
Applied Computational Physics is a graduate-level text stressing three essential elements: advanced programming techniques, numerical analysis and physics. The goal of the text is to provide students with essential computational skills that they will need in their careers and to increase the confidence with which they write computer programs designed for their problem domain. Joseph F. Boudreau and Eric S. Swanson; with contributions from Riccardo Maria Bianchi. This edition previously issued in print: 2017. Includes bibliographical references at the end of each chapters and index.
This text investigates the integration of advanced programming, numerical analysis, and physical modeling to solve complex problems in the field of computational physics. Authors Joseph F. Boudreau and Eric S. Swanson, with contributions from Riccardo Maria Bianchi, provide a framework designed to bridge the gap between theoretical physics and practical software implementation. The book aims to equip graduate students with the technical proficiency required to construct robust computer programs tailored to specific physical domains.
What You Will Find
Scope Limits
Experts and educators recognize this work as a rigorous resource for graduate students seeking to apply computational methods to physical research. Readers frequently note the technical density of the prose, which requires a solid foundation in both physics and computer science to fully utilize the provided methodologies.
Page Count:
0
Publication Date:
1900-01-01
Publisher:
Oxford University Press,
ISBN-10:
0191858595
ISBN-13:
9780191858598
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