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🔵 Stokes’ Law Calculator

Enter the particle diameter, particle density, fluid density, and fluid viscosity to find the terminal settling velocity using Stokes’ Law.

1
µm
2
kg/m³
3
kg/m³
4
mPa·s

What This Calculator Does

Stokes’ Law predicts the terminal (constant) settling velocity of a small, rigid, spherical particle falling or rising through a viscous fluid under gravity, once the drag force balances the net gravitational force.

The Formula

Stokes’ Law is v = (2/9) × ((ρp − ρf) × g × r²) ÷ μ, where v is terminal velocity, ρp is particle density, ρf is fluid density, g is gravitational acceleration (9.80665 m/s²), r is the particle’s radius, and μ is the fluid’s dynamic viscosity. A positive result means the particle sinks; a negative result means it rises (the particle is less dense than the fluid).

  • Stokes’ Law is only accurate for laminar flow around the particle, generally when the particle Reynolds number is below about 1; this calculator also reports that Reynolds number so you can check validity.
  • At higher Reynolds numbers, drag no longer follows Stokes’ linear relationship and more general drag-coefficient methods are needed.

This is the standard Stokes’ Law formula used for general physics, sedimentation, and educational reference purposes.

Last reviewed August 2026