5,180 Hz Wavelength

How Long Is a 5180 Hz Wavelength?

A 5180 Hz sound wave has a wavelength of 0.07 meters, 6.63 cm, 0.22 feet (0 feet and 2.61 inches) or 2.61 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 = 5180 Hz
which gives a wavelength λ of 0.07 meters, or 0.22 feet.

5180 Hz Wavelength Depending on Temperature

The speed of sound in air depends on temperature. Here is how the wavelenght of a 5180 Hz sound wave will vary according to temperature:

Temp (°C) Temp (°F) 5180 Hz wavelength (cm)5180 Hz wavelength (in)
-40-405.90892.3264
-35-315.97202.3512
-30-226.03432.3757
-25-136.09602.4000
-20-46.15722.4241
-1556.21772.4479
-10146.27762.4715
-5236.33692.4949
0326.39582.5180
5416.45402.5410
10506.51182.5637
15596.56902.5862
20686.62582.6086
25776.68202.6307
30866.73782.6527
35956.79322.6745
401046.84812.6961

5180 Hz Half Wavelength and Standing Waves

The half wavelength of a 5180 Hz sound wave is 0.03 meters, 3.31 cm, 0.11 feet (0 feet and 1.3 inches) or 1.3 inches when travelling in air at 20°C (68°F).

Modes (or standing waves) will occur at 5180 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 5180 Hz wavelength = 0.07 meters, or 0.22 feet in air at 20°C (68°F).

5180 Hz Standing Waves Distances

n Distance (m) Distance (ft)
10.030.11
20.070.22
30.100.33
40.130.43
50.170.54

We typically don't treat rooms for standing waves above 300 Hz.

Given the relatively small 5180 Hz half wavelength, you can treat your room by using thick acoustic foam. This will absorb frequencies as low as 250 Hz, and all the way up to 20,000 Hz.

How To Convert 5180 Hz To ms

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

Because a 5180 Hz wave will ocillate 5180 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 = 5180 Hz

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

1 / 5180 Hz * 1000 = 0.19 ms.