it's called frequency. it can go up and down or back and forth
Transverse waves cause particles to move back and forth in a direction perpendicular to the wave motion. Longitudinal waves, on the other hand, cause particles to move back and forth in a direction parallel to the wave motion.
This phenomenon is called wave motion or oscillation. In a wave motion, the particles of the object move back and forth in a repeating pattern along the direction of the wave.
Transverse waves cause particles to move perpendicular to the direction of the wave's propagation, creating a back and forth motion. This type of wave motion is characteristic of waves on a rope or string.
transverse wave is an example of pendulum motion.
A wave has cyclic motion - that is it repeats the motion many times, almost without variation.
Transverse waves cause particles to move back and forth in a direction perpendicular to the wave motion. Longitudinal waves, on the other hand, cause particles to move back and forth in a direction parallel to the wave motion.
This phenomenon is called wave motion or oscillation. In a wave motion, the particles of the object move back and forth in a repeating pattern along the direction of the wave.
a compressional wave
longitudinal wave
longitudinal wave
longitudinal wave
Transverse waves cause particles to move perpendicular to the direction of the wave's propagation, creating a back and forth motion. This type of wave motion is characteristic of waves on a rope or string.
The answer is a compressional wave (;
longitudinal wave
transverse wave is an example of pendulum motion.
A wave has cyclic motion - that is it repeats the motion many times, almost without variation.
The type of mechanical wave in which particles in the medium move back and forth in the direction of wave motion is called a longitudinal wave. In a longitudinal wave, the particles oscillate parallel to the direction of wave propagation, creating compressions and rarefactions along the wave. Sound waves are an example of longitudinal waves.