A sound wave is not a transverse wave. Instead, it is a longitudinal wave. Longitudinal waves travel through their mediums via compressions and rarefactions. For example, sound travels in this fashion by compressing the air molecules in the surrounding area. Transverse waves, on the other hand, oscillate perpendicular to the direction of energy transfer.
No, sound is a longitudinal wave, not a transverse wave.
Yes, a sound wave is a longitudinal wave, not a transverse wave.
No, a sound wave is a longitudinal wave, not transverse.
No, they are different types of wave. Transverse waves vibrate across the direction of motion, like the waves you get when you shake a rope. Longitudinal waves vibrate back and forth along the direction of motion like a sound wave.
The fact that a sound wave is a transverse wave affects its propagation through different mediums by causing the particles in the medium to move perpendicular to the direction of the wave. This can impact how the wave travels and interacts with the medium, potentially leading to changes in its speed, direction, and intensity.
No, sound is a longitudinal wave, not a transverse wave.
Yes, a sound wave is a longitudinal wave, not a transverse wave.
No, a sound wave is a longitudinal wave, not transverse.
No, a sound wave is a compressional wave.
Light is an electromagnetic wave; and those are transverse. Sound is usually a longitudinal wave.
Light is an electromagnetic wave; and those are transverse. Sound is usually a longitudinal wave.
No, they are different types of wave. Transverse waves vibrate across the direction of motion, like the waves you get when you shake a rope. Longitudinal waves vibrate back and forth along the direction of motion like a sound wave.
The fact that a sound wave is a transverse wave affects its propagation through different mediums by causing the particles in the medium to move perpendicular to the direction of the wave. This can impact how the wave travels and interacts with the medium, potentially leading to changes in its speed, direction, and intensity.
A sound wave is indeed a longitudinal wave as opposed to a transverse wave
transverse wave
Sound travels as a longitudinal wave, not a transverse wave. In a longitudinal wave, the particles of the medium vibrate parallel to the direction of the wave's propagation. This vibration creates areas of compression and rarefaction, which are responsible for the transmission of sound.
A transverse sound wave moves up and down or side to side, while a longitudinal sound wave moves back and forth in the same direction as the wave travels.