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 wave frequency would be 0.2 Hz. (6 waves / 30 seconds = 0.2 Hz)
It could be anything from zero to infinity because Hertz are not proportional to either watts or volts. But 120 v supplies are common in America, where the frequency happens to be 60 Hz.
The frequency of a C of the fourth octave is approximately 261.626 Hz.
Half an octave above 100 Hz would be approximately 141 Hz.
20 of anything is larger than 5 of the same thing.
A minor third above A5 (880 Hz) is C#6, which is approximately 1108.73 Hz.
The frequency would be 5 Hz, as hertz (Hz) is the unit used to measure frequency in waves per second.
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.
Humans can hear approximately 64-23,000 Hz sounds, dogs hear about 67-45,000 Hz sounds.
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.
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) .