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Sound wave is is generated by a vibrating object.Whereas, seismic wave is the vibration generated by an earthquake or explosion.

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How is the distance between a seismic station and the earthquake epicenter is determined?

The distance between a seismic station and the earthquake epicenter is determined from the S-P interval, which is the time difference between the time of arrival of the first P wave and the first S wave.


Which earthquake waves are the first to be recorded on a seismometer and are the fastest?

P-waves which are a compression or pressure wave are the fastest seismic waves. As they are the fastest they will reach the seismic station before any of the other seismic waves and be recorded first. Seismologists can use the difference between the arrival times of different seismic waves to calculate the distance and ultimately the location of the earthquakes epicentre. For information on this, please see the related question.


What is the difference between a tsunami and seismic waves?

Seismic waves are vibrations caused by the movement of the Earth's crust during an earthquake, whereas a tsunami is a series of ocean waves triggered by an underwater earthquake, volcanic eruption, or landslide. Seismic waves travel through the Earth, while tsunamis primarily move across the ocean surface.


Do microwaves work with sound waves at all?

Microwaves and sound waves are similar because they are electromagnetic waves. The main difference between the two types of waves is the length of the wave. Sound waves are longer than microwaves.


Why do scientists analyze the difference between the arrival times of P and S waves?

Scientists analyze the difference between the arrival times of P (primary) and S (secondary) waves to determine the distance to an earthquake's epicenter. P waves, which are faster, arrive first, followed by the slower S waves. By measuring the time difference between their arrivals at seismic stations, scientists can calculate how far the waves traveled, helping to pinpoint the earthquake's location. This information is crucial for understanding seismic events and assessing potential impacts.

Related Questions

What are examples of longitudinal waves?

Examples of longitudinal waves include sound waves, seismic waves, and sound waves in solids (such as ultrasound waves). These waves propagate by compressing and rarefying the medium in the direction of wave motion.


How are sound waves and seismic waves alike?

they're mechanical waves


What happens to seismic waves in the air?

In air, the seismic waves(P-wave) are simply sound waves, and travel with the speed of sound (approx. 335 m/s).


What is the difference between the sound waves and ultrasound?

Difference is in their frequency, audible sound waves is between 12 Hz and 20,000 Hz, Ultrasound waves is any sound that has a frequency beyond the 20,000 Hz limit


What is an example mechanical waves?

Ocean waves, seismic waves, and sound waves are some examples.


What are sound waves produced by a vibrating object?

SEISMIC WAVES.Tranverse Waves.


What is wave mechanisms?

Ocean waves, seismic waves, and sound waves are some examples.


What is an mechanical wave?

Ocean waves, seismic waves, and sound waves are some examples.


The distance between a seismic station and the earthquake epicenter is determined from the?

The difference in arrival times of P and S waves.


What waves go through the earth's atmosphere?

Elastic waves, particularly sound waves and seismic waves, can travel through the Earth's atmosphere. Sound waves propagate through the air, while seismic waves are generated by earthquakes and travel through the Earth's crust and mantle.


How is the distance between a seismic station and the earthquake epicenter is determined?

The distance between a seismic station and the earthquake epicenter is determined from the S-P interval, which is the time difference between the time of arrival of the first P wave and the first S wave.


What type of seismic wave is closest to sound waves?

tamera