Young Laplace Equation Calculator

mN/m
Water at 20°C: 72.8 mN/m.
µm

Calculate the pressure difference across a curved fluid interface (droplet, bubble) using the Young-Laplace equation.

Formula

ΔP = 2γ/R (droplet); ΔP = 4γ/R (soap bubble — 2 surfaces)
  • γ = surface tension (N/m); R = radius (m).
  • Soap bubble has two liquid-air interfaces, so factor is 4γ/R.
  • Smaller droplet = higher internal pressure.
  • Water surface tension at 20°C ≈ 72.8 mN/m; at 37°C ≈ 70 mN/m.

10 µm water droplet in air

Inputs
  • Surface Tension (γ): 72.8 mN/m
  • Droplet/Bubble Radius (R): 10 µm
  • Interface Type: droplet

ΔP = 2 × 0.0728 / 10×10⁻⁶ = 14,560 Pa ≈ 14.6 kPa.

Frequently asked questions

Why does a soap bubble have 4γ/R instead of 2γ/R?
A soap bubble has two spherical interfaces (inner and outer surface), each contributing 2γ/R.
What is capillary pressure?
The pressure difference across a curved meniscus in a capillary tube, governed by the Young-Laplace equation.