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Numerical Methods in Astrophysics: An Introduction (Series in Astronomy and Astrophysics), by Peter Bodenheimer, Gregory P. Laughlin, Mich
Ebook Download Numerical Methods in Astrophysics: An Introduction (Series in Astronomy and Astrophysics), by Peter Bodenheimer, Gregory P. Laughlin, Mich
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Numerical Methods in Astrophysics: An Introduction outlines various fundamental numerical methods that can solve gravitational dynamics, hydrodynamics, and radiation transport equations. This resource indicates which methods are most suitable for particular problems, demonstrates what the accuracy requirements are in numerical simulations, and suggests ways to test for and reduce the inevitable negative effects.
After an introduction to the basic equations and derivations, the book focuses on practical applications of the numerical methods. It explores hydrodynamic problems in one dimension, N-body particle dynamics, smoothed particle hydrodynamics, and stellar structure and evolution. The authors also examine advanced techniques in grid-based hydrodynamics, evaluate the methods for calculating the gravitational forces in an astrophysical system, and discuss specific problems in grid-based methods for radiation transfer. The book incorporates brief user instructions and a CD-ROM of the numerical codes, allowing readers to experiment with the codes to suit their own needs.
With numerous examples and sample problems that cover a wide range of current research topics, this highly practical guide illustrates how to solve key astrophysics problems, providing a clear introduction for graduate and undergraduate students as well as researchers and professionals.
- Sales Rank: #2292454 in Books
- Published on: 2006-12-13
- Original language: English
- Number of items: 1
- Dimensions: 9.50" h x 6.50" w x 1.00" l, 1.37 pounds
- Binding: Hardcover
- 344 pages
Review
… a very thorough introduction … the book is ideal for a postgraduate student just beginning a Ph.D. in numerical astrophysics or for an undergraduate with a numerical project. However, it also offers more advanced researchers and professionals [with] a clear and useful reminder of the important issues involved in numerical algorithms. … The codes make an interesting addition to the book in that they allow the reader to actually try out … some of the numerical algorithms discussed in the book. …
―Matthew Bate, Geophysical and Astrophysical Fluid Dynamics
The sweep of the book is impressive given its size. Even with the space constraint, room has been found for excellent discussions of code stability, starting with very simple examples, and including nice comparative discussions for various techniques . . . This is a most welcome and carefully thought out book that should help in the search for deeper subterranean seams.
―James Collett, Physical Sciences Educational Review, 2007, Vol. 8, No. 1
Most helpful customer reviews
8 of 10 people found the following review helpful.
Extremely good introduction!
By Volker Bromm
This is an extremely well written introduction to a rapidly developing field. The authors cover a broad swath of topics, providing a clear understanding of the physical principles underlying numerical astrophysics. Such a focus on basic principles and physical understanding ensures that one does not lose sight of the forest for the trees. I recommend this book highly for graduate students in astrophysics, as well as active researchers in the field who want a quick overview before going into the details.
3 of 4 people found the following review helpful.
Excellent overview of Numerical Astrophysics
By M. Wood
The book Numerical Methods in Astrophysics is an excellent overview to the field. It does a good job of finding the middle ground between being concise enough to be readable, but containing sufficient information to be useful. Many of the chapters could be expanded to full length texts themselves if the authors included all the details and multiple examples of how to code things, but this is not the purpose of this book. Rather, the purpose is to introduce a graduate student or active researcher to the field, and to give a brief overview of the field as understood by the authors. Each chapter is a mostly self-contained review of the subject of that chapter, and includes sufficient references to more primary literature so the interested reader can learn more if he or she desires.
I don't know of any other book available that covers so many active areas in numerical astrophysics so well. It's not a perfect book, but I highly recommend it if you want to have one book in your personal library as a go-to reference for the field.
Matt Wood, Professor
Dept of Physics & Space Sciences
Florida Institute of Technology
Melbourne, FL 32901
1 of 1 people found the following review helpful.
Excellent reference book
By lee
This is an excellent introduction to Numerical Astrophysics. If you want to learn a particular topic (i.e. Smoothed Particle Hydrodynamics), the chapters are short, sweet and self contained. It will give you the necessary logic and basic physics used in the field, which will empower you to understand the literature.
Often when approaching a new field, the literature is impossible to learn from b/c papers aren't written for newbies. This is a great reference book that fills that void and gets you up to speed and prepares you to read the research. I just wish that it was a bit cheaper.
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