PDF Download The Basics of Crystallography and Diffraction (International Union of Crystallography Texts on Crystallography)
PDF Download The Basics of Crystallography and Diffraction (International Union of Crystallography Texts on Crystallography)
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The Basics of Crystallography and Diffraction (International Union of Crystallography Texts on Crystallography)
PDF Download The Basics of Crystallography and Diffraction (International Union of Crystallography Texts on Crystallography)
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Review
"[T]he clear and comprehensive nature of this text will ... appeal to entry level undergraduates and more experienced researches ..."--Microscopy and Analysis
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About the Author
Dr. Christopher Hammond, Senior Lecturer, Department of Materials, University of Leeds.
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Product details
Series: International Union of Crystallography Texts on Crystallography (Book 5)
Paperback: 352 pages
Publisher: Oxford University Press; 2 edition (June 21, 2001)
Language: English
ISBN-10: 0198505523
ISBN-13: 978-0198505525
Product Dimensions:
8.9 x 0.8 x 5.9 inches
Shipping Weight: 1.4 pounds
Average Customer Review:
4.2 out of 5 stars
12 customer reviews
Amazon Best Sellers Rank:
#2,157,451 in Books (See Top 100 in Books)
This book represents a fair introduction to the world of crystallography and crystal structure determination. The chapters on structure determination are the best, although some of the more advanced material, e.g. EBSD, is lightly sketched, and should perhaps have been omitted.The early chapters are somewhat more problematic: much is stated about crystal structures without justification, and this makes for a hard and often unilluminating read. Overall, though, the author has succeeding in writing a reasonable introductory text for a difficult field.
very good book. worth it. Hammond is a really good writer and explains things well. I will read this again and I am very happy I bought it
This book was intended as a reference in a graduate course in mechanical engineering. It is divided in 13 chapters. The first 6 chapters perfectly served the purpose by clarifying concepts that are not as well described in other sources. The other chapters, about diffraction, are very important as well and will be address later. The book content is structured in what may be regarded as the traditional black and white technical format devoid of any distracting inserts and unnecessary figures and colors. The book was a good deal for the price.
ok. Totally ok! No problem at all. Received the book in good shape as it was disclaimed. No delay and good vendor
"Absolute must" for solid state physicists, materials scientists, and others who need to understand the basics of crystallography.My solid state physics background focused primarily on cubic crystals (SC, BCC, FCC), briefly touched on hexagonal close packed, and virtually completely ignored everything else. Standard solid state physics textbooks (e.g. Kittel, and Ashcroft & Mermin) are inadequate for understanding the various crystalline structures. I wish I had Hammond's textbook to read "before" embarking on Kittel and/or Ashcroft-Mermin.THIS textbook gives you an excellent and thorough background. The first six chapters (through reciprocal space) are an absolute must as a starting point for all physical and materials scientists. There are several excellent chapters on diffraction, projections, and Fourier analysis. Of importance, which virtually all solid state physics texts ignore, is a chapter on tensors and their use in non-ideal, non-isotropic cases, which is reality.Most textbooks assume isotropic cases, and leave the reader in the dark about non-isotropic cases. 2nd, 3rd, and 4th rank tensors are covered, which is excellent. Another book that covers tensors is "Physical Properties of Crystals: Their Representation by Tensors and Matrices," by J. F. Nye (timeless classic). However Nye doesn't cover crystalline structures (assumes you have background), which is where Hammond's book should be read first, followed by Nye's book for non-ideal, non-isotropic cases where tensors are vital.*Hammond includes answers to many exercises in the back, which makes this book ideal for self-study.*
I used this text for a course on material structures in which we covered most of this book for about half the semester and then moved onto topics such as polymer structure, liquid crystals, and basic quantum mechanics behind orbitals and the formation of atomic bonds. I must say the most painful parts of the course were those covered in this book. We used another text created by the professor in lieu of chapter one, and the difference was remarkable. Fairly easy topics are shrouded in heavy text and lack of clear explanations. I had alternate sources for each and every chapter in the book because the book never provided enough information to truly grasp the material.Most sections go as follows: historical and other non-important details mixed with some useful information, then an introduction to a new topic and why it's useful, a short but inadequate explanation of the topic, skips the section where a student would learn to arrive at a conclusion, states the conclusion without a real explanation. This approach works fine for some chapters and horribly for others (the Ewald sphere chapter is a nightmare).I'm sure this seems great to someone who already knows the material (it proved awesome for studying for the final since my mind was filling in the blanks in the text), but it really is lacking as a teaching text. It's not set up like a textbook (no examples and few exercises), and should not be used as one.
For an undergrad reader, Hammond develops the theory and explains the experiments you can do in crytallography. The theory of scattering from a single crystal explains the diffraction patterns. The latter are what you observe, and the text shows how you can work back from these to deduce what the underlying crystal structure might be.There are variations on this approach. Especially the powder method, where you do not have a single crystal, but a powder of microcrystals. Which can be visualised as spinning the Bravais lattice around its origin, to give the diffraction patterns.More recent observations like quasicrystals are also covered.A good introduction to crystallography.
Hammond's treatment of 2-dimensional patterns, lattices and symmetry is absolutely god-like. A solid foundation in the art of constructing lattices and identifying symmetry elements in a single plane is absolutely essential when one starts learning the more practically relevant 3d concepts. This is the element that is lacking in all the other textbooks I've read on the subject of crystallography.Before reading Hammond, I didn't even understand the difference between "bravais lattices" and "crystal systems" ... thats how poorly other textbooks have approached this subject. Like I said above, a thorough introduction in 2d is what allowed me to understand 3d.
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