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Modern Fluid Dynamics for Physics and Astrophysics (Softcover Reprint of the Original 1st 2016)

Modern Fluid Dynamics for Physics and Astrophysics

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"Modern Fluid Dynamics for Physics and Astrophysics" by Oded Regev, Orkan M. Umurhan, Philip A. Yecko is a mathematics book and learning resource focused on General Astronomy. Best for teachers, students, and readers looking for stronger mathematical understanding.

This book grew out of the need to provide students with a solid introduction to modern fluid dynamics. It offers a broad grounding in the underlying principles and techniques used, with some emphasis on applications in astrophysics and planetary science. The book comprehensively covers recent developments, methods and techniques, including, for example, new ideas on transitions to turbulence (via transiently growing stable linear modes), new approaches to turbulence (which remains the enigma of fluid dynamics), and the use of asymptotic approximation methods, which can give analytical or semi-analytical results and complement fully numerical treatments. The authors also briefly discuss some important considerations to be taken into account when developing a numerical code for computer simulation of fluid flows. Although the text is populated throughout with examples and problems from the field of astrophysics and planetary science, the text is eminently suitable as a general introduction to fluid dynamics. It is assumed that the readers are mathematically equipped with a reasonable knowledge in analysis, including basics of ordinary and partial differential equations and a good command of vector calculus and linear algebra. Each chapter concludes with bibliographical notes in which the authors briefly discuss the chapter's essential literature and give recommendations for further, deeper reading. Included in each chapter are a number of problems, some of them relevant to astrophysics and planetary science. The book is written for advanced undergraduate and graduate students, but will also prove a valuable source of reference for established researchers.

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Best For: Students and researchers in physics and astrophysics seeking foundational knowledge in fluid dynamics.
Focus: Fundamental principles and modern techniques of fluid dynamics with applications in astrophysics and planetary science.
Covers: Recent developments in fluid dynamics, including transitions to turbulence and computational methods relevant to space science.
Why It Matters: Provides a comprehensive introduction to fluid dynamics tailored to physical and astrophysical contexts, supporting advanced study and research in these fields.

"Modern Fluid Dynamics for Physics and Astrophysics" by Oded Regev, Orkan M. Umurhan, Philip A. Yecko is a mathematics book and learning resource focused on General Astronomy. Best for teachers, students, and readers looking for stronger mathematical understanding.

Topic: General Astronomy

Author: Oded Regev, Orkan M. Umurhan, Philip A. Yecko

Who this is for:

  • Teachers and classroom instructors
  • Students building subject mastery
  • Readers looking for practical learning support

Why this book matters: It stands out as a practical math resource that helps explain concepts, strengthen problem-solving, and support classroom or independent learning.

This book grew out of the need to provide students with a solid introduction to modern fluid dynamics. It offers a broad grounding in the underlying principles and techniques used, with some emphasis on applications in astrophysics and planetary science. The book comprehensively covers recent developments, methods and techniques, including, for example, new ideas on transitions to turbulence (via transiently growing stable linear modes), new approaches to turbulence (which remains the enigma of fluid dynamics), and the use of asymptotic approximation methods, which can give analytical or semi-analytical results and complement fully numerical treatments. The authors also briefly discuss some important considerations to be taken into account when developing a numerical code for computer simulation of fluid flows. Although the text is populated throughout with examples and problems from the field of astrophysics and planetary science, the text is eminently suitable as a general introduction to fluid dynamics. It is assumed that the readers are mathematically equipped with a reasonable knowledge in analysis, including basics of ordinary and partial differential equations and a good command of vector calculus and linear algebra. Each chapter concludes with bibliographical notes in which the authors briefly discuss the chapter's essential literature and give recommendations for further, deeper reading. Included in each chapter are a number of problems, some of them relevant to astrophysics and planetary science. The book is written for advanced undergraduate and graduate students, but will also prove a valuable source of reference for established researchers.

AuthorOded Regev, Orkan M. Umurhan, Philip A. Yecko
PublisherSpringer
Published2018-05-26
ISBN-139781493979929
BindingPaperback
Pages680
LanguageEnglish
SubjectsScience
TopicGeneral Astronomy
SeriesGraduate Texts in Physics

Format: Paperback

Length: 680 pages

Language: English

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