The new edition of this highly readable, popular textbook covers the fundamentals of crystallography, symmetry and diffraction and applies these concepts to a large range of materials. Now with new end-of-chapter exercises, more illustrations, more streamlined coverage of crystallography and additional coverage of magnetic point group symmetry.
The new edition of this highly readable, popular textbook covers the fundamentals of crystallography, symmetry and diffraction and applies these concepts to a large range of materials. Now with new end-of-chapter exercises, more illustrations, more streamlined coverage of crystallography and additional coverage of magnetic point group symmetry.Hinweis: Dieser Artikel kann nur an eine deutsche Lieferadresse ausgeliefert werden.
Marc De Graef is a Professor in the Department of Materials Science and Engineering at Carnegie Mellon University in Pittsburgh, USA, where he is also Co-director of the J. Earle and Mary Roberts Materials Characterization Laboratory. He received his Ph.D. in Physics in 1989 from the Catholic University of Leuven. An accomplished writer in the field, he is on the Board of Directors for the Minerals, Metals and Materials Society (TMS).
Inhaltsangabe
1. Materials and materials properties 2. The periodic table and bonds 3. What is a crystal structure? 4. Crystallographic computations 5. Lattice planes 6. Reciprocal space 7. Additional crystallographic computations 8. Symmetry in crystallography 9. Point groups 10. Plane groups and space groups 11. X-ray diffraction: geometry 12. X-ray diffraction: intensities 13. Other diffraction techniques 14. About crystal structures and diffraction patterns 15. Non-crystallographic point groups 16. Periodic and aperiodic things 17. Metallic structures I 18. Metallic structures II 19. Metallic structures III: quasicrystals 20. Metallic structures IV: amorphous metals 21. Ceramic structures I 22. Ceramic structures II: high temperature superconductors 23. Ceramic structures III: terrestrial and extraterrestrial minerals 24. Molecular solids and biological materials.
1. Materials and materials properties 2. The periodic table and bonds 3. What is a crystal structure? 4. Crystallographic computations 5. Lattice planes 6. Reciprocal space 7. Additional crystallographic computations 8. Symmetry in crystallography 9. Point groups 10. Plane groups and space groups 11. X-ray diffraction: geometry 12. X-ray diffraction: intensities 13. Other diffraction techniques 14. About crystal structures and diffraction patterns 15. Non-crystallographic point groups 16. Periodic and aperiodic things 17. Metallic structures I 18. Metallic structures II 19. Metallic structures III: quasicrystals 20. Metallic structures IV: amorphous metals 21. Ceramic structures I 22. Ceramic structures II: high temperature superconductors 23. Ceramic structures III: terrestrial and extraterrestrial minerals 24. Molecular solids and biological materials.
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