How long is a 2000 Hz sound wave in air?

    How long is a 440 Hz sound wave? 77.95 cm in air, 3.37 m in water. Find frequency, wavelength or wave speed from the other two, with the period, angular frequency and nearest piano key.

    The calculator below is set to find the wavelength of a 2000 Hz sound traveling through air at 20 °C, where sound moves at 343 m/s, or 1,125 ft/s. The wavelength is that speed divided by 2000, and the result gives it in metric and US units along with the period, the angular frequency and the nearest key on a piano.

    The air setting matters. Sound speeds up as air warms, by about 0.6 m/s for every degree Celsius, so the same tone has a slightly longer wavelength on a hot day. People hear roughly 20 Hz to 20 kHz, and the table in the result shows how much longer the same 2000 Hz wave becomes in water, iron or diamond.

    Measuring in a different medium or at another temperature? Pick another preset, or choose to type your own speed.

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    How long a sound wave really is

    How far apart are the crests of concert A? In air at 20 °C, 77.95 cm, a little over 2.5 ft. Play the same 440 Hz under water and they spread to 3.37 m, because sound moves more than four times faster there. This calculator solves v = f × λ for whichever of the three you are missing, using seven preset speeds or your own, and adds the period, the angular frequency, the wavenumber and the nearest piano key.

    77.95 cm
    one wave of 440 Hz in air at 20 °C
    3.37 m
    the same note in fresh water
    17.15 m to 1.72 cm
    everything a human ear hears, 20 Hz to 20 kHz, in air
    1.54 mm
    a 1 MHz ultrasound wave in soft tissue

    Two numbers in, the third one out

    1. Find the - frequency, wavelength or wave speed. The boxes below change to ask only for the other two.
    2. Wave travels through - for frequency or wavelength, pick air, fresh water, seawater, soft tissue, granite, iron or diamond, or Type my own speed with its unit (m/s, ft/s, mph, km/h or km/s).
    3. Frequency - the value and its unit, Hz to GHz. Concert A is 440 Hz.
    4. Wavelength - crest to crest, in mm, cm, m, km, inches or feet.
    5. Read the result - the answer in metric and US units, the period, ω and k, whether people can hear it, the nearest piano key, and a table of the same wave in all seven media.

    Why the medium moves the wavelength but not the pitch

    A wave's frequency belongs to whatever makes it. A tuning fork vibrates 440 times a second whether it rings in a hall or a swimming pool, and each vibration sends out one wave. What the medium decides is how fast those waves travel away, and so how much room each one takes up. Fast medium, long waves. Slow medium, short ones. Pitch follows frequency, which is why the note sounds like A in both places while its wavelength differs by a factor of 4.318.

    The speeds in the presets come from the Wikipedia article on the speed of sound: 343 m/s in dry air at 20 °C, 1,481 m/s in fresh water at the same temperature, about 1,500 m/s in seawater, 5,120 m/s in iron and 12,000 m/s in diamond. Granite, about 5,000 m/s, is from the article on seismic waves, and 1,540 m/s is the value medical ultrasound scanners assume for soft tissue when they turn an echo's travel time into depth. Air is what physicists call non-dispersive: every audible frequency travels at practically the same speed, so one preset serves the whole range.

    The three extra numbers are different views of the same wave. The period is the time one cycle takes, 1 / f, so 2.27 ms at 440 Hz. The angular frequency ω = 2πf, 2,764.60 rad/s for the same note, is the form most textbook equations of motion use. The wavenumber k = 2π / λ, 8.06 rad/m in air, counts radians of phase per meter of travel.

    Wavelengths from a one-hertz rumble to an ultrasound scan

    Every row is the calculator's own output. Across the table the wavelength shrinks by a factor of more than fifty million, and the top and bottom rows are both sound.

    Wave Frequency Medium Wavelength US units
    Slow ground vibration1 Hzgranite5.00 km3.11 mi
    Lowest audible tone20 Hzair17.15 m56.27 ft
    Lowest piano key, A027.5 Hzair12.47 m40.92 ft
    Middle C, C4261.63 Hzair1.31 m4.30 ft
    Concert A, A4440 Hzair77.95 cm2.56 ft
    Concert A440 Hziron11.64 m38.18 ft
    Highest piano key, C84,186.01 Hzair8.19 cm3.23 in
    Top of human hearing20 kHzair1.72 cm0.68 in
    Top of a dog's hearing45 kHzair7.62 mm0.30 in
    Top of a cat's hearing79 kHzair4.34 mm0.17 in
    Highest bat hearing quoted200 kHzair1.72 mm0.0675 in
    Deep-organ ultrasound1 MHzsoft tissue1.54 mm0.0606 in
    Upper end for deep organs6 MHzsoft tissue256.67 µm0.0101 in
    Superficial ultrasound18 MHzsoft tissue85.56 µm0.0034 in

    Hearing limits for dogs (67 Hz to 45 kHz), cats (55 Hz to 79 kHz) and some bat species (up to 200 kHz) are as given in Wikipedia's hearing range article; the ultrasound bands of 1 to 6 MHz for deep organs and 7 to 18 MHz for structures near the skin are from its medical ultrasound article.

    One kilohertz, seven materials

    A 1 kHz tone keeps its frequency everywhere, so the wavelength column is simply each speed divided by 1,000.

    Medium Speed Wavelength of 1 kHz
    Air at 20 °C343 m/s (1,125.33 ft/s)34.30 cm (1.13 ft)
    Fresh water at 20 °C1,481 m/s (4,858.92 ft/s)1.48 m (4.86 ft)
    Seawater1,500 m/s (4,921.26 ft/s)1.50 m (4.92 ft)
    Soft tissue1,540 m/s (5,052.49 ft/s)1.54 m (5.05 ft)
    Granite5,000 m/s (16,404.20 ft/s)5.00 m (16.40 ft)
    Iron5,120 m/s (16,797.90 ft/s)5.12 m (16.80 ft)
    Diamond12,000 m/s (39,370.08 ft/s)12.00 m (39.37 ft)

    Numbers about waves that tend to surprise

    A 1 kHz tone is not quite a note. The nearest piano key is B5 at 987.77 Hz, and 1,000 Hz sits 21 cents sharp of it, about a fifth of a semitone.
    Sound in diamond is almost 35 times faster than in air. 12,000 m/s against 343 m/s is a ratio of 34.985, so a 440 Hz wave inside a diamond would be 27.27 m long, far bigger than any stone.
    A wave one meter long in air is a slightly flat F. Type a wavelength of 1 m and the calculator returns 343.00 Hz, 31 cents flat of F4 at 349.23 Hz. One foot gives 1.13 kHz, 26 cents sharp of C#6.
    The audible range spans ten octaves of wavelength. From 17.15 m at 20 Hz to 1.72 cm at 20 kHz is a factor of 1,000, just under ten doublings. Wikipedia notes the upper limit usually starts dropping from around age eight.
    The 767 mph figure checks out. The article on the speed of sound quotes 343 m/s as 1,125 ft/s or 767 mph; exact conversion gives 1,125.33 ft/s and 767.27 mph, and typing 767 mph as your own speed returns a 440 Hz wavelength of 77.93 cm, 0.02 cm short of the preset.

    Who types a frequency into this

    Physics students checking a v = f × λ problem in any direction, including the ones that give the speed in ft/s or mph.
    Musicians and audio people who want the physical size of a note, for example that a 20 Hz wave in a room is 56.27 ft long, or which key a test tone lands closest to.
    Sonography students working out why a 6 MHz probe gives shorter waves than a 1 MHz one, 256.67 µm against 1.54 mm at 1,540 m/s.
    Anyone who measured a wave with a microphone, a hydrophone or a ripple tank and wants the speed: 440 Hz with crests 0.78 m apart is 343.20 m/s, within 0.1 % of the air preset.

    Wave questions with the arithmetic shown

    What is the wavelength of a 440 Hz sound wave in air?
    343 / 440 = 0.7795 m, so 77.95 cm or 2.56 ft at 20 °C. The period is 2.27 ms.
    How do I find the frequency of a wave from its wavelength?
    Divide the speed by the wavelength. A wave 3 cm long in fresh water: 1,481 / 0.03 = 49,366.67 Hz, which the calculator shows as 49.37 kHz, ultrasound.
    Does the frequency change when sound goes from air into water?
    No. The source sets the frequency and it stays the same; the speed rises from 343 to 1,481 m/s and the wavelength stretches by the same factor, 4.318.
    Can I use it for a guitar string or a different temperature?
    Yes, with Type my own speed. The presets are fixed, and air is set at 20 °C, so for warmer or colder air, a string or any other wave, enter the speed you have. That speed box is ignored when you are finding the speed itself.
    What is the difference between frequency and angular frequency?
    Frequency counts cycles per second; angular frequency counts radians per second, and one cycle is 2π radians. For 440 Hz: 2 × π × 440 = 2,764.60 rad/s.
    Why does a radio frequency give a warning instead of a hearing verdict?
    At speeds of 100 million m/s and above the wave cannot be sound, so the result says so and points to the Wavelength to Color Calculator. At the speed of light, 100 MHz is 3.00 m (9.84 ft). A speed above that of light is flagged as a unit mistake.

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    Calculator verified by the LiczGrupa.pl team

    Content, formulas and results have been reviewed for accuracy and relevance by our team of specialists.

    Natalia Skrzek

    Reviewed by: Natalia Skrzek