Free PDF Introduction to Solid State Physics, by Charles Kittel
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Introduction to Solid State Physics, by Charles Kittel
Free PDF Introduction to Solid State Physics, by Charles Kittel
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Since the publication of the first edition over 50 years ago, Introduction to Solid State Physics has been the standard solid state physics text for physics students. The author's goal from the beginning has been to write a book that is accessible to undergraduates and consistently teachable. The emphasis in the book has always been on physics rather than formal mathematics. With each new edition, the author has attempted to add important new developments in the field without sacrificing the book's accessibility and teachability.
* A very important chapter on nanophysics has been written by an active worker in the field. This field is the liveliest addition to solid state science during the past ten years
* The text uses the simplifications made possible by the wide availability of computer technology. Searches using keywords on a search engine (such as Google) easily generate many fresh and useful references
- Sales Rank: #94667 in Books
- Published on: 2004-11-11
- Ingredients: Example Ingredients
- Original language: English
- Number of items: 1
- Dimensions: 9.25" h x 1.21" w x 7.74" l, 2.65 pounds
- Binding: Hardcover
- 704 pages
About the Author
Charles Kittel did his undergraduate work in physics at M.I.T and at the Cavendish Laboratory of Cambridge University. He received his Ph.D. from the University of Wisconsin. He worked in the solid state group at Bell Laboratories, along with Bardeen and Shockley, leaving to start the theoretical solid state physics group at Berkeley in 1951. His research has been largely in magnetism and in semiconductors. In magnetism he developed the theories of ferromagnetic and antiferromagnetic resonance and the theory of single ferromagnetic domains, and extended the Bloch theory of magnons. In semiconductor physics he participated in the first cyclotron and plasma resonance experiments and extended the results to the theory of impurity states and to electron-hole drops.
He has been awarded three Guggenheim fellowships, the Oliver Buckley Prize for Solid State Physics, and, for contributions to teaching, the Oersted Medal of the American Association of Physics Teachers, He is a member of the National Academy of Science and of the American Academy of Arts and Sciences.
Most helpful customer reviews
57 of 59 people found the following review helpful.
Poorly written, lack of examples
By M. Weimer
Well, the negative reviews were correct. My solid state course has, unfortunately, decided to go with the Kittel 'standard' text, 8th edition. This book is difficult to learn from - largely because there is a severe shortage of quality examples and the material is not well explained throughout.
If you also are forced to use this text for a course, I would HIGHLY recommend purchasing supplement texts:
1. Solid State Theory, Walter A. Harrison (1979) - one of the best
2. Elementary Solid State Physics, M. Ali Omar (1999) - also good
3. Solid State Physics, Ashcroft/Mermin (1976/2003) - good
0 of 0 people found the following review helpful.
Five Stars
By Amelia B.
Best book for Solid State Physics ever!
16 of 17 people found the following review helpful.
Better look elsewhere
By Anthony
Before I embark on my review of this book, I want to mention that I am not the kind of student who relies on the professors instruction when learning a new subject. I always take careful notes, and then pour over the book with sharp attention to detail. Having said that, I do not believe that this book is one in which crucial details regarding the subject can be obtained and synthesized. I believe Kittel, despite his long and distinguished career in solid state physics, has been rendered incapable of teaching the subject due to his extensive knowledge of the subject. He frequently makes statements that, although no doubt make perfect sense to him, leave the student perplexed. Moreover, he frequently relies on techniques that do not serve to illuminate the underlying physical concepts. An example of this is his chapter on band structure. In it, Kittel discusses the reduced zone scheme for calculating band structures, with the result that the student is left with not an inkling of an idea what it means, what it serves to illustrate, or how one could even replicate the procedure for a different case. Despite the fact that this model is not useful to my knowledge in actual solid state physics, key physical ideas are left out that illustrate how bands are actually formed in solids. This type of analysis, in which the student is left with a foggy and/or incomplete understanding of the concepts, is disturbingly common. If you are looking for a book that illustrates in clear terms the ideas of solid state physics appropriate for an undergraduate course in the subject, I recommend the wonderful (albeit outdated) book on solid state physics by Omar Ali.
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