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  2. Impedance of free space - Wikipedia

    en.wikipedia.org/wiki/Impedance_of_free_space

    The impedance of free space (that is, the wave impedance of a plane wave in free space) is equal to the product of the vacuum permeability μ 0 and the speed of light in vacuum c 0. Before 2019, the values of both these constants were taken to be exact (they were given in the definitions of the ampere and the metre respectively), and the value ...

  3. Wave impedance - Wikipedia

    en.wikipedia.org/wiki/Wave_impedance

    In free space the wave impedance of plane waves is: = (where ε 0 is the permittivity constant in free space and μ 0 is the permeability constant in free space). Now, since = = (by definition of the metre),

  4. Dipole antenna - Wikipedia

    en.wikipedia.org/wiki/Dipole_antenna

    Feedpoint impedance of (near-) half-wave dipoles versus electrical length in wavelengths. Black: radiation resistance; blue: reactance for four different values of conductor diameter. A true half-wave dipole is one half of the wavelength λ in length, where λ = ⁠ c / f ⁠ in free space. Such a dipole has a feedpoint impedance consisting of ...

  5. Antenna measurement - Wikipedia

    en.wikipedia.org/wiki/Antenna_measurement

    = = is a universal constant called vacuum impedance or impedance of free space. The equivalent circuit and the formula at right are valid for any type of antenna. It can be as well a dipole antenna, a loop antenna, a parabolic antenna, or an antenna array. From this formula, it is easy to prove the following definitions:

  6. Dipole field strength in free space - Wikipedia

    en.wikipedia.org/wiki/Dipole_field_strength_in...

    Impedance of free space is roughly Since a half wave dipole is used, its gain over an isotropic antenna ( 2.15 dBi = 1.64 {\displaystyle {\mbox{2.15 dBi}}=1.64} ) should also be taken into consideration,

  7. Maxwell's equations - Wikipedia

    en.wikipedia.org/wiki/Maxwell's_equations

    For materials without polarization and magnetization, the constitutive relations are (by definition) [9]: 2 =, =, where ε 0 is the permittivity of free space and μ 0 the permeability of free space. Since there is no bound charge, the total and the free charge and current are equal.

  8. Vacuum permeability - Wikipedia

    en.wikipedia.org/wiki/Vacuum_permeability

    The vacuum magnetic permeability (variously vacuum permeability, permeability of free space, permeability of vacuum, magnetic constant) is the magnetic permeability in a classical vacuum. It is a physical constant, conventionally written as μ 0 (pronounced "mu nought" or "mu zero").

  9. Vacuum permittivity - Wikipedia

    en.wikipedia.org/wiki/Vacuum_permittivity

    Vacuum permittivity, commonly denoted ε 0 (pronounced "epsilon nought" or "epsilon zero"), is the value of the absolute dielectric permittivity of classical vacuum.It may also be referred to as the permittivity of free space, the electric constant, or the distributed capacitance of the vacuum.