momentum P of an object with length proportional to its rest mass m 0 .

  4. Help:Displaying a formula - Wikipedia

    en.wikipedia.org/wiki/Help:Displaying_a_formula

    This screenshot shows the formula E = mc 2 being edited using VisualEditor.The window is opened by typing "<math>" in VisualEditor. The visual editor shows a button that allows to choose one of three offered modes to display a formula.

  5. EMC2 - Wikipedia

    en.wikipedia.org/wiki/Emc2

    EMC2, Energy/Matter Conversion Corporation, Inc., a company founded by Robert W. Bussard to develop fusion power with a device called the Polywell; EMC2, the first computer-based non-linear editing system, introduced in 1989 by Editing Machines Corp.

  6. File:E=mc²-explication.svg - Wikipedia

    en.wikipedia.org/wiki/File:E=mc²-explication.svg

    You are free: to share – to copy, distribute and transmit the work; to remix – to adapt the work; Under the following conditions: attribution – You must give appropriate credit, provide a link to the license, and indicate if changes were made.

  7. E=MC2 (disambiguation) - Wikipedia

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

    Download QR code; Print/export Download as PDF; ... E = mc 2 is the equation of mass–energy equivalence. E=MC 2 or E=MC2 may also refer to:

  8. Nuclear binding energy - Wikipedia

    en.wikipedia.org/wiki/Nuclear_binding_energy

    The difference in mass can be calculated by the Einstein equation, E = mc 2, where E is the nuclear binding energy, c is the speed of light, and m is the difference in mass. This 'missing mass' is known as the mass defect, and represents the energy that was released when the nucleus was formed.

  9. Classical electron radius - Wikipedia

    en.wikipedia.org/wiki/Classical_electron_radius

    It links the classical electrostatic self-interaction energy of a homogeneous charge distribution to the electron's relativistic mass-energy. According to modern understanding, the electron is a point particle with a point charge and no spatial extent. Nevertheless, it is useful to define a length that characterizes electron interactions in ...