gamma rays.
A wave with a wavelength of 10^-15 meters would have the greatest energy. This is because the energy of a wave is inversely proportional to its wavelength, meaning that as the wavelength decreases, the energy of the wave increases.
The greatest amount of energy in a wave is determined by its amplitude, which is the height of the wave from the resting position to the peak. Waves with higher amplitudes carry more energy.
A wave with a wavelength of meters would have the greatest energy because energy is inversely proportional to wavelength. Smaller wavelengths correspond to higher energy levels.
The type of wave that has the greatest energy is a gamma ray. Gamma rays have the shortest wavelengths and highest frequencies among the electromagnetic spectrum, resulting in high energy levels.
Gamma rays have the greatest frequency among the electromagnetic waves. They have the shortest wavelength and highest energy in the electromagnetic spectrum.
The wave with the greatest frequency will have the greatest wave speed. Wave speed is determined by multiplying wavelength by frequency. If two waves have the same wavelength but different frequencies, the one with the higher frequency will have the higher wave speed.
Gamma rays have the greatest energy among all the types of electromagnetic radiation, including radio waves. They have the shortest wavelengths and highest frequencies, making them the most energetic.
It is called the Amplitude. The crest isn't right because the crest/peaks are only the highest points in a wave. People always mix them up.
it is a wave that is formed by energy
The amplitude of a wave describes the greatest distance a wave vibrates from its resting position. It is the measure of the height or intensity of the wave.
The amplitude of a wave is the factor that determines a wave's energy. Amplitude is the measure of the height of the wave, which correlates with the energy the wave carries. Waves with larger amplitudes have more energy.
short waves