A wave is a normal wave and a wave length is the wave Height or distance
The difference between two crests of a wave is the wavelength, which is the distance between two successive crests. It represents the distance the wave travels during one complete cycle.
energy increases, and the wave length decreasespicture the difference between alpha and gamma rays :)
The distance between a wavelength and a wave is dependent on the speed of the wave and the frequency of the wave. This relationship is described by the equation: wavelength = speed of the wave / frequency.
The wavelength of a wave is the distance between two consecutive crests (or troughs) of the wave. In other words, the wavelength is the length of one complete cycle of the wave, measured from crest to crest.
The distance between successive identical parts of a wave is called the wave length.
Amplitude is the maximum displacement of a wave from its resting position, while wavelength is the distance between two consecutive points in the wave that are in phase. In other words, amplitude represents the wave's intensity or strength, whereas wavelength determines the spatial extent of one cycle of the wave.
The relationship between amplitude and wavelength in a wave is that amplitude refers to the maximum displacement of a wave from its rest position, while wavelength is the distance between two consecutive points in a wave that are in phase. In general, there is no direct relationship between amplitude and wavelength in a wave, as they represent different properties of the wave.
The relationship between the frequency of a wave and its wavelength can be described by the formula: frequency speed of wave / wavelength. This means that as the wavelength of a wave decreases, its frequency increases, and vice versa.
The nodes on a standing wave are points with zero displacement. The main difference between two nodes is their position along the wave. Nodes are evenly spaced at intervals of half the wavelength.
(frequency) multiplied by (wavelength) = (wave speed)
The distance between a peak and a wave is half of the wavelength. The wavelength is the distance between two consecutive peaks or troughs in a wave.
If the distance between the wave's crests increases, the wavelength of the wave would also increase. Wavelength is the distance between two successive crests (or troughs) of a wave, so if this distance increases, the wavelength becomes longer.