Structure of Materials: An Introduction to Crystallography, Diffraction and Symmetry
Author:Marc De Graef, Michael E. McHenry
Edition:1st Edition
The structural foundations of materials are explored through crystallography, symmetry, and diffraction techniques. It examines how atomic arrangements and bonding determine material properties, introducing concepts such as crystal lattices, reciprocal space, and X-ray diffraction while connecting these principles to the structures of metals, ceramics, and complex materials.

Chapters
- Chapter 1: Materials and Materials Properties→
- Chapter 2: The Periodic Table of the Elements and Interatomic Bonds→
- Chapter 3: What Is a Crystal Structure?→
- Chapter 4: Crystallographic Computations→
- Chapter 5: Lattice Planes→
- Chapter 6: Reciprocal Space→
- Chapter 7: Additional Crystallographic Computations→
- Chapter 8: Symmetry in Crystallography→
- Chapter 9: Point Groups→
- Chapter 10: Plane Groups and Space Groups→
- Chapter 11: X-Ray Diffraction: Geometry→
- Chapter 12: X-Ray Diffraction: Intensities→
- Chapter 13: Other Diffraction Techniques→
- Chapter 14: About Crystal Structures and Diffraction Patterns→
- Chapter 15: Non-Crystallographic Point Groups→
- Chapter 16: Periodic and Aperiodic Tilings→
- Chapter 17: Metallic Structures I: Simple, Derivative, and Superlattice Structures→
- Chapter 18: Metallic Structures II: Topologically Close-Packed Phases→
- Chapter 19: Metallic Structures III: Rare Earth–Transition Metal Systems→
- Chapter 20: Metallic Structures IV: Quasicrystals→
- Chapter 21: Metallic Structures V: Amorphous Metals→
- Chapter 22: Ceramic Structures I→
- Chapter 23: Ceramic Structures II: High Temperature Superconductors→
- Chapter 24: Ceramic Structures III: Silicates and Aluminates→
- Chapter 25: Molecular Solids→
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