The energy of EM radiation depends on its frequency, and the lowest frequency corresponds to the lowest energy. Radio waves are at the low end of the energy and frequency spectrum.
The electromagnetic spectrum, from highest to lowest wavelength, is ordered as follows: Gamma rays, X-rays, ultraviolet (UV) light, visible light, infrared light, microwaves, and radio 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.
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.
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.
Two properties of electromagnetic waves that change across the spectrum are wavelength and frequency. As you move from one end of the spectrum to the other, the wavelength decreases and the frequency increases.
The electromagnetic spectrum, from highest to lowest wavelength, is ordered as follows: Gamma rays, X-rays, ultraviolet (UV) light, visible light, infrared light, microwaves, and radio 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.
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.
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.
Wavelength and frequency :)
Two properties of electromagnetic waves that change across the spectrum are wavelength and frequency. As you move from one end of the spectrum to the other, the wavelength decreases and the frequency increases.
They have different wavelength.
That's the category we call 'gamma rays'. That's our label for everything withwavelengths shorter than 0.03 nanometers. We have no way to generate these,and they all come from nuclear decay or from outer space.Their frequency =(speed)/(wavelength) = 300,000 km per sec/0.03 nm = 10,000,000,000 GHz and up
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
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 types of energy in the electromagnetic (EM) spectrum differ in terms of their wavelength and frequency. The spectrum ranges from low energy, long-wavelength radio waves to high-energy, short-wavelength gamma rays. Each type of energy interacts with matter differently and has unique properties and uses.