Preface |
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ix | |
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1 | (28) |
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1 | (1) |
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Periodic trends in atomic properties |
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2 | (2) |
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Bonding generalizations based on periodic trends in the electronegativity |
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4 | (8) |
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Generalizations about crystal structures based on periodicity |
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12 | (9) |
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The limitions of simple models |
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21 | (4) |
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25 | (2) |
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References and sources for further study |
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27 | (2) |
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Basic Structural Concepts |
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29 | (59) |
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29 | (1) |
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29 | (12) |
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41 | (3) |
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The crystal structure. A Bravais lattice plus a basis |
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44 | (2) |
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Specifying locations, planes and directions in a crystal |
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46 | (4) |
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50 | (6) |
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Quantitative calculations involving the geometry of the lattice |
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56 | (3) |
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Visual representations of crystal structures |
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59 | (10) |
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69 | (12) |
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81 | (3) |
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References and sources for further study |
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84 | (4) |
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Symmetry in Crystal Structures |
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88 | (47) |
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88 | (1) |
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88 | (4) |
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The 32 distinct crystallographic point groups |
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92 | (13) |
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105 | (16) |
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The interpretation of conventional crystal structure data |
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121 | (7) |
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128 | (5) |
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References and sources for further study |
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133 | (2) |
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135 | (70) |
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135 | (1) |
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Close packed arrangements |
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135 | (5) |
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140 | (3) |
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Naming crystal structures |
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143 | (2) |
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Classifying crystal structures |
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145 | (2) |
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Important prototype structures |
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147 | (30) |
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177 | (2) |
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179 | (3) |
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Superlattice structures and complex stacking sequences |
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182 | (6) |
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Extensions of the close packing description to more complex structures |
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188 | (2) |
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190 | (1) |
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Noncrystalline solid structures |
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191 | (6) |
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197 | (5) |
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References and sources for further study |
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202 | (3) |
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205 | (58) |
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205 | (1) |
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Bragg's formulation of the diffraction condition |
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205 | (1) |
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The scattering of X-rays from a periodic electron density |
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206 | (12) |
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The relationship between diffracted peak intensities and atomic positions |
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218 | (14) |
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Factors affecting the intensity of diffracted peaks |
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232 | (10) |
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Selected diffraction techniques and their uses |
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242 | (9) |
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251 | (8) |
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259 | (2) |
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References and sources for further study |
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261 | (2) |
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263 | (23) |
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263 | (4) |
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A physical model for the van der Waals bond |
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267 | (11) |
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Dipolar and hydrogen bonding |
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278 | (2) |
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The use of pair potentials in empirical models |
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280 | (2) |
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282 | (2) |
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References and sources for further study |
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284 | (2) |
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286 | (40) |
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286 | (3) |
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A physical model for the ionic bond |
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289 | (13) |
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Other factors that influence cohesion in ionic systems |
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302 | (6) |
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Predicting the structures of ionic compounds |
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308 | (5) |
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313 | (4) |
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The correlation of physical models with the phenomenological trends |
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317 | (1) |
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Pair potential calculations of defect properties in ionic compounds |
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318 | (1) |
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319 | (4) |
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References and sources for further study |
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323 | (3) |
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326 | (37) |
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326 | (2) |
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A physical model for the metallic bond: free electron theory |
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328 | (20) |
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Failures of the free electron theory |
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348 | (1) |
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Electrons in a periodic lattice |
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348 | (9) |
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Correlation of the physical models with the phenomenological trends |
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357 | (1) |
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Empirical potentials for calculating the properties of defects in metals |
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357 | (1) |
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358 | (3) |
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References and sources for further study |
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361 | (2) |
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363 | (61) |
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363 | (4) |
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A physical model for the covalent bond in a molecule |
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367 | (9) |
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A physical model for the covalent bond in a homopolar crystal |
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376 | (9) |
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A physical model for the covalent bond in a polar crystal |
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385 | (16) |
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Bands deriving from d-electrons |
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401 | (5) |
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The distinction between metals and non-metals |
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406 | (1) |
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The distinction between covalent and ionic solids |
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407 | (3) |
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The cohesive energy of a covalently bonded solid |
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410 | (2) |
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Overview of the LCAO model and correlation with phenomenological trends |
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412 | (2) |
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414 | (1) |
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415 | (5) |
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References and sources for further study |
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420 | (4) |
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Models for Predicting Phase Stability and Structure |
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424 | (53) |
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424 | (1) |
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Models for predicting phase stability |
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425 | (15) |
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Factors that determine structure in polar-covalent crystals |
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440 | (21) |
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Structure stability diagrams |
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461 | (12) |
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473 | (1) |
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References and sources for further study |
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474 | (3) |
Appendix 1A: Crystal and univalent radii |
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477 | (3) |
Appendix 2A: Computing distances using the metric tensor |
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480 | (2) |
Appendix 2B: Computing unit cell volumes |
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482 | (1) |
Appendix 2C: Computing interplanar spacings |
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483 | (2) |
Appendix 3A: The 230 space groups |
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485 | (3) |
Appendix 3B: Selected crystal structure data |
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488 | (24) |
Appendix 5A: Introduction to Fourier series |
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512 | (3) |
Appendix 5B: Coefficients for atomic scattering factors |
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515 | (3) |
Appendix 7A: Evaluation of the Madelung constant |
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518 | (3) |
Appendix 7B: Ionic radii for halides and chalcogenides |
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521 | (5) |
Appendix 7C: Pauling electronegativities |
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526 | (1) |
Appendix 9A: Cohesive energies and band gap data |
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527 | (2) |
Appendix 9B: Atomic orbitals and the electronic structure of the atom |
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529 | (4) |
Index |
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533 | |