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compression and rarefaction, where the particles of the medium are either closely packed together or spread out, respectively. This causes the wave to travel through the medium in a back-and-forth motion.

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Why longitudinal waves cannot travel in space?

Longitudinal waves require a medium to travel through because they involve the compression and rarefaction of the medium they are passing through. In the vacuum of space, there is no medium for these waves to travel through, so longitudinal waves cannot propagate in space.


How do longitudinal wave energy travels?

Longitudinal wave energy travels by the particles of the medium moving parallel to the direction of the wave. This causes compressions and rarefactions in the medium as the wave passes through. The energy is transferred through the collisions and interactions of the particles along the path of the wave.


A longitudinal wave causes its medium in what direction?

A longitudinal wave causes its medium to oscillate in the same direction as the wave travels. This means that the particles of the medium move back and forth parallel to the direction of wave propagation. Examples of longitudinal waves include sound waves and seismic waves.


Do longitudinal waves need to travel through a medium?

Yes, longitudinal waves require a medium to travel through. Examples of longitudinal waves include sound waves in air, which need air particles to propagate. Without a medium for the waves to move through, like in a vacuum, longitudinal waves cannot travel.


How amplitude would be measured for a longitudinal wave?

The amplitude of a longitudinal wave can be measured by determining the maximum displacement of particles in the medium from their equilibrium position as the wave passes through. This displacement represents the maximum compression or rarefaction in the medium caused by the wave passing through. The greater the displacement, the larger the amplitude of the wave.

Related Questions

Why longitudinal waves cannot travel in space?

Longitudinal waves require a medium to travel through because they involve the compression and rarefaction of the medium they are passing through. In the vacuum of space, there is no medium for these waves to travel through, so longitudinal waves cannot propagate in space.


How do longitudinal wave energy travels?

Longitudinal wave energy travels by the particles of the medium moving parallel to the direction of the wave. This causes compressions and rarefactions in the medium as the wave passes through. The energy is transferred through the collisions and interactions of the particles along the path of the wave.


A longitudinal wave causes its medium in what direction?

A longitudinal wave causes its medium to oscillate in the same direction as the wave travels. This means that the particles of the medium move back and forth parallel to the direction of wave propagation. Examples of longitudinal waves include sound waves and seismic waves.


Do longitudinal waves need to travel through a medium?

Yes, longitudinal waves require a medium to travel through. Examples of longitudinal waves include sound waves in air, which need air particles to propagate. Without a medium for the waves to move through, like in a vacuum, longitudinal waves cannot travel.


How amplitude would be measured for a longitudinal wave?

The amplitude of a longitudinal wave can be measured by determining the maximum displacement of particles in the medium from their equilibrium position as the wave passes through. This displacement represents the maximum compression or rarefaction in the medium caused by the wave passing through. The greater the displacement, the larger the amplitude of the wave.


A disturbance that travels through a medium as a longitudinal wave is?

A disturbance that travels through a medium as a longitudinal wave is known as a sound wave. In a longitudinal wave, the particles of the medium oscillate parallel to the direction of wave propagation. Sound waves are an example of longitudinal waves as they require a medium, such as air or water, to travel through.


Are pressure waves longitudinal waves?

Yes, pressure waves are longitudinal waves. They travel through a medium by compressing and expanding the particles in the same direction as the wave's motion. This causes regions of high pressure (compression) and low pressure (rarefaction) to propagate through the medium.


How does a longitudinal wave move through a medium?

A longitudinal wave moves through a medium by causing particles in the medium to vibrate back and forth in the same direction as the wave's propagation. This creates areas of compression and rarefaction as the wave travels through the medium.


What kind of a wave do the particles of the medium move back and forth along the direction of the wave motion?

Longitudinal waves are characterized by particles of the medium moving back and forth in the same direction as the wave motion. This causes compression and rarefaction of the medium as the wave passes through it. Sound waves are a common example of longitudinal waves.


In what type of wave do the particles in the medium experience forces parallel to the wave's direction?

The type of wave in which the particles in the medium experience forces parallel to the wave's direction is the longitudinal wave. It is a mechanical wave that travels through a series of compressions and rarefactions.


What is the relationship between the speed of a longitudinal wave and the medium through which it travels?

The speed of a longitudinal wave is determined by the properties of the medium through which it travels. Different mediums have different densities and elasticities, which affect how fast the wave can travel through them. In general, the speed of a longitudinal wave increases with the stiffness and density of the medium.


A disturbance that travels through a medium as a longitudinal wave?

Light does that.