A wave with low frequency would have a longer wavelength and carry less energy. It would also have fewer oscillations per unit of time compared to a high-frequency wave.
The wavelength of a wave with low speed but high frequency would be short.
The frequency of a wave is not directly related to the wave length. A low frequency wave or a high frequency wave may be either long-wave or short-wave.
Radio waves have a relatively low frequency compared to other types of electromagnetic waves. They typically have frequencies in the range of tens of kilohertz to hundreds of gigahertz.
A wave with low frequency would have a longer wavelength and lower energy. This type of wave would take longer to complete one full cycle and would typically be associated with things like radio waves and sound waves.
An object vibrating relatively slowly produces sound waves that have low frequency and long wavelength.
The wavelength of a wave with low speed but high frequency would be short.
The frequency of a wave is not directly related to the wave length. A low frequency wave or a high frequency wave may be either long-wave or short-wave.
Radio waves have a relatively low frequency compared to other types of electromagnetic waves. They typically have frequencies in the range of tens of kilohertz to hundreds of gigahertz.
A wave with low frequency would have a longer wavelength and lower energy. This type of wave would take longer to complete one full cycle and would typically be associated with things like radio waves and sound waves.
An object vibrating relatively slowly produces sound waves that have low frequency and long wavelength.
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.
In that case, it will have a low frequency.
The sine wave at low frequency is unstable because it can create strong currents that nobody can stop them from
The product of (frequency) x (wavelength) is always the same number ... the speedof the wave. So the lower frequencies must have longer wavelengths.
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.
The frequency of a sound wave determines the pitch. So if there is high frequency it means that the sound will also be high pitched. If it is low frequency that means the sound will be low pitched.
High-frequency waves have more waves packed into the same distance compared to low-frequency waves, with shorter distances between wave crests. So, a high-frequency wave appears to have more waves in a given space, while a low-frequency wave looks more stretched out with fewer waves in the same space.