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Relativistic Theory of Atoms and Molecules: A Bibliography 19161985 [Paperback]

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  • Category: Books (Reference)
  • Author:  Pyykk?, Pekka
  • Author:  Pyykk?, Pekka
  • ISBN-10:  3540171673
  • ISBN-10:  3540171673
  • ISBN-13:  9783540171676
  • ISBN-13:  9783540171676
  • Publisher:  Springer
  • Publisher:  Springer
  • Binding:  Paperback
  • Binding:  Paperback
  • Pub Date:  01-Mar-1986
  • Pub Date:  01-Mar-1986
  • SKU:  3540171673-11-SPRI
  • SKU:  3540171673-11-SPRI
  • Pages:  389
  • Pages:  389
  • Item ID: 100872933
  • List Price: $109.99
  • Seller: ShopSpell
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  • Delivery by: Sep 30 to Oct 02
  • Notes: Brand New Book. Order Now.
1. Introduction.- Table 1.1. Monographs and other general references.- 2. One-particle problems.- 2.1. Special relativity and the old quantum theory.- 2.2. On the Klein-Gordon equation.- 2.3. The Dirac equation.- 3. Quantum electrodynamical effects.- Table 3.1. Higher-order corrections: methods.- Table 3.2. Higher-order corrections: hyperfine interactions.- Table 3.3. Higher-order corrections: energy levels.- Table 3.4. Higher-order corrections: interatomic and -molecular interactions.- 4. Multielectron atoms: methods.- Table 4.1. General methods and basic theory for multielectron atoms.- Table 4.2. Published programs for atoms.- Table 4.3. Numerical, non-statistical four-component methods.- Table 4.4. Four-component LCAO approaches for many-electron atoms.- Table 4.5. Various four-component local-density methods.- Table 4.6. Thomas-Fermi calculations.- Table 4.7. Independent-particle models.- Table 4.8. Definitions, reviews and background for effective potential calculations.- Table 4.9. Effective-potential methods.- Table 4.10. Available relativistic effective potentials.- Table 4.11. One-component and perturbation calculations.- Table 4.12. (1/Z- and other similar expansions for many-electron atoms.- 5. Multielectron atoms: results.- Table 5.1. Tabulations of atomic ground-state properties.- Table 5.2. Data on atomic energy levels.- Table 5.3. Auger and autoionization processes.- Table 5.4. Ionization potentials and electron affinities.- Table 5.5. Supercritical (Z > 137) systems.- Table 5.6. Electromagnetic transition probabilities.- Table 5.7. Polarisabilities and screening constants.- Table 5.8. Electric and magnetic hyperfine properties.- Table 5.9. Average radii and magnetic g-factors.- Table 5.10. Compton profiles, momentum distributions and spin densities.- Table 5.11. X-ray scattering factors.- Table 5.12. Electron and positron scattering.- Table 5.13. Particle-atom collisions..- Table 5.14. Photon scattering and photoionization.- Table 5.15. Atom-atol£«
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