## Elements of X-ray Diffraction1 Properties of X-rays 2 Geometry of Crystals 3 Diffraction I: Directions of Diffracted Beams 4 Diffraction II: Intensities of Diffracted Beams 5 Diffraction III: Non-Ideal Samples 6 Laure Photographs 7 Powder Photographs 8 Diffractometer and Spectrometer 9 Orientation and Quality of Single Crystals 10 Structure of Polycrystalline Aggregates 11 Determination of Crystal Structure 12 Precise Parameter Measurements 13 Phase-Diagram Determination 14 Order-Disorder Transformation 15 Chemical Analysis of X-ray Diffraction 16 Chemical Analysis by X-ray Spectrometry 17 Measurements of Residual Stress 18 Polymers 19 Small Angle Scatters 20 Transmission Electron Microscope |

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Page 44

Bravais Lattice System Axial lengths and angles lattice symbol - Three equal

or - U , = p = y = Face-centered F Three

...

Bravais Lattice System Axial lengths and angles lattice symbol - Three equal

**axes**at right angles Simple P - Cubic a = b = c, 0 = B = y = 90° Body-centered I -or - U , = p = y = Face-centered F Three

**axes**at right angles, two equal Simple P...

Page 47

Bernard Dennis Cullity, Stuart R. Stock. and angles. In fact, these are

interdependent. For example, the existence of 4-fold rotation

faces of a cubic cell requires that the cell edges be equal in length and at 90° to

one another.

Bernard Dennis Cullity, Stuart R. Stock. and angles. In fact, these are

interdependent. For example, the existence of 4-fold rotation

**axes**normal to thefaces of a cubic cell requires that the cell edges be equal in length and at 90° to

one another.

Page 622

The primitive rhombohedral cell has

of points, however, may be referred to a hexagonal cell having

and c(H). The hexago onal cell is no longer primitive, since it contains three ...

The primitive rhombohedral cell has

**axes**a,(R), a,(R), and a,(R). The same latticeof points, however, may be referred to a hexagonal cell having

**axes**a,(H), a,(H),and c(H). The hexago onal cell is no longer primitive, since it contains three ...

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User Review - ron_benson - LibraryThingExcellent reference book. Needs some updating in terms of advances in detector technology. Read full review

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### Common terms and phrases

alloy AuCu austenite axes axis back-reflection Bragg angle Bragg's law Bravais lattice calculated camera composition constant copper crystallite cubic curve decreases density detector determined diffracted beam diffracted intensity diffraction lines diffraction pattern diffractometer direction effect electrons energy equation error Ewald sphere example extrapolation face-centered face-centered cubic factor film fraction given grain hexagonal Hull/Debye–Scherrer incident beam indices integrated intensity lattice parameter lattice points Laue pattern Laue spots layer martensite measured metal normal observed obtained orthorhombic parallel peak percent phase photographic pinhole plane plot pole figure position powder pattern preferred orientation produce projection pulses radiation rays reciprocal lattice reciprocal space reflection relative rotation sample scattering shown in Fig shows slit solid solution space specimen stress substance superlattice surface symmetry temperature tetragonal texture tion transmission unit cell vector voltage wave wavelength x-ray diffraction x-ray tube