The EM spectrum extends infinitely in either direction, up past the super-high frequency gamma rays and down past sub-hertz frequency radio waves.
However, there is probably a practical limit to the upper frequency of radiation in the Planck distance--In the discrete model of space-time, nothing can exist at any size smaller than this, so this establishes an upper limit to the frequency of radiation.
Similarly, it is unlikely that any radio wave with a wavelength larger than the breadth of the universe can exist, establishing a lower limit to the frequency of radiation.
In the continuous model of space-time, there are truly infinite wavelengths of radiation; in the discrete model, these is a finite number that is still very, very large (effectively infinite).
As far as human definitions, there are seven large categories of EM radiation: Radio, microwave, infrared, visible, ultraviolet, X-ray, and gamma ray
(section moved from "Why is Snow White and water transparent but sometimes ice can be both?")
snow is white and the sky is blue and the grass is green because the UV rays from the sun is reflecting every color to an object and the object only relfects one of those colors, the color that you see. so grass is green because it relefcts the color green when UV rays hit it. same goes for snow being white and water bing clear and ice being white or a trasparent-ish blue.
Point of Accuracy
UV radiation is only one part of the electromagnetic spectrum. This is broken up into several different parts;
Gamma radiation
X-Ray radiation
Ultraviolet radiation
Visible Light
Infrared radiation
Microwave radiation
Radio waves.
Of these different types of radiation the type that gives grass it's green colour and the sky its blue colour is the visible spectrum. UV radiation cannot be seen directly. It is seen most often when white is made to fluoresce under a blacklight. As was said above though the reason grass is green is because it reflects the green region of the visible light spectrum.
The type of spectrum that includes all types of radiation is called the electromagnetic spectrum. It encompasses all forms of electromagnetic radiation, ranging from gamma rays to radio waves, organized by their wavelengths and frequencies.
The electromagnetic spectrum is the range of all possible frequencies of electromagnetic radiation.[1] The "electromagnetic spectrum" of an object is the characteristic distribution of electromagnetic radiation emitted or absorbed by that particular object.
It is the different types of waves in light. All waves travel at the same speed which is nearly 300 million m/s.Anyway:Radio Waves - longest wavelength, smallest frequencyMicrowavesInfraredVisible LightUltravioletX-RayGamma Rays - shortest wavelength, largest frequency
Electromagnetic spectrum is made up of wide range of frequencies which range from few Hertz (cycles per second) to several TeraHertz. In most books, electromagnetic spectrum is marked with help of wavelengths. Wavelength is measured by speed of light divided by the frequency.
In the electromagnetic spectrum Gamma radiation has the highest frequency.
The type of spectrum that includes all types of radiation is called the electromagnetic spectrum. It encompasses all forms of electromagnetic radiation, ranging from gamma rays to radio waves, organized by their wavelengths and frequencies.
The electromagnetic spectrum is the range of all possible frequencies of electromagnetic radiation.[1] The "electromagnetic spectrum" of an object is the characteristic distribution of electromagnetic radiation emitted or absorbed by that particular object.
The electromagnetic spectrum organizes different types of electromagnetic waves according to their wavelength or frequency.
It is the different types of waves in light. All waves travel at the same speed which is nearly 300 million m/s.Anyway:Radio Waves - longest wavelength, smallest frequencyMicrowavesInfraredVisible LightUltravioletX-RayGamma Rays - shortest wavelength, largest frequency
The visible spectrum
Electromagnetic spectrum is made up of wide range of frequencies which range from few Hertz (cycles per second) to several TeraHertz. In most books, electromagnetic spectrum is marked with help of wavelengths. Wavelength is measured by speed of light divided by the frequency.
In the electromagnetic spectrum Gamma radiation has the highest frequency.
The electromagnetic (EM) spectrum is a name for different types of radiation. Most radiation comes from the sun. Want more info?
True. The electromagnetic spectrum is a range of all types of electromagnetic radiation, including radio waves, microwaves, infrared, visible light, ultraviolet, X-rays, and gamma rays, arranged in order of their wavelengths and frequencies.
Energy is related to the electromagnetic spectrum because different types of electromagnetic waves, such as visible light and radio waves, carry different amounts of energy. The higher the frequency of the wave, the higher the energy it carries. This relationship is important in understanding how energy is transferred through different forms of electromagnetic radiation.
The sun emits a wide range of electromagnetic radiation across the spectrum, from radio waves to gamma rays. Different layers and processes on the sun produce various types of radiation, which contribute to the overall electromagnetic spectrum that reaches Earth. Measurements of solar radiation across the spectrum help scientists understand the sun's behavior and its effects on various processes on Earth.
White light, which can split in to the colours is part of the electromagnetic spectrum. Other parts of the electromagnetic spectrum are, cosmic rays, X-rays, UV light, infra red(IR) waves, micro waves, and radio waves. m ic ray of the spectrum