Linked from
The 96 pages that link to Electromagnetic spectrum, each with the reason it gives.
WavelengthNarrower topic: Wavelength locates radiation within this continuous range.
Remote sensingNarrower topic: Remote sensors measure selected portions of this spectrum, from visible light to microwaves.
SpectroscopyNarrower topic: Different regions probe different energies and reveal different properties of matter.
FrequencyNarrower topic: Radio waves, visible light, and other radiation occupy distinct frequency ranges.
Radio astronomyNarrower topic: Radio astronomy studies one broad region of this spectrum.
Electromagnetic radiationNarrower topic: It organizes radiation into bands that differ in frequency, wavelength, and typical interactions.
Radio broadcastingNarrower topic: Radio broadcasting occupies a portion of this spectrum shared with other services.
RadarNarrower topic: Radar occupies the radio-frequency portion of this broader spectrum.
Greenhouse effectNarrower topic: The greenhouse effect depends on gases absorbing particular infrared wavelengths.
FluorescenceNarrower topic: Excitation and fluorescent emission occupy particular regions of this spectrum.
Active galactic nucleusNarrower topic: Active nuclei radiate across the spectrum, from radio waves to gamma rays.
Infrared spectroscopyNarrower topic: Infrared spectroscopy uses a defined region between visible light and microwaves.
LaserNarrower topic: A laser occupies a selected region of this spectrum, from infrared to ultraviolet and beyond.
Spectral lineNarrower topic: Spectral lines are localized features within this broader distribution of radiation.
TelescopeNarrower topic: Telescopes are designed around particular portions of this spectrum.
Absorption spectrumNarrower topic: An absorption spectrum samples a portion of this continuous range.
Stellar spectroscopyNarrower topic: Stellar spectra sample portions of this range, including visible, ultraviolet, and infrared light.
Interstellar extinctionNarrower topic: Extinction changes across this spectrum, with dust affecting ultraviolet, visible, and infrared light differently.
Radio telescopeNarrower topic: Radio waves occupy the long-wavelength, low-frequency region detected by these instruments.
AstrophotographyNarrower topic: Astrophotography can record wavelengths beyond the visible light humans see.
X-rayNarrower topic: X-rays occupy the high-frequency region between ultraviolet radiation and gamma rays.
Astronomical spectroscopyNarrower topic: Spectroscopy measures celestial radiation across selected parts of this full wavelength range.
Gamma rayNarrower topic: Gamma rays occupy its highest-frequency region, though the boundary with X-rays is conventional.
Radio spectrumNarrower topic: The radio spectrum is one region of this broader range.
X-ray spectroscopyNarrower topic: X-rays occupy the high-energy region that enables element-specific transitions.
Absorption spectroscopyNarrower topic: Absorption measurements select wavelengths from this broad range.
UltravioletNarrower topic: Ultraviolet occupies the region between visible light and X-rays.
Atmospheric windowNarrower topic: Atmospheric windows are intervals within this broader spectrum.
RadiographyNarrower topic: X-rays occupy the high-frequency region used in radiographic imaging.
Radial velocityNarrower topic: Spectroscopic radial velocities are inferred from shifts within this range.
Multi-messenger astronomyNarrower topic: Observations across its wavelengths trace distinct temperatures, materials, and stages of an event.
PhotolysisNarrower topic: Photolysis depends on the radiation wavelengths available to the reacting substance.
Ultraviolet–visible spectroscopyNarrower topic: Ultraviolet and visible light occupy adjacent regions within this broader spectrum.
Emission spectrumNarrower topic: An emission spectrum occupies a portion of this broader range.
Microwave ovenNarrower topic: It places oven radiation alongside visible light, infrared, and radio waves.
Microwave spectroscopyNarrower topic: Microwaves occupy the spectral region used to drive rotational and spin transitions.
Satellite remote sensingNarrower topic: Satellite sensors sample selected wavelengths to distinguish surface materials and atmospheric conditions.
SpectrophotometryNarrower topic: Spectrophotometry probes selected regions of this broader spectrum.
Earth observation satelliteNarrower topic: Satellite instruments select parts of this spectrum to measure Earth's properties.
InfraredNarrower topic: Infrared occupies the region beyond visible red and before microwave radiation.
Radio waveNarrower topic: Radio waves occupy one region of this continuous spectrum.
PhotodegradationNarrower topic: Different spectral regions carry photons capable of initiating different reactions.
Spectral energy distributionNarrower topic: A spectral energy distribution describes a source across a portion or all of this range.
SpectrophotometerNarrower topic: Spectrophotometers operate over selected regions of this broader range.
Ultraviolet germicidal irradiationNarrower topic: UV germicidal treatment occupies a specific region of this broader spectrum.
Astronomical instrumentNarrower topic: Different instruments target different wavelength bands across this spectrum.
Photochemical reactionNarrower topic: Photochemical outcomes depend on where absorbed light falls in this spectrum.
Doppler spectroscopyNarrower topic: Doppler spectroscopy analyzes the wavelength portion of this broader radiation range.
Faraday effectNarrower topic: The effect helped establish that optical phenomena belong to electromagnetism.
Hydrogen spectrumNarrower topic: Hydrogen lines occupy specific regions within this broader range of light.