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 * Advection
 * Avogadro constant
 * Bernoulli's principle
 * Boltzmann constant
 * Boltzmann distribution
 * Boltzmann equation
 * Boundary element method
 * Boundary layer
 * Boussinesq approximation (buoyancy)
 * Boussinesq approximation (water waves)
 * Branching random walk
 * Brinkman number
 * Brownian motion
 * Brownian tree
 * Bulk density
 * Capillary
 * Capillary action
 * Capillary number
 * Cauchy momentum equation
 * Chapman–Enskog theory
 * Chemical equilibrium
 * Chemical kinetics
 * Chemical process
 * Chemical reaction
 * Classical field theory
 * Collision frequency
 * Compressible flow
 * Computational fluid dynamics
 * Concentration
 * Conjugate variables
 * Conjugate variables (thermodynamics)
 * Conservation of energy
 * Conservation of mass
 * Constitutive equation
 * Continuity equation
 * Continuum mechanics
 * Control volume
 * Convection
 * Convection–diffusion equation
 * Couette flow
 * Damköhler numbers
 * Darcy (unit)
 * Darcy number
 * Darcy's law
 * Darcy's law for multiphase flow
 * Darcy–Weisbach equation
 * Detached eddy simulation
 * Different types of boundary conditions in fluid dynamics
 * Diffusion
 * Diffusion equation
 * Diffusion-controlled reaction
 * Diffusion-limited aggregation
 * Dimensional analysis
 * Dimensionless numbers in fluid mechanics
 * Dimensionless physical constant
 * Dimensionless quantity
 * Direct numerical simulation
 * Discrete element method
 * Discretization of Navier–Stokes equations
 * Double diffusive convection
 * Drag (physics)
 * Drag coefficient
 * Dynamic equilibrium
 * Dynamical mean field theory
 * Effective porosity
 * Einstein relation (kinetic theory)
 * Equation of state
 * Equilibrium constant
 * Euler equations (fluid dynamics)
 * Euler number (physics)
 * Fick's laws of diffusion
 * Finite difference method
 * Finite element method
 * Finite volume method
 * Finite volume method for unsteady flow
 * First law of thermodynamics
 * Fisher's equation
 * Flow velocity
 * Fluid dynamics
 * Fluid mechanics
 * Fractal
 * Fractal dimension
 * Fractal-generating software
 * Free molecular flow
 * Free-energy relationship
 * Galilean invariance
 * Gas constant
 * Gas kinetics
 * Gas porosity
 * Gaseous diffusion
 * General relativity
 * Gibbs free energy
 * Ginzburg criterion
 * Ginzburg–Landau theory
 * Hagen–Poiseuille equation
 * Heat transfer
 * Helmholtz decomposition
 * Helmholtz's theorems
 * High-resolution scheme
 * Homogeneity and heterogeneity
 * Homogeneous differential equation
 * Homogeneous function
 * Homogeneous polynomial
 * Hydrodynamic stability
 * Ideal gas law
 * Immersed boundary method
 * Incompressible flow
 * Inertial frame of reference
 * Inviscid flow
 * Isothermal flow
 * Kinetic theory of gases
 * Knudsen diffusion
 * Knudsen equation
 * Knudsen number
 * Laminar flow
 * Lamé parameters
 * Landau theory
 * Large eddy simulation
 * Lattice Boltzmann methods
 * Lebesgue covering dimension
 * Level-set method
 * Linear differential equation
 * Linear elasticity
 * List of dimensionless quantities
 * List of hydrodynamic instabilities named after people
 * Lévy flight
 * Lévy flight foraging hypothesis
 * Mach number
 * Mass diffusivity
 * Mass flow rate
 * Mass transfer
 * Maxwell's equations
 * Maxwell–Boltzmann distribution
 * Maxwell–Stefan diffusion
 * Mean field game theory
 * Mean field theory
 * Mean free path
 * Method of matched asymptotic expansions
 * Millennium Prize Problems
 * Molar mass
 * Mole (unit)
 * Molecular diffusion
 * Molecular dynamics
 * Momentum
 * Moving particle semi-implicit method
 * Multi-particle collision dynamics
 * Multiphase flow
 * Multiphase heat transfer
 * N-body problem
 * Nanoporous materials
 * Natural convection
 * Navier–Stokes equations
 * Navier–Stokes existence and smoothness
 * Newton's laws of motion
 * No-slip condition
 * Non-dimensionalization and scaling of the Navier–Stokes equations
 * Non-equilibrium thermodynamics
 * Non-Newtonian fluid
 * Nondimensionalization
 * Nonlinear system
 * Numerical methods in fluid mechanics
 * Numerical solution of the convection–diffusion equation
 * Open-channel flow
 * Order of reaction
 * Pascal's law
 * Permeability (earth sciences)
 * Permeability (electromagnetism)
 * Permeation
 * Physical constant
 * Pipe flow
 * Pontryagin duality
 * Porosity
 * Porous medium
 * Power law
 * Prandtl number
 * Pressure gradient
 * Pressure jump
 * Pressure-correction method
 * Probability density function
 * Probability distribution
 * Process tomography
 * Péclet number
 * Random close pack
 * Random walk
 * Random walker algorithm
 * Rate equation
 * Rayleigh–Bénard convection
 * Reaction mechanism
 * Reaction progress kinetic analysis
 * Reaction rate
 * Reaction rate constant
 * Reaction–diffusion system
 * Reaction–diffusion–advection equation
 * Relativistic Euler equations
 * Relaxation (physics)
 * Reverse diffusion
 * Reversible process (thermodynamics)
 * Reversible reaction
 * Reynolds number
 * Reynolds transport theorem
 * Reynolds-averaged Navier–Stokes equations
 * Ruppeiner geometry
 * Second law of thermodynamics
 * Self-diffusion
 * Sieverts' law
 * Siméon Denis Poisson
 * Smoothed-particle hydrodynamics
 * Sorption
 * Space-filling curve
 * Spectral element method
 * State function
 * Statistical mechanics
 * Steady state (chemistry)
 * Stochastic Eulerian Lagrangian method
 * Stochastic process
 * Stokes boundary layer
 * Stokes flow
 * Stokes stream function
 * Stokes' theorem
 * Stopped-flow
 * Stream function
 * Streamlines, streaklines, and pathlines
 * Surface diffusion
 * Surface tension
 * Taylor–Green vortex
 * Temperature gradient
 * Temperature jump
 * Thermal conduction
 * Thermal conductivity
 * Thermal diffusivity
 * Thermodynamic potential
 * Thermodynamic temperature
 * Thermodynamics
 * Transition state theory
 * Transport coefficient
 * Transport phenomena
 * Turbulence
 * Turbulent diffusion
 * Two-phase flow
 * Vapor pressure
 * Viscosity
 * Volume of fluid method
 * Volume viscosity
 * Volumetric flow rate
 * Volumetric flux
 * Vortex
 * Vorticity
 * Vorticity confinement