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  2. List of physical constants - Wikipedia

    en.wikipedia.org/wiki/List_of_physical_constants

    Symbol Quantity Value [a] [b] Relative standard uncertainty Ref [1] speed of light in vacuum 299 792 458 ... first radiation constant for spectral radiance

  3. Radiation constant - Wikipedia

    en.wikipedia.org/wiki/Radiation_constant

    Radiation constant may refer to: The first and second radiation constants c 1 and c 2 – see Planck's Law; The radiation density constant a – see Stefan ...

  4. Template:Physical constants - Wikipedia

    en.wikipedia.org/wiki/Template:Physical_constants

    symbol If set to yes, the value is preceded by the symbol of the constant, followed by ≈ or = depending on whether round is set. round If omitted, the value is shown along with its standard uncertainty. If set to an integer n, the value is rounded to the first n digits after the decimal point. unit

  5. Planck constant - Wikipedia

    en.wikipedia.org/wiki/Planck_constant

    Planck was able to calculate the value of from experimental data on black-body radiation: his result, 6.55 × 10 −34 J⋅s, is within 1.2% of the currently defined value. [2] He also made the first determination of the Boltzmann constant from the same data and theory. [14]

  6. Stefan–Boltzmann law - Wikipedia

    en.wikipedia.org/wiki/Stefan–Boltzmann_law

    This was the first sensible value for the temperature of the Sun. Before this, values ranging from as low as 1800 °C to as high as 13 000 000 °C [25] were claimed. The lower value of 1800 °C was determined by Claude Pouillet (1790–1868) in 1838 using the Dulong–Petit law.

  7. Planck's law - Wikipedia

    en.wikipedia.org/wiki/Planck's_law

    Consequently, these terms can be considered as physical constants themselves, [19] and are therefore referred to as the first radiation constant c 1L and the second radiation constant c 2 with c 1 L = 2 hc 2

  8. Planck relation - Wikipedia

    en.wikipedia.org/wiki/Planck_relation

    The Planck relation [1] [2] [3] (referred to as Planck's energy–frequency relation, [4] the Planck–Einstein relation, [5] Planck equation, [6] and Planck formula, [7] though the latter might also refer to Planck's law [8] [9]) is a fundamental equation in quantum mechanics which states that the energy E of a photon, known as photon energy, is proportional to its frequency ν: =.

  9. Faraday constant - Wikipedia

    en.wikipedia.org/wiki/Faraday_constant

    F = ⁠ N A / 1/e ⁠ = 9.648 533 212 331 001 84 × 10 4 C⋅mol −1. One common use of the Faraday constant is in electrolysis calculations. One can divide the amount of charge (the current integrated over time) by the Faraday constant in order to find the chemical amount of a substance (in moles) that has been electrolyzed.