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In physics, wavelength is the distance between two successive identical parts of a wave It is commonly designated by the Greek letter lambda (λ).

Sound waves are longitudinal waves; their wavelength can be measured as the distance between two successive compressions (higher pressure and density regions) or two successive compressions (lower pressure and density regions). Mathematically : wavelength of sound wave = speed of the wave / frequency where wavelength is measured in meters speed is measured meters/second frequency is measured is Hz or second-1

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The wavelength of sound is the physical distance between two consecutive points of similar vibration in a sound wave. It is inversely proportional to the frequency of the sound wave, meaning that as frequency increases, wavelength decreases, and vice versa. In general, higher frequency sounds have shorter wavelengths, while lower frequency sounds have longer wavelengths.

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Q: What is wavelength of sound?
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What is determined by wavelength in sound?

The wavelength in sound determines the pitch of the sound. A shorter wavelength corresponds to a higher pitch, while a longer wavelength corresponds to a lower pitch.


How loud a sound is depends on the wavelength of the sound?

The loudness of a sound is typically measured in terms of intensity or amplitude, not wavelength. The wavelength of a sound wave affects its pitch, not its loudness. Sound intensity is related to the amount of energy carried by the sound wave.


What is the wavelength of sound that has a frequency of 539.8?

The wavelength of sound can be calculated using the formula: wavelength = speed of sound / frequency. Assuming the speed of sound is around 343 m/s, we can calculate the wavelength of sound with a frequency of 539.8 Hz to be approximately 0.636 meters.


What is the wavelength if the frequency of sound equals 880 Hz?

The wavelength of sound can be calculated using the formula: wavelength = speed of sound / frequency. If the speed of sound is approximately 343 m/s, then the wavelength of sound with a frequency of 880 Hz would be approximately 0.39 meters.


Does refractionand reflection effect the wavelength of sound?

No, refraction and reflection do not affect the wavelength of sound. Wavelength is determined by the frequency of sound waves in a given medium, and it remains constant as sound waves interact through these processes. Refraction and reflection can alter the direction and intensity of sound waves, but not their wavelength.

Related questions

What is determined by wavelength in sound?

The wavelength in sound determines the pitch of the sound. A shorter wavelength corresponds to a higher pitch, while a longer wavelength corresponds to a lower pitch.


How loud a sound is depends on the wavelength of the sound?

The loudness of a sound is typically measured in terms of intensity or amplitude, not wavelength. The wavelength of a sound wave affects its pitch, not its loudness. Sound intensity is related to the amount of energy carried by the sound wave.


What sound has a short wavelength?

A higher pitched sound has a shorter wavelength than a lower pitched sound.


What is the wavelength of sound that has a frequency of 539.8?

The wavelength of sound can be calculated using the formula: wavelength = speed of sound / frequency. Assuming the speed of sound is around 343 m/s, we can calculate the wavelength of sound with a frequency of 539.8 Hz to be approximately 0.636 meters.


What is the wavelength if the frequency of sound equals 880 Hz?

The wavelength of sound can be calculated using the formula: wavelength = speed of sound / frequency. If the speed of sound is approximately 343 m/s, then the wavelength of sound with a frequency of 880 Hz would be approximately 0.39 meters.


Does refractionand reflection effect the wavelength of sound?

No, refraction and reflection do not affect the wavelength of sound. Wavelength is determined by the frequency of sound waves in a given medium, and it remains constant as sound waves interact through these processes. Refraction and reflection can alter the direction and intensity of sound waves, but not their wavelength.


What is the relationship connecting the frequency of the sound source with the wavelength and the speed of sound in air?

The frequency of a sound source is directly related to the wavelength and the speed of sound in air through the equation: speed of sound = frequency x wavelength. As the frequency of the sound increases, the wavelength decreases, and vice versa, provided the speed of sound remains constant in the medium.


As the wavelength of sound increase its frequency does what?

As the wavelength of sound increases, its frequency decreases. This is because frequency and wavelength are inversely proportional in sound waves, meaning that as one increases, the other decreases.


What is the wavelength of a sound whose frequency is 42 Hz?

The wavelength of a sound wave can be calculated using the formula: wavelength = speed of sound / frequency. Assuming the speed of sound in air is around 343 m/s, the wavelength of a sound wave with a frequency of 42 Hz would be approximately 8.17 meters.


Are sound waves all the same size?

Do you mean the wavelength? Sound of higher frequencies has a shorter wavelength.


What happens with wavelength changes in sound?

When the wavelength of sound increases, the frequency decreases, resulting in a lower pitch sound. Conversely, if the wavelength decreases, the frequency increases, leading to a higher pitch sound. This relationship is governed by the speed of sound in a given medium.


If a sound gets louder does the wavelength of the sound it produces increase?

No, the wavelength of a sound does not change when the intensity or loudness of the sound increases. The wavelength of a sound wave depends on the frequency of the sound, which is determined by the source of the sound.