wavelength
The term that describes the distance between any two crests in a transverse wave or the distance between any two rarefactions in a longitudinal wave is called the wavelength.
wavelength
The term that describes the distance between any two crests in a transverse wave or the distance between any two rarefactions in a longitudinal wave is called the "wavelength." It represents the length of one complete cycle of the wave.
That is the wavelength.
wavelength
That is the wavelength.
The term that describes the distance between any two crests in a transverse wave or the distance between any two rarefactions in a longitudinal wave is called the "wavelength." The wavelength is a key property of waves and is commonly represented by the symbol λ. It is measured in meters.
The term that describes the distance between any two crests in a transverse wave or the distance between any two rarefactions in a longitudinal wave is called wavelength. Wavelength is typically denoted by the symbol λ and is measured in units such as meters or centimeters.
Wavelength describes the distance between any two corresponding points in a wave, such as between two crests in a transverse wave or two rarefactions in a longitudinal wave.
wavelength
The term that describes the distance between any two crests in a transverse wave or the distance between any two rarefactions in a longitudinal wave is called the wavelength. It is typically denoted by the symbol λ and is measured in meters. The wavelength determines the frequency and speed of the wave.
If you measure the distance between any two successive or consecutive crests in case of transverse wave is called the wavelength. If we get the distance between any two crests that will be definitely an integral multiple of the wavelength. The same in case of longitudinal waves. The distance between two successive rarefactions is known to be the wavelength.