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Adaptive Moving Mesh Methods (Hardcover, 2011 ed.): Weizhang Huang, Robert D. Russell Adaptive Moving Mesh Methods (Hardcover, 2011 ed.)
Weizhang Huang, Robert D. Russell
R1,596 Discovery Miles 15 960 Ships in 10 - 15 working days

This book is about adaptive mesh generation and moving mesh methods for the numerical solution of time-dependent partial differential equations. It presents a general framework and theory for adaptive mesh generation and gives a comprehensive treatment of moving mesh methods and their basic components, along with their application for a number of nontrivial physical problems. Many explicit examples with computed figures illustrate the various methods and the effects of parameter choices for those methods. Graduate students, researchers and practitioners working in this area will benefit from this book.

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Mathematical Foundations of Scientific Visualization, Computer Graphics, and Massive Data Exploration (Hardcover, 2009 ed.):... Mathematical Foundations of Scientific Visualization, Computer Graphics, and Massive Data Exploration (Hardcover, 2009 ed.)
Torsten Moeller, Bernd Hamann, Robert D. Russell
R2,937 Discovery Miles 29 370 Ships in 10 - 15 working days

The goal of visualization is the accurate, interactive, and intuitive presentation of data. Complex numerical simulations, high-resolution imaging devices and incre- ingly common environment-embedded sensors are the primary generators of m- sive data sets. Being able to derive scienti?c insight from data increasingly depends on having mathematical and perceptual models to provide the necessary foundation for effective data analysis and comprehension. The peer-reviewed state-of-the-art research papers included in this book focus on continuous data models, such as is common in medical imaging or computational modeling. From the viewpoint of a visualization scientist, we typically collaborate with an application scientist or engineer who needs to visually explore or study an object which is given by a set of sample points, which originally may or may not have been connected by a mesh. At some point, one generally employs low-order piecewise polynomial approximationsof an object, using one or several dependent functions. In order to have an understanding of a higher-dimensional geometrical "object" or function, ef?cient algorithms supporting real-time analysis and manipulation (- tation, zooming) are needed. Often, the data represents 3D or even time-varying 3D phenomena (such as medical data), and the access to different layers (slices) and structures (the underlying topology) comprising such data is needed.

Adaptive Moving Mesh Methods (Paperback, 2011 ed.): Weizhang Huang, Robert D. Russell Adaptive Moving Mesh Methods (Paperback, 2011 ed.)
Weizhang Huang, Robert D. Russell
R1,567 Discovery Miles 15 670 Ships in 10 - 15 working days

This book is about adaptive mesh generation and moving mesh methods for the numerical solution of time-dependent partial differential equations. It presents a general framework and theory for adaptive mesh generation and gives a comprehensive treatment of moving mesh methods and their basic components, along with their application for a number of nontrivial physical problems. Many explicit examples with computed figures illustrate the various methods and the effects of parameter choices for those methods. Graduate students, researchers and practitioners working in this area will benefit from this book.

"

Mathematical Foundations of Scientific Visualization, Computer Graphics, and Massive Data Exploration (Paperback, Softcover... Mathematical Foundations of Scientific Visualization, Computer Graphics, and Massive Data Exploration (Paperback, Softcover reprint of hardcover 1st ed. 2009)
Torsten Moeller, Bernd Hamann, Robert D. Russell
R2,892 Discovery Miles 28 920 Ships in 10 - 15 working days

The goal of visualization is the accurate, interactive, and intuitive presentation of data. Complex numerical simulations, high-resolution imaging devices and incre- ingly common environment-embedded sensors are the primary generators of m- sive data sets. Being able to derive scienti?c insight from data increasingly depends on having mathematical and perceptual models to provide the necessary foundation for effective data analysis and comprehension. The peer-reviewed state-of-the-art research papers included in this book focus on continuous data models, such as is common in medical imaging or computational modeling. From the viewpoint of a visualization scientist, we typically collaborate with an application scientist or engineer who needs to visually explore or study an object which is given by a set of sample points, which originally may or may not have been connected by a mesh. At some point, one generally employs low-order piecewise polynomial approximationsof an object, using one or several dependent functions. In order to have an understanding of a higher-dimensional geometrical "object" or function, ef?cient algorithms supporting real-time analysis and manipulation (- tation, zooming) are needed. Often, the data represents 3D or even time-varying 3D phenomena (such as medical data), and the access to different layers (slices) and structures (the underlying topology) comprising such data is needed.

Numerical Solution of Boundary Value Problems for Ordinary Differential Equations (Paperback): Uri M. Ascher, Robert M.M.... Numerical Solution of Boundary Value Problems for Ordinary Differential Equations (Paperback)
Uri M. Ascher, Robert M.M. Mattheij, Robert D. Russell; Series edited by Robert O'Malley
R2,357 R2,231 Discovery Miles 22 310 Save R126 (5%) Ships in 12 - 19 working days

This book is the most comprehensive, up-to-date account of the popular numerical methods for solving boundary value problems in ordinary differential equations. It aims at a thorough understanding of the field by giving an in-depth analysis of the numerical methods by using decoupling principles. Numerous exercises and real-world examples are used throughout to demonstrate the methods and the theory. Although first published in 1988, this republication remains the most comprehensive theoretical coverage of the subject matter, not available elsewhere in one volume. Many problems, arising in a wide variety of application areas, give rise to mathematical models which form boundary value problems for ordinary differential equations. These problems rarely have a closed form solution, and computer simulation is typically used to obtain their approximate solution. This book discusses methods to carry out such computer simulations in a robust, efficient, and reliable manner.

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