Linked from
The 138 pages that link to Electromagnetic radiation, each with the reason it gives.
Jones calculusNarrower topic: The vectors in Jones calculus describe the transverse electric field of a wave.
Light scatteringNarrower topic: Light scattering is the redirection of this radiation through interactions with matter.
Solar energyNarrower topic: Sunlight is electromagnetic radiation, and its wavelength affects how solar devices capture it.
InSARNarrower topic: Radar phase measures position within the transmitted and returned electromagnetic wave.
Law of reflectionNarrower topic: The ray law approximates the behavior of electromagnetic waves at surfaces.
Solar radiationNarrower topic: Solar radiation is one naturally occurring source of this broader phenomenon.
Wave opticsNarrower topic: Visible light is an electromagnetic wave, not a vibration of a material medium.
Atmospheric opticsNarrower topic: Atmospheric optics concerns how this radiation changes direction, intensity, and color in air.
Coherence lengthNarrower topic: Coherence length describes phase stability in electromagnetic waves as well as other waves.
Multipath propagationNarrower topic: Radio multipath is the behavior of electromagnetic waves interacting with surroundings.
Parabolic reflectorNarrower topic: Visible light and radio waves can both be focused by suitably shaped reflectors.
Astronomical observationNarrower topic: Most astronomical measurements begin with radiation traveling from a source to a detector.
Circular polarizationNarrower topic: Circular polarization describes the changing direction of this wave’s electric field.
Electronic spectroscopyNarrower topic: Ultraviolet and visible radiation supplies the photons that drive many electronic transitions.
Luminiferous aetherNarrower topic: Electromagnetic waves replaced mechanical aether vibrations as the account of light's propagation.
Oliver LodgeNarrower topic: Lodge experimentally investigated the waves predicted by electromagnetic theory.
Electromagnetic shieldingNarrower topic: Radiated waves behave differently from static or near-field disturbances.
Gaussian beamNarrower topic: A Gaussian beam is a spatially structured electromagnetic wave.
Magneto-optic effectNarrower topic: The effect is a magnetic alteration of how this wave propagates through material.
Black bodyNarrower topic: The ideal object absorbs and emits every frequency of electromagnetic radiation.
Faraday cageNarrower topic: Wave behavior makes shielding depend on frequency, enclosure dimensions, and opening size.
Igor TammNarrower topic: Cherenkov radiation is a distinctive form of electromagnetic radiation generated by moving charges.
Ilya FrankNarrower topic: Cherenkov radiation is a specific form of electromagnetic radiation.
Larmor formulaNarrower topic: The formula quantifies the radiated energy per unit time.
Magnetic resonanceNarrower topic: Resonant systems absorb radiation when its frequency matches an allowed energy gap.
Terrestrial televisionNarrower topic: Television broadcasts are electromagnetic waves traveling from transmitters to antennas.
Astronomical interferometerNarrower topic: Astronomical interferometers combine electromagnetic signals gathered from celestial sources.
Crystal opticsNarrower topic: Crystal-optic effects arise from how these fields couple to a structured medium.
Impedance of free spaceNarrower topic: The impedance describes a field relationship within this broader class of waves.
Ostankino TowerNarrower topic: Broadcast signals travel from the tower as electromagnetic waves.
PhotonicsNarrower topic: Classical wave behavior describes propagation, interference, and polarization in photonic systems.
Telecommunications engineeringNarrower topic: Wireless links rely on electromagnetic waves to carry signals without a physical conductor.
Beam techniquesNarrower topic: Light, X-rays, and radio waves are electromagnetic beams.
Displacement current densityNarrower topic: Displacement current density is part of the field dynamics underlying radiation.
K. Ferdinand BraunNarrower topic: Radio transmission depends on the electromagnetic waves Braun helped engineer.
Microwave techniquesNarrower topic: Microwave signals are electromagnetic waves, whether guided by structures or radiated.
Moving magnet and conductor problemNarrower topic: The same unified field viewpoint extends beyond induction to the propagation of light.