There is no such thing as "long energy" or "short energy". The electromagnetic spectrum is:Radio waves; microwaves; infrared; visible light; ultraviolet; x-rays; gamma rays.
In this list, going from left to right:
* The energy per photon increases.
* The frequency increases.
* The wavelength decreases.
Thus, for instance, gamma rays have the LARGEST energy per photon; the LARGEST frequency; and the SHORTEST wavelength.
Gamma radiation
The types of waves in the electromagnetic spectrum include radio waves, microwaves, infrared radiation, visible light, ultraviolet light, X-rays, and gamma rays. These waves differ in their frequencies and wavelengths, with radio waves having the longest wavelength and lowest frequency, while gamma rays have the shortest wavelength and highest frequency.
We know that gamma rays are electromagnetic energy, and they'll occupy a place on the electromagnetic (EM) spectrum. You can locate gamma rays right at the top end of the EM spectrum because their frequencies are so high (or their wavelengths are so short, if you prefer).
EM waves with the shortest wavelengths are called gamma rays. The range of wavelengths that are called gamma rays is between 1 x 10^-12 meters and 1 x 10^-20 meters, or; .000000000001 m to .00000000000000000001 m .
Cosmic rays are not part of the EM spectrum -- they are high energy charged particles.
Gamma rays have the highest energy in the electromagnetic spectrum. They have the shortest wavelengths and highest frequencies, making them the most energetic form of electromagnetic radiation.
Radio waves have the longest wavelength in the electromagnetic spectrum (EM), and are pure energy, they have no mass.
Electromagnetic (EM) waves are arranged in the spectrum based on their wavelength or frequency. From longest to shortest wavelength/frequency, the EM spectrum includes radio waves, microwaves, infrared, visible light, ultraviolet, X-rays, and gamma rays. This arrangement is important because each region of the spectrum has unique properties and interactions with matter.
Gamma rays have the highest energy on the electromagnetic spectrum. They have the shortest wavelength and highest frequency, carrying the most energy of all electromagnetic waves.
Radio waves are the longest lengthwise.
The highest frequency in the electromagnetic spectrum is found in gamma rays. These rays have the shortest wavelengths and the highest energy levels of all electromagnetic waves.
Shortest wavelength corresponds to highest energy, and this region of the EM spectrum contains high energy radiation such as X-rays and gamma rays.The part with the highest frequencies ... the end where the gamma rays are.
The categories of the electromagnetic (EM) spectrum, in the ascending order of their frequencies are:RadioMicrowaveInfraredVisibleUltravioletX-rayGammaHence, Radio waves have the lowest frequency and the longest wavelengths while Gamma rays have the highest frequency and the shortest wavelengths.(check related link for an image)
The highest frequency part of the electromagnetic spectrum is gamma rays. Gamma rays have the shortest wavelengths and highest energy of all electromagnetic waves.
The EM spectrum is a chart of electromagnetic radiation, arranged by wave length. The chart may be arranged in ascending or descending order.Related Information:The charts could begin with radio waves, having the longest wavelength, and end with gamma rays, having the shortest wavelength or the order could be reversed.
The EM spectrum is a chart of electromagnetic radiation, arranged by wave length. The chart may be arranged in ascending or descending order.Related Information:The charts could begin with radio waves, having the longest wavelength, and end with gamma rays, having the shortest wavelength or the order could be reversed.
The EM spectrum, is based upon the emission of photons at different wavelengths. Visible light is a small part of this spectrum. As all of the spectrum travels at the speed of light - C. The frequencies for different wavelenghts of photons will be different. The creation of these different parts of the spectrum are from different oscillations (http://en.wikipedia.org/wiki/Electromagnetic_spectrum#Rationale) For instance radio waves come from the oscillation of electrons in an antenna. Limitations on these oscillations cause the limitation in the spectrum, at one end there is radiowaves, limited by electron oscillation and the at the other side is gamma from the creation of particle antiparticle pairs.