Use the formula: Velocity= Wavelength*Frequency 330=5*fequency frequency=330/5 frequency=66
The wavelength of ultrasonic sound typically ranges from 1 mm to 1 cm, corresponding to frequencies higher than the upper limit of human hearing (20 kHz). Ultrasonic sound waves have shorter wavelengths compared to audible sound waves.
Sound is not visible to the human eye, it is only audible.
To find the wavelength, the following formula applies: λ = ν / f That in common words is: Wavelength = Wave's Speed / Wave's Frequency So, Wavelength of sound wave = Speed of sound wave / Frequency of sound wave Now, Speed of sound wave is 343 m/s, so Wavelength of sound wave = 343 m/s / Frequency of sound wave Frequency of sound waves audible to a human ear range between 20 Hz to 20 kHz. So filling the desired sound frequency in the equation above you get the desired wavelength of that sound wave.
Audible sound is created when an object vibrates, causing air particles to also vibrate and create sound waves that can be heard by the human ear.
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.
The wavelength of ultrasonic sound typically ranges from 1 mm to 1 cm, corresponding to frequencies higher than the upper limit of human hearing (20 kHz). Ultrasonic sound waves have shorter wavelengths compared to audible sound waves.
Sound is not visible to the human eye, it is only audible.
The wavelength of a wave is the wave speed divided by the frequency, so you have to know the speed of the wave then divide it by the frquency. You will probably want to change thr frequency to just hz if the speed is m/s, or leave it as khz if the speed is in km/s.
To find the wavelength, the following formula applies: λ = ν / f That in common words is: Wavelength = Wave's Speed / Wave's Frequency So, Wavelength of sound wave = Speed of sound wave / Frequency of sound wave Now, Speed of sound wave is 343 m/s, so Wavelength of sound wave = 343 m/s / Frequency of sound wave Frequency of sound waves audible to a human ear range between 20 Hz to 20 kHz. So filling the desired sound frequency in the equation above you get the desired wavelength of that sound wave.
To find the frequency, use the formula: frequency = speed of sound / wavelength. Assuming the speed of sound is 343 m/s, the frequency of the sound wave would be approximately 229 Hz. Yes, this frequency is within the audible range for humans, so you would be able to hear this sound.
The vowel that is not in "audible" is the vowel sound /æ/ as in "cat" or "trap".
The lowest frequency of visible light ... assume wavelength = 750 nm ...is around 400,000 GHz.The highest frequency of audible sound is around 20 KHz.So the smallest ratio ... lowest frequency of light to highest frequency of sound ...is 4 x 1014/2 x 104 = 20 billion .
Audible sound is created when an object vibrates, causing air particles to also vibrate and create sound waves that can be heard by the human ear.
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.
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.
A sound that can be heard in ordinary human ear is audible sound. It is approximately between 20 to 2000 decibel in strength.sound which is audible.. I.e. sound you can hear, as opposed to sound beyond human hearing at very low or very high frequencies.sound that is capable of being heard; sound loud enough to be heard; sound that is actually heard.
A higher pitched sound has a shorter wavelength than a lower pitched sound.