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  2. Speed of light - Wikipedia

    en.wikipedia.org/wiki/Speed_of_Light

    The speed of light in vacuum, commonly denoted c, is a universal physical constant that is exactly equal to 299,792,458 metres per second (approximately 300,000 kilometres per second; 186,000 miles per second; 671 million miles per hour).

  3. List of physical constants - Wikipedia

    en.wikipedia.org/wiki/List_of_physical_constants

    speed of light in vacuum ... [c] 1.088(30) × 10 −52 m −2 ‍ ... While the values of the physical constants are independent of the system of units in use, each ...

  4. Electromagnetic wave equation - Wikipedia

    en.wikipedia.org/wiki/Electromagnetic_wave_equation

    is the speed of light (i.e. phase velocity) in a medium with permeability μ, and permittivity ε, and ∇ 2 is the Laplace operator. In a vacuum, v ph = c 0 = 299 792 458 m/s, a fundamental physical constant. [1] The electromagnetic wave equation derives from Maxwell's equations.

  5. Fine-structure constant - Wikipedia

    en.wikipedia.org/wiki/Fine-structure_constant

    c is the speed of light (299 792 458 m⋅s −1 ‍ [8]); ε 0 is the electric constant (8.854 187 8188 (14) × 10 −12 F⋅m −1 ‍ [9]). Since the 2019 revision of the SI, the only quantity in this list that does not have an exact value in SI units is the electric constant (vacuum permittivity).

  6. Light - Wikipedia

    en.wikipedia.org/wiki/Light

    The speed of light in vacuum is defined to be exactly 299 792 458 m/s (approximately 186,282 miles per second). The fixed value of the speed of light in SI units results from the fact that the metre is now defined in terms of the speed of light. All forms of electromagnetic radiation move at exactly this same speed in vacuum.

  7. Variable speed of light - Wikipedia

    en.wikipedia.org/wiki/Variable_speed_of_light

    Attempts to incorporate a variable speed of light into physics were made by Robert Dicke in 1957, and by several researchers starting from the late 1980s. VSL should not be confused with faster than light theories, its dependence on a medium 's refractive index or its measurement in a remote observer's frame of reference in a gravitational ...

  8. Redshift - Wikipedia

    en.wikipedia.org/wiki/Redshift

    c is the speed of light. This gravitational redshift result can be derived from the assumptions of special relativity and the equivalence principle; the full theory of general relativity is not required. [45] The effect is very small but measurable on Earth using the Mössbauer effect and was first observed in the Pound–Rebka experiment. [46]

  9. Natural units - Wikipedia

    en.wikipedia.org/wiki/Natural_units

    In physics, natural unit systems are measurement systems for which selected physical constants have been set to 1 through nondimensionalization of physical units.For example, the speed of light c may be set to 1, and it may then be omitted, equating mass and energy directly E = m rather than using c as a conversion factor in the typical mass–energy equivalence equation E = mc 2.