No, radio waves have the lowest frequency on the electromagnetic spectrum, but they do not necessarily have the lowest energy per photon. The energy of a photon is determined by its frequency, with higher frequencies corresponding to higher energies. Therefore, photons from higher frequency waves such as gamma rays have higher energy per photon compared to radio waves.
Waves with lower frequency: for example radio waves.
Radio waves are the lowest energy waves in the electromagnetic spectrum. They have long wavelengths and carry less energy compared to other types of waves like visible light or X-rays.
Radio waves have the lowest energy in the electromagnetic spectrum.
Radio waves have the lowest energy among the electromagnetic spectrum.
The lowest energy waves are radio waves, followed by microwaves, infrared, visible light, ultraviolet, X-rays, and gamma rays with the highest energy.
The lowest possible energy state for a photon is when it has no energy, which corresponds to a frequency of zero.
Waves with lower frequency: for example radio waves.
Radio waves are the lowest energy waves in the electromagnetic spectrum. They have long wavelengths and carry less energy compared to other types of waves like visible light or X-rays.
Radio waves have the lowest energy in the electromagnetic spectrum.
Radio waves have the lowest energy among the electromagnetic spectrum.
The lowest energy waves are radio waves, followed by microwaves, infrared, visible light, ultraviolet, X-rays, and gamma rays with the highest energy.
the lowest frequency Lester was here
Red, because it has the lowest frequency in visible light
Radio.
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.
Electromagnetic radiation with the lowest frequency has the least energy. E = hv, where E is energy in Joules, his Planck's constant, 6.626 × 10-34 m2 kg/s, and v is frequency in Hertz.
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.