18 Hz Wavelength

How Long Is a 18 Hz Wavelength?

A 18 Hz sound wave has a wavelength of 19.07 meters, 1906.75 cm, 62.56 feet (62 feet and 6.69 inches) or 750.69 inches when traveling in air at 20°C (68°F).

The formula for the wavelenght is λ = c/f where:

  • c is the celerity (speed) of sound = 343.21 m/s or 1126.03 ft/s in air at 20°C (68°F).
  • f is the frequency = 18 Hz
which gives a wavelength λ of 19.07 meters, or 62.56 feet.

18 Hz Wavelength Depending on Temperature

The speed of sound in air depends on temperature. Here is how the wavelenght of a 18 Hz sound wave will vary according to temperature:

Temp (°C) Temp (°F) 18 Hz wavelength (m)18 Hz wavelength (ft)
-40-4017.004655.7893
-35-3117.186056.3844
-30-2217.365456.9732
-25-1317.543157.5560
-20-417.718958.1329
-15517.893158.7042
-101418.065559.2700
-52318.236359.8305
03218.405660.3857
54118.573260.9359
105018.739461.4811
155918.904262.0216
206819.067562.5573
257719.229463.0886
308619.390063.6154
359519.549264.1379
4010419.707264.6561

18 Hz Half Wavelength and Standing Waves

The half wavelength of a 18 Hz sound wave is 9.53 meters, 953.37 cm, 31.28 feet (31 feet and 3.34 inches) or 375.34 inches when travelling in air at 20°C (68°F).

Modes (or standing waves) will occur at 18 Hz in rooms where two opposing walls (axial mode), edges (tangential mode) or corners (oblique mode) are spaced by a distance d = nλ/2 where:

  • n is a natural (positive integer greater than or equal to 1)
  • λ is the 18 Hz wavelength = 19.07 meters, or 62.56 feet in air at 20°C (68°F).

18 Hz Standing Waves Distances

n Distance (m) Distance (ft)
19.5331.28
219.0762.56
328.6093.84
438.13125.11
547.67156.39

Given the relatively large 18 Hz half wavelength, standing waves will occur at that frequency in small listening rooms.

You can try to minimze the room modes at 18 Hz by trying different speaker positions, listening positions or by placing bass traps. These can absorb frequencies as low as 63 Hz.

How To Convert 18 Hz To ms

A Hz (Hertz) is a cycle (or period) per second.

Because a 18 Hz wave will ocillate 18 times per second, we can find the time of a single cycle (or period) with the formula p = 1/f where:

  • f is the frequency of the wave = 18 Hz

The result will be expressed in seconds, so let's multiply by 1000 to get miliseconds:

1 / 18 Hz * 1000 = 55.56 ms.