It's called a longitudinal wave.
Transverse waves move the particles of the medium perpendicular to the direction in which the wave is traveling, not parallel. Longitudinal waves, on the other hand, move the particles of the medium parallel to the direction in which the wave is traveling.
Transverse waves have particles of the medium that move perpendicular to the direction in which the wave is traveling. This motion causes the medium's particles to oscillate up and down or side to side. Examples of transverse waves include light waves and electromagnetic waves.
Transverse waves move the particles of the medium perpendicular to the direction in which the waves are traveling. Longitudinal waves, on the other hand, move the particles of the medium parallel to the direction in which the waves are traveling.
Yes, that is correct. In transverse waves, the particles of the medium move perpendicular to the direction in which the wave is traveling. This causes the medium to oscillate up and down or side to side as the wave passes through it. This type of motion creates crests and troughs in the wave.
In a longitudinal wave, particles of the medium oscillate in the same direction that the wave is traveling. The particles move back and forth parallel to the direction of the wave.
Transverse waves move the particles of the medium perpendicular to the direction in which the wave is traveling, not parallel. Longitudinal waves, on the other hand, move the particles of the medium parallel to the direction in which the wave is traveling.
Transverse waves have particles of the medium that move perpendicular to the direction in which the wave is traveling. This motion causes the medium's particles to oscillate up and down or side to side. Examples of transverse waves include light waves and electromagnetic waves.
Transverse waves move the particles of the medium perpendicular to the direction in which the waves are traveling. Longitudinal waves, on the other hand, move the particles of the medium parallel to the direction in which the waves are traveling.
Yes, that is correct. In transverse waves, the particles of the medium move perpendicular to the direction in which the wave is traveling. This causes the medium to oscillate up and down or side to side as the wave passes through it. This type of motion creates crests and troughs in the wave.
In a longitudinal wave, particles of the medium oscillate in the same direction that the wave is traveling. The particles move back and forth parallel to the direction of the wave.
True. In transverse waves, the particles of the medium move perpendicular to the direction in which the wave is traveling. This results in a side-to-side motion of the particles as the wave passes through the medium.
Transverse wave
Yes, that is correct. In a compression or longitudinal wave, the particles of the medium move parallel to the direction of energy transport. This means that the particles of the medium exhibit back-and-forth motion in the same direction that the wave is traveling.
In a longitudinal wave, particles move parallel to the direction of wave propagation. As the wave travels, particles oscillate back and forth in the same direction that the wave is moving. This motion causes compressions and rarefactions to propagate through the medium.
Sound wave particles travel through a medium by vibrating back and forth in the same direction that the sound wave is traveling. This vibration causes neighboring particles in the medium to also vibrate, passing the sound energy along.
Longitudinal waves cause the medium to vibrate in a direction parallel to the wave motion. This means that the particles of the medium move back and forth in the same direction that the wave is traveling. Examples of longitudinal waves include sound waves and seismic waves.
Longitudinal waves move the particles of the medium in the same direction in which the waves are traveling. This produces a back-and-forth motion of the particles parallel to the direction of wave propagation. Examples of longitudinal waves include sound waves and seismic waves.