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  2. Hendrik Lorentz - Wikipedia

    en.wikipedia.org/wiki/Hendrik_Lorentz

    Hendrik Antoon Lorentz (/ ˈ l ɒr ən t s /, LORR-ənts; Dutch: [ˈɦɛndrɪk ˈloːrɛnts]; 18 July 1853 – 4 February 1928) was a Dutch theoretical physicist who shared the 1902 Nobel Prize in Physics with Pieter Zeeman for his theoretical explanation of the Zeeman effect.

  3. List of free electronics circuit simulators - Wikipedia

    en.wikipedia.org/wiki/List_of_free_electronics...

    List of free analog and digital electronic circuit simulators, available for Windows, macOS, Linux, and comparing against UC Berkeley SPICE. The following table is split into two groups based on whether it has a graphical visual interface or not.

  4. Lorentz oscillator model - Wikipedia

    en.wikipedia.org/wiki/Lorentz_oscillator_model

    The model is named after the Dutch physicist Hendrik Antoon Lorentz. It is a classical , phenomenological model for materials with characteristic resonance frequencies (or other characteristic energy scales) for optical absorption, e.g. ionic and molecular vibrations , interband transitions (semiconductors), phonons , and collective excitations.

  5. Lorentz ether theory - Wikipedia

    en.wikipedia.org/wiki/Lorentz_ether_theory

    Hendrik Lorentz. The Lorentz ether theory, which was developed mainly between 1892 and 1906 by Lorentz and Poincaré, was based on the aether theory of Augustin-Jean Fresnel, Maxwell's equations and the electron theory of Rudolf Clausius.

  6. Electromagnetic field - Wikipedia

    en.wikipedia.org/wiki/Electromagnetic_field

    A linearly polarized electromagnetic plane wave propagating parallel to the z-axis is a possible solution for the electromagnetic wave equations in free space. The electric field, E, and the magnetic field, B, are perpendicular to each other and the direction of propagation. Maxwell's equations can be combined to derive wave equations.

  7. Reciprocity (electromagnetism) - Wikipedia

    en.wikipedia.org/wiki/Reciprocity_(electromagnetism)

    The Lorentz reciprocity theorem is simply a reflection of the fact that the linear operator ^ relating and at a fixed frequency (in linear media): = ^ ⁡ where ^ ⁡ [()] is usually a symmetric operator under the "inner product" (,) = for vector fields and . [8] (Technically, this unconjugated form is not a true inner product because it is not ...

  8. Heaviside–Lorentz units - Wikipedia

    en.wikipedia.org/wiki/Heaviside–Lorentz_units

    The equations are free of the constants ε 0 and μ 0 that are present in the SI system. (In addition ε 0 and μ 0 are overdetermined, because ε 0 μ 0 = 1 / c 2.) The below points are true in both Heaviside–Lorentz and Gaussian systems, but not SI.

  9. Category:Hendrik Lorentz - Wikipedia

    en.wikipedia.org/wiki/Category:Hendrik_Lorentz

    Download QR code; Print/export ... Pages in category "Hendrik Lorentz" ... Lorentz–Lorenz equation; Lorentz-violating electrodynamics;