radio
An example of a low-energy electromagnetic wave is a radio wave. These waves have long wavelengths and low frequencies, making them suitable for transmitting information over long distances with minimal energy consumption.
Radio waves. But the question should be, "What is one type of low energy electromagnetic wave?"
Each type of electromagnetic wave differs in terms of frequency, wavelength, and energy. For example, radio waves have low frequency and long wavelength, while gamma rays have high frequency and short wavelength. These differences determine the properties and behaviors of each type of electromagnetic wave.
Radio waves are an example of waves with low quantum energy. They have long wavelengths and low frequencies, which correspond to low energy photons.
No, the energy of a wave is determined by its amplitude, not its frequency. In terms of electromagnetic waves, both high and low frequency waves can carry the same amount of energy per photon. The perceived intensity of a wave is linked to its amplitude, not its frequency.
Wavelengths in the radio wave region of the electromagnetic spectrum have the lowest energy. These waves have long wavelengths and low frequencies, making them less energetic compared to other types of electromagnetic radiation like gamma rays or X-rays.
High frequency electromagnetic waves have more energy than low frequency waves. This is because the energy of an electromagnetic wave is directly proportional to its frequency: E=hf, where E is energy, h is Planck's constant, and f is frequency.
A low amplitude wave carries less energy compared to a high amplitude wave. The energy of a wave is proportional to the square of its amplitude. Therefore, a wave with a low amplitude will have lower energy.
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Yes. Grenz rays are 'soft' i.e. low-energy X-rays.
Yes. For electromagnetic radiation, the formula is E = hv, where E is energy in Joules, h is Planck's constant, 6.626 × 10-34 m2 kg/s and v is frequency. So the energy of a wave is directly proportional to the frequency. The greater the frequency, the greater the energy.
If an electromagnetic wave has a frequency of 100 Hz, then its wavelengthin vacuum is almost 1,900 miles, and we would call it a radio wave in the ELF(extremely low frequency) range.