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When a wave passes through a medium, the particles in the medium are pushed or pulled by the neighboring particles, causing them to move in the same direction as the wave. This movement is due to the energy transferred through the medium by the wave, leading to a series of compressions and rarefactions that propagate through the medium.
The path a water particle takes as a wave passes in deep water is described as circular. As a wave passes, water particles move up and down in a circular motion but do not move forward with the wave itself. The circular motion decreases in size with depth.
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.
A transverse wave is characterized by the particle displacement perpendicular to the direction of wave propagation. This creates a wave motion where the particles move up and down or side to side, producing crests and troughs. Examples of transverse waves include light waves and electromagnetic waves.
The particles of a transverse wave move perpendicular to the direction of the wave. As the wave passes through a medium, the particles move up and down or side to side in a direction that is perpendicular to the direction of the wave propagation.
It is a rarefaction.
Compressional Waves
When a wave passes through a medium, the particles in the medium are pushed or pulled by the neighboring particles, causing them to move in the same direction as the wave. This movement is due to the energy transferred through the medium by the wave, leading to a series of compressions and rarefactions that propagate through the medium.
The path a water particle takes as a wave passes in deep water is described as circular. As a wave passes, water particles move up and down in a circular motion but do not move forward with the wave itself. The circular motion decreases in size with depth.
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.
A transverse wave is characterized by the particle displacement perpendicular to the direction of wave propagation. This creates a wave motion where the particles move up and down or side to side, producing crests and troughs. Examples of transverse waves include light waves and electromagnetic waves.
The particles of a transverse wave move perpendicular to the direction of the wave. As the wave passes through a medium, the particles move up and down or side to side in a direction that is perpendicular to the direction of the wave propagation.
compression wave is a wave like a sound wave
compressional wave
transverse wave
A longitudinal wave moves in the same direction as the wave energy, while a transverse wave moves perpendicular to the wave energy. This means that the particles in a longitudinal wave move back and forth parallel to the wave direction, while the particles in a transverse wave move up and down perpendicular to the wave direction.
Circularly in a vertical plane as the wave passes. The particles in a water wave move up and down as the wave passes through them, while the overall direction of the wave travels horizontally.