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Crystals, Defects and Microstructures: Modeling Across Scales, by Rob Phillips
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A central tenet of materials analysis is the structure-property paradigm, which proposes a direct connection between the geometric structures within a material and its properties. The increasing power of high-speed computation has had a major impact on theoretical materials science and has permitted the systematic examination of this connection between structure and properties. In this textbook, Rob Phillips examines various methods for studying crystals, defects, and microstructures, techniques that have made such computations possible. He also presents recent efforts to treat problems involving either multiple spatial or temporal scales simultaneously. Detailed case studies illustrate general principles as well as their applications to current research problems.
- Sales Rank: #2885968 in Books
- Brand: Brand: Cambridge University Press
- Published on: 2001-03-19
- Original language: English
- Number of items: 1
- Dimensions: 9.72" h x 1.42" w x 6.85" l, 3.52 pounds
- Binding: Paperback
- 720 pages
- Used Book in Good Condition
Review
"This discussion is an exercise in consciousness-raising, which many readers will find rather thought-provoking... I would recommend it to anyone wishing to get both a broad overview of the intersection of theoretical condensed matter physics with modern materials science, and some good pointers toward future research directions...a nicely-written, self-contained course on material physics." Physics Today
"...the writing style makes reading most enjoyable. The interesting aspect of the style is the author's readiness to stand back from the details to communicate to the reader an important message." Optics & Photonics News
Most helpful customer reviews
10 of 11 people found the following review helpful.
An outstanding task
By Pichierri Fabio
The publication of this book is very timely since it appears right before the happening of the first "International Conference on Multiscale Materials Model(l)ing", which has been held in June 2002 at the Queen Mary University of London. But it is the subtitle (Modeling Across Scales), not the title, that conveys you what the book's content is about. In other words, the author engages himself in the (difficult) task of showing you how real materials can be modeled (or thought of) by mean of a multiscale approach bridging the atomistic to the macroscopic structure & behavior. As you can well imagine, this is an outstanding task!
The book is organized in four parts and it contains 13 chapters:
Part I: Thinking about the Material World
1. Idealizing Material Response
2. Continuum Mechanics Revisited
3. Quantum and Statistical Mechanics Revisited
Part II: Energetics of Crystalline Solids
4. Energetic Description of Crystalline Solids
5. Thermal and Elastic Properties of Crystals
6. Structural Energies and Phase Diagrams
Part III: Geometric Structures in Solids: Defects and Microstructures
7. Point Defects in Solids
8. Line Defects in Solids
9. Wall Defects in Solids
10. Microstructure and its Evolution
Part IV: Facing the Multiscale Challenge in Real Material Behavior
11. Points, Lines and Walls: Defect Interactions and Material Response
12. Bridging Scales: Effective Theory Construction
13. Universality and Specificity in Materials
Considering the difficulty of the subject and how it has been presented throughout the book, the clarity of language and the good quality of both graphs and figures, this book deserves five stars.
7 of 8 people found the following review helpful.
Excellent work
By Brennan Peterson
This is the absolutely best book I have seen in the general materials science field--the writing is clear, the explanations excellent, and detail sufficient. The books title is correct, but I think a bit unfair--the book really shines as a general, graduate level introduction to all of materials science, if you take the quite reasonable view that the ability to better model crystals, defects, and microstructures forms the core of the field.
As the author staes in the introduction, this books teaches you habits of the mind and modes of thought that help link up the disparate fields that make up materials, mechanics, and condensed matter physics.
There is no book in my (admittedly limited) library I got more out of during the course of my studies.
Final note: the book has excellent references, and is typset beautifully.
0 of 0 people found the following review helpful.
Beautiful!
By MSE fanatic
When I begun reading this I was blown away with the author's ability to provide a textbook which covers solid state materials science principles in a clear, informative, and complete approach. The author leaves nothing untouched and provides nearly entire derivations with an intuitive pedagogy, however as a consequence the reader will have to be extremely dedicated. In all honesty, if you read this from front to back you will have covered ~50% of most graduate materials science and engineering curricula. There are no example problems but the author does include case studies and problems at the end of each chapter, some difficult and others very challenging. The author also provides detailed descriptions and comments with regards to references and further readings. I was amazed when I came to know that the author has "switched" his research focus to biophysics; something which is very impressive and a rarity to accomplish in academics. This is a must buy regardless of the price.
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