When particles move up and down with a wave, this is known as vertical or transverse wave motion. In this type of wave, particles move perpendicular to the direction in which the wave is traveling. This motion creates crests and troughs in the wave pattern.
The people move up and down whereas the wave travels around the stadium or arena - at right angles to the people'm movement.
Particles or floating objects on the surface of a water wave move in a circular motion as the wave passes beneath them. This circular motion is a combination of the wave's horizontal movement and the vertical oscillation of the particle due to the wave's up and down motion.
A wave that causes particles to move up and down is called a transverse wave. In this type of wave, the motion of the particles is perpendicular to the direction of the wave itself. Examples include light waves and water waves.
Water moves in a circular motion during the passage of a wave. As the wave passes through, water particles move in an elliptical path where the motion decreases with depth. This circular motion is responsible for the transfer of energy in a wave.
rotary motion
Up and down.
When particles move up and down with a wave, this is known as vertical or transverse wave motion. In this type of wave, particles move perpendicular to the direction in which the wave is traveling. This motion creates crests and troughs in the wave pattern.
The people move up and down whereas the wave travels around the stadium or arena - at right angles to the people'm movement.
transverse waves
Particles or floating objects on the surface of a water wave move in a circular motion as the wave passes beneath them. This circular motion is a combination of the wave's horizontal movement and the vertical oscillation of the particle due to the wave's up and down motion.
IF the leaf is going up and down because a wave with constant wavelength is passing by, THEN the leaf is executing simple harmonic vertical motion.
A wave that causes particles to move up and down is called a transverse wave. In this type of wave, the motion of the particles is perpendicular to the direction of the wave itself. Examples include light waves and water waves.
Water moves in a circular motion during the passage of a wave. As the wave passes through, water particles move in an elliptical path where the motion decreases with depth. This circular motion is responsible for the transfer of energy in a wave.
The direction of a transverse wave is perpendicular to the direction of its motion. This means that as the wave moves forward, the particles of the medium oscillate up and down or side to side.
When a water wave passes, a buoy will move up and down in a circular motion. The buoy follows the wave pattern, rising as the wave crest passes and sinking as the wave trough passes. This motion is a combination of vertical and horizontal movement as the wave energy is transferred to the buoy.
Surface Waves can propagate only along the boundary of solid.Two types are:Rayliegh Waves propagate along boundary between two dissimilar solid media, in a plane perpendicular to the surface and containing the direction of propagation.Love Waves are polarized shear wave with an associated oscillatory particle motion parallel to the free space and perpendicular to the direction wave motion.