Computational Multiscale Modeling of Fluids and Solids : Theory and Applications in Computational Science
Fourth Edition 2026
Book Details
Format
Hardback or Cased Book
Book Series
Graduate Texts in Physics
ISBN-10
3032255392
ISBN-13
9783032255396
Edition
Fourth Edition 2026
Publisher
Springer Nature Switzerland AG
Imprint
Springer Nature Switzerland AG
Country of Manufacture
GB
Country of Publication
GB
Publication Date
Sep 23rd, 2026
Print length
712 Pages
Product Classification:
Numerical analysisCondensed matter physics (liquid state & solid state physics)Condensed matter physics (liquid state and solid state physics)Mathematical / Computational / Theoretical physicsMathematical physicsGeology & the lithosphereGeology, geomorphology and the lithosphereMaths for engineersMaterials science
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This book covers the principles and applications of computational multiscale modeling of fluids and solids.
This book covers the principles and applications of computational multiscale modeling of fluids and solids. It explores the physics across various length and timescales, introducing fundamental concepts in fluid and solid mechanics, and the objectives of experimental and theoretical physics. With detailed discussions on numerical methods, statistical physics, thermodynamics, and the theory of elasticity, this book integrates theoretical background with practical computational examples. Designed for advanced students and professionals, the book includes computational exercises and projects, supported by source code available within the text and for download. This edition contains several significant updates and expansions. It now features standalone chapters on molecular dynamics simulations and on the Monte Carlo method, both enriched with new applications and examples. The treatment of hypervelocity impact and shock-related applications has also been expanded and is integrated into the broader multiscale discussion of the book, including particle-based space-debris impact scenarios. In addition, a thorough introduction to quantum mechanics is presented, including exercises and source code examples such as the numerical solution of the Schrödinger equation. The computer science material has been expanded into a full chapter, offering a comprehensive introduction to theoretical computer science. Furthermore, the mathematical background has been revised and enlarged to include differential forms, enhancing the understanding of space in physics. Updated references, new exercises, case studies, and repository-supported C/C++ code examples make this book even more valuable for academic use.
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