Formula

Mass law (field incidence)

\[ R = 20 \log_{10}(m_s\, f) - 48 \]

What the symbols mean
  • Rsound reduction index (dB)
  • mₛsurface mass of the panel (kg/m²)
  • ffrequency (Hz)
  • f_ccritical (coincidence) frequency (Hz)
  • ηloss factor / internal damping (dimensionless)
  • EYoung's modulus of the material (Pa)
  • hpanel thickness (m)
  • ρ₀c₀characteristic impedance of air (≈ 415 rayl)

Inputs

Internal damping of the material (dimensionless). Drives the depth of the coincidence dip: low for steel/glass, high for laminated glass or lead.

Result

Weighted index Rw (estimated)
Surface mass
Critical frequency

Sound reduction index R = f(frequency)

Understand the theory — physics concept and calculationsinteractive

The sound reduction index R (in dB) measures how well a wall blocks the sound passing through it: the higher R, the better the insulation. For a single panel a remarkably robust rule governs the insulation across a wide frequency range — the mass law. It says that almost everything hinges on a single quantity: the panel's surface mass \(m_s\) (in kg/m²). Double the mass, or double the frequency, and you gain about 6 dB. Drag the slider below to watch the transmission-loss line rise as the wall gets heavier.

The mass law: R grows with mass and frequency
R at 500 Hz (mass law)— dB
+6 dB per doubling of mass · +6 dB per octave
+6 dB per doubling of surface mass, +6 dB per octave. That 6 dB/octave slope is why mass is the number-one lever for single-panel insulation: to gain 6 dB you need twice the material.