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- Rayleigh–Plesset_equation abstract "In fluid mechanics, the Rayleigh–Plesset equation is an ordinary differential equation which governs the dynamics of a spherical bubble in an infinite body of liquid. Its general form is usually written aswhereis the pressure within the bubble, assumed to be uniformis the external pressure infinitely far from the bubbleis the density of the surrounding liquid, assumed to be constantis the radius of the bubbleis the kinematic viscosity of the surrounding liquid, assumed to be constantis the surface tension of the bubbleProvided that is known and is given, the Rayleigh–Plesset equation can be used to solve for the time-varying bubble radius .The Rayleigh–Plesset equation is derived from the Navier–Stokes equations under the assumption of spherical symmetry. Neglecting surface tension and viscosity, the equation was first derived by John Strutt, 3rd Baron Rayleigh in 1917. The equation was first applied to traveling cavitation bubbles by Milton S. Plesset in 1949.".
- Rayleigh–Plesset_equation thumbnail Cavitacion.jpg?width=300.
- Rayleigh–Plesset_equation wikiPageID "35760325".
- Rayleigh–Plesset_equation wikiPageRevisionID "592845534".
- Rayleigh–Plesset_equation subject Category:Equations_of_fluid_dynamics.
- Rayleigh–Plesset_equation subject Category:Ordinary_differential_equations.
- Rayleigh–Plesset_equation comment "In fluid mechanics, the Rayleigh–Plesset equation is an ordinary differential equation which governs the dynamics of a spherical bubble in an infinite body of liquid.".
- Rayleigh–Plesset_equation label "Rayleigh–Plesset equation".
- Rayleigh–Plesset_equation sameAs Rayleigh%E2%80%93Plesset_equation.
- Rayleigh–Plesset_equation sameAs Q7298492.
- Rayleigh–Plesset_equation sameAs Q7298492.
- Rayleigh–Plesset_equation wasDerivedFrom Rayleigh–Plesset_equation?oldid=592845534.
- Rayleigh–Plesset_equation depiction Cavitacion.jpg.