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An Introduction to Navier'Stokes Equation and Oceanograph

Luc Tartar

Resumen/Descripción – provisto por la editorial

No disponible.

Palabras clave – provistas por la editorial

Analysis; Partial Differential Equations; Classical Continuum Physics

Disponibilidad
Institución detectada Año de publicación Navegá Descargá Solicitá
No detectada 2006 SpringerLink

Información

Tipo de recurso:

libros

ISBN impreso

978-3-540-35743-8

ISBN electrónico

978-3-540-36545-7

Editor responsable

Springer Nature

País de edición

Reino Unido

Fecha de publicación

Información sobre derechos de publicación

© Springer 2006

Tabla de contenidos

Time-dependent solutions III

Palabras clave: Weak Solution; Stokes Equation; Strong Solution; Interpolation Space; Normal Trace.

Pp. 119-124

Uniqueness in 2 dimensions

Palabras clave: Differential Equation; Partial Differential Equation; Unique Solution; Maximum Principle; Uniqueness Result.

Pp. 125-127

Traces

Palabras clave: Smooth Boundary; Local Equation; Exterior Derivative; Lipschitz Boundary; Trace Space.

Pp. 129-135

Using compactness

Palabras clave: Banach Space; STEKLOV Institute; Cauchy Sequence; Russian Mathematician; Lorentz Space.

Pp. 137-141

Existence of smooth solutions

Pp. 143-146

Semilinear models

Palabras clave: French Mathematician; Discrete Velocity Model; Japanese Mathematician; Lipschitz Perturbation; Swedish Mathematician.

Pp. 147-154

Size of singular sets

Palabras clave: Stokes Equation; Maximal Function; Lebesgue Point; French Mathematician; Poisson Integral.

Pp. 155-159

Local estimates, compensated integrability

Palabras clave: Stokes Equation; Hardy Space; Local Estimate; Radial Function; Compactness Theorem.

Pp. 161-165

Coriolis force

Palabras clave: Stokes Equation; Global Existence; Lorentz Force; Gravitation Potential; Material Point.

Pp. 167-169

Equation for the vorticity

Palabras clave: Differential Equation; Partial Differential Equation; Stokes Equation; Supplementary Term.

Pp. 171-172