because motion is moving and wave motion has waves
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Wave motion involves the transfer of energy through a medium without the physical displacement of the medium itself. In contrast, the motion being referred to likely involves the physical displacement of an object or particle from one point to another in a particular direction. While both types of motion can involve the movement of energy, they differ in terms of how the movement occurs and the underlying mechanisms involved.
The frequency of a wave is inversely proportional to its wavelength. This means that as the frequency of a wave increases, its wavelength decreases, and vice versa. This relationship is based on the fundamental properties of wave motion.
A transverse wave vibrates perpendicular to the direction of wave motion.
The motion of a wave is called oscillation, which describes the back-and-forth movement of particles within the wave.
A mechanical wave can displace its medium in a longitudinal direction, where the particles of the medium move parallel to the direction of the wave propagation, or in a transverse direction, where the particles move perpendicular to the wave's direction.
A plane wave is characterized by flat wavefronts that travel in a single direction, while a circular wave has wavefronts that move outward in all directions from a central point. The motion of a plane wave is linear and uniform, whereas the motion of a circular wave is radial and diverging.