Artículos relacionados a Numerical Time-Dependent Partial Differential Equations...

Numerical Time-Dependent Partial Differential Equations for Scientists and Engineers - Tapa blanda

 
9780323164122: Numerical Time-Dependent Partial Differential Equations for Scientists and Engineers

Sinopsis

It is the first text that in addition to standard convergence theory treats other necessary ingredients for successful numerical simulations of physical systems encountered by every practitioner. The book is aimed at users with interests ranging from application modeling to numerical analysis and scientific software development. It is strongly influenced by the authors research in in space physics, electrical and optical engineering, applied mathematics, numerical analysis and professional software development. The material is based on a year-long graduate course taught at the University of Arizona since 1989. The book covers the first two-semesters of a three semester series. The second semester is based on a semester-long project, while the third semester requirement consists of a particular methods course in specific disciplines like computational fluid dynamics, finite element method in mechanical engineering, computational physics, biology, chemistry, photonics, etc. The first three chapters focus on basic properties of partial differential equations, including analysis of the dispersion relation, symmetries, particular solutions and instabilities of the PDEs; methods of discretization and convergence theory for initial value problems. The goal is to progress from observations of simple numerical artifacts like diffusion, damping, dispersion, and anisotropies to their analysis and management technique, as it is not always possible to completely eliminate them. In the second part of the book we cover topics for which there are only sporadic theoretical results, while they are an integral part and often the most important part for successful numerical simulation. We adopt a more heuristic and practical approach using numerical methods of investigation and validation. The aim is teach students subtle key issues in order to separate physics from numerics. The following topics are addressed: Implementation of tra

"Sinopsis" puede pertenecer a otra edición de este libro.

Críticas

"

"Each chapter of the book is complemented with samples of projects intended to guide the user. The book offers a valuable insight into the numerical methods for PDEs. It is highly recommended to instructors, undergraduate and postgraduate students as well as researchers in science and engineering."--Zentralblatt MATH"

Reseña del editor

It is the first text that in addition to standard convergence theory treats other necessary ingredients for successful numerical simulations of physical systems encountered by every practitioner. The book is aimed at users with interests ranging from application modeling to numerical analysis and scientific software development. It is strongly influenced by the authors research in in space physics, electrical and optical engineering, applied mathematics, numerical analysis and professional software development. The material is based on a year-long graduate course taught at the University of Arizona since 1989. The book covers the first two-semesters of a three semester series. The second semester is based on a semester-long project, while the third semester requirement consists of a particular methods course in specific disciplines like computational fluid dynamics, finite element method in mechanical engineering, computational physics, biology, chemistry, photonics, etc. The first three chapters focus on basic properties of partial differential equations, including analysis of the dispersion relation, symmetries, particular solutions and instabilities of the PDEs; methods of discretization and convergence theory for initial value problems. The goal is to progress from observations of simple numerical artifacts like diffusion, damping, dispersion, and anisotropies to their analysis and management technique, as it is not always possible to completely eliminate them. In the second part of the book we cover topics for which there are only sporadic theoretical results, while they are an integral part and often the most important part for successful numerical simulation. We adopt a more heuristic and practical approach using numerical methods of investigation and validation. The aim is teach students subtle key issues in order to separate physics from numerics. The following topics are addressed: Implementation of tra

"Sobre este título" puede pertenecer a otra edición de este libro.

Comprar nuevo

Ver este artículo

EUR 11,53 gastos de envío desde Reino Unido a España

Destinos, gastos y plazos de envío

Otras ediciones populares con el mismo título

9780121339814: Numerical Time-Dependent Partial Differential Equations for Scientists and Engineers: Volume 213 (Mathematics in Science & Engineering, Volume 213)

Edición Destacada

ISBN 10:  0121339815 ISBN 13:  9780121339814
Editorial: Academic Press, 2010
Tapa dura

Resultados de la búsqueda para Numerical Time-Dependent Partial Differential Equations...

Imagen de archivo

Moysey Brio
Publicado por Academic Press, 2016
ISBN 10: 0323164129 ISBN 13: 9780323164122
Nuevo Paperback

Librería: Revaluation Books, Exeter, Reino Unido

Calificación del vendedor: 5 de 5 estrellas Valoración 5 estrellas, Más información sobre las valoraciones de los vendedores

Paperback. Condición: Brand New. 1st edition. 312 pages. 9.00x6.01x0.69 inches. In Stock. Nº de ref. del artículo: zk0323164129

Contactar al vendedor

Comprar nuevo

EUR 200,22
Convertir moneda
Gastos de envío: EUR 11,53
De Reino Unido a España
Destinos, gastos y plazos de envío

Cantidad disponible: 1 disponibles

Añadir al carrito