Acousticsconcept
Sound fundamentals: wavelength, frequency, and speed through media
One-line orientation
Before STC, NRC, and IIC ratings make sense, the exam expects the underlying physics — the wavelength–frequency–speed relationship and how fast sound moves through air versus water versus steel.
Key points
- Sound needs a medium. It propagates as a pressure wave through air, liquids, or solids — it cannot travel through a vacuum.
- Frequency (f): the number of complete wave cycles passing a point per second, in Hertz (Hz) — perceived as pitch.
- Wavelength (λ): the distance between two consecutive in-phase points on the wave (e.g., crest to crest), measured in feet.
- Speed (v): how fast the wave travels through a medium, in feet per second (ft/s).
- The wave relationship: v = f × λ. Because v is essentially fixed by the medium, frequency and wavelength are inversely related — high frequency = short wavelength, low frequency = long wavelength.
- Speed depends on the medium — denser/stiffer carries sound faster:
- Air: ~1,125 ft/s at 68°F (~1,128 ft/s is the commonly cited round figure).
- Water: ~4,862 ft/s.
- Steel: ~19,570 ft/s.
Confusions / comparison
Sound speed by medium — remember 1× · 4.3× · 17.4×
Bars share a true zero; values are representative at room-temperature reference conditions.
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Speed is not controlled by density alone. It depends on elastic stiffness and density; steel’s much greater stiffness dominates this comparison.
| Medium | Sound speed (approx.) | Why |
|---|---|---|
| Air | ~1,125 ft/s (68°F) | Low density, low stiffness — slowest |
| Water | ~4,862 ft/s | Denser than air — faster |
| Steel | ~19,570 ft/s | Dense and stiff — fastest |
| Quantity | Symbol | Unit | Note |
|---|---|---|---|
| Frequency | f | Hz (cycles/s) | Perceived as pitch |
| Wavelength | λ | ft | Crest-to-crest distance |
| Speed | v | ft/s | Set by the medium; v = f × λ |
Related
→ Acoustics: STC / NRC / IIC (dB rules, octave bands, single-number ratings) · Sabins & RT60 (absorption and reverberation) · Design strategies (mass vs stiffness; structure-borne vs airborne; low- vs high-frequency control).
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