Urban legends say that at 5 Hz, the "brown note", loud sound waves can make you lose control of your bowels. However, this is just a legend and has been proven false.
To convert from frequency (Hz) to wavelength (m), you can use the formula: Wavelength (m) = Speed of Light (m/s) / Frequency (Hz). The speed of light is approximately 3 x 10^8 m/s. Therefore, for a frequency of 262 Hz, the wavelength would be approximately 1145 meters.
The wavelength of 4.53 m means a frequency of f1 = 339/4.53 = 74.8 Hz in air and a frequency of f2 = 960/4.53 = 211.9 Hz in helium.
12 half-tones = 1 octave = double the frequency1 half tone = multiply frequency by the 12th root of 2 = 1.0594631 (rounded)'E' above 'A' is 7 half tones above 'A'.Frequency of 'E' above = (440) x (2)7/12 = 659.3 Hz.(rounded)'E' below 'A' is 5 half tones below 'A'.Frequency of 'E' below = (440) divided by (2)5/12 = 329.6 Hz . (rounded)Notice that, by golly, the frequencies we calculated for 'E' above and 'E' beloware in the ratio of 2 to 1 . . . they're an octave apart, just as we would hope.
The wavelength of a sound wave is inversely related to its frequency. Since the speed of sound in air is approximately constant, a lower frequency (like 266 Hz) corresponds to a longer wavelength, while a higher frequency (400 Hz) has a shorter wavelength. Specifically, the wavelength of the 266 Hz sound wave will be longer than that of the 400 Hz sound wave.
The wave frequency would be 0.2 Hz. (6 waves / 30 seconds = 0.2 Hz)
Half an octave above 100 Hz would be approximately 141 Hz.
The frequency of a C of the fourth octave is approximately 261.626 Hz.
20 of anything is larger than 5 of the same thing.
The frequency would be 5 Hz, as hertz (Hz) is the unit used to measure frequency in waves per second.
A minor third above A5 (880 Hz) is C#6, which is approximately 1108.73 Hz.
The speed of sound in air is approximately 343 m/s. To calculate the wavelength, we use the formula: wavelength = speed of sound / frequency. Plugging in the values (343 m/s / 5 Hz) gives a wavelength of approximately 68.6 meters.
Sounds can be heard within a frequency range of approximately 20 Hz to 20,000 Hz. Below 20 Hz, sounds are considered infrasound, and above 20,000 Hz, sounds are considered ultrasound.
To convert from megahertz (MHz) to hertz (Hz), you would multiply the value in MHz by 1,000,000 (since 1 MHz = 1,000,000 Hz). For example, if you have a frequency of 5 MHz, you would multiply 5 by 1,000,000 to get 5,000,000 Hz.
Humans can hear approximately 64-23,000 Hz sounds, dogs hear about 67-45,000 Hz sounds.
The wavelength of a 440 Hz wave in air can be calculated using the formula: wavelength = speed of sound in air / frequency. The speed of sound in air at room temperature is approximately 343 m/s. Therefore, the wavelength of a 440 Hz wave in air is approximately 0.780 meters.
The wavelength of a 565 Hz signal can be calculated using the formula: wavelength = speed of light / frequency. The speed of light is approximately 3 x 10^8 meters per second. Therefore, the wavelength of a 565 Hz signal is approximately 531,858 meters.
The wavelength is (the speed of the wave) / (350) .