Stokes–Einstein relation

E31544

The Stokes–Einstein relation is a fundamental equation in statistical physics that links the diffusion coefficient of a particle in a fluid to its size, the fluid’s viscosity, and temperature.

AI illustration

How this image was made

AI-generated illustration of Stokes–Einstein relation

This AI-generated illustration was produced by black-forest-labs/FLUX.2-dev (1024x1024) from a prompt written by openai/gpt-oss-120b from the entity's label + description.

Prompt

Generate an image of the Stokes–Einstein relation (The Stokes–Einstein relation is a fundamental equation in statistical physics that links the diffusion coefficient of a particle in a fluid to its size, the fluid’s viscosity, and temperature.)

All labels observed (1)

Label Occurrences
Stokes–Einstein relation canonical 2

How this entity was disambiguated

Statements (49)

Predicate Object
instanceOf equation in statistical physics ⓘ
physical law ⓘ
appliesTo Brownian particles ⓘ
Newtonian fluids ⓘ
dilute suspensions ⓘ
spherical particles ⓘ
assumes continuum hydrodynamics ⓘ
isotropic medium ⓘ
low Reynolds number ⓘ
no-slip boundary condition ⓘ
overdamped motion ⓘ
thermal equilibrium ⓘ
category diffusion ⓘ
transport phenomena ⓘ
derivedFrom Einstein theory of Brownian motion ⓘ
Stokes law for viscous drag ⓘ
describes translational diffusion of spherical particles ⓘ
expresses diffusion coefficient is directly proportional to temperature ⓘ
diffusion coefficient is inversely proportional to fluid viscosity ⓘ
diffusion coefficient is inversely proportional to particle radius ⓘ
field colloid science ⓘ
physical chemistry ⓘ
soft condensed matter physics ⓘ
statistical physics ⓘ
hasComponentConcept Brownian motion ⓘ
viscous drag ⓘ
hasForm D = k_B T / (6 π η R) ⓘ
knownLimitation breaks down for supercooled liquids ⓘ
may fail for highly crowded environments ⓘ
may fail for strongly interacting colloids ⓘ
namedAfter Albert Einstein ⓘ
George Gabriel Stokes ⓘ
linked to: George Stokes
relatesQuantity Boltzmann constant ⓘ
absolute temperature ⓘ
diffusion coefficient ⓘ
fluid viscosity ⓘ
particle radius ⓘ
usedFor characterizing colloidal dispersions ⓘ
estimating particle size from diffusion measurements ⓘ
interpreting dynamic light scattering experiments ⓘ
microrheology ⓘ
nanoparticle size determination ⓘ
validWhen hydrodynamic interactions are well described by continuum theory ⓘ
particle size is much larger than solvent molecules ⓘ
variable D ⓘ
R ⓘ
T ⓘ
k_B ⓘ
η ⓘ

How these facts were elicited

Referenced by (2)

Full triples — surface form annotated when it differs from this entity's canonical label.

Einstein–Smoluchowski relation → relatedConcept → Stokes–Einstein relation ⓘ
George Gabriel Stokes → notableIdea → Stokes–Einstein relation ⓘ
subject linked to: George Gabriel