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PART A: INTRODUCTORY CHAPTERS. |
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1. Introduction: The Quantum Chemical Calculation of NMR and EPR Parameters (M. Kaupp, et al.). |
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2. Theory of NMR Parameters. From Ramsey to Relativity, 1953-1983 (P. Pyykkö). |
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3. Historical Aspects of EPR Parameter Calculations (F. Neese & M. Munzarová). |
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4. The Effective Spin Hamiltonian Concept from a Quantum Chemical Perspective (G. Lushington). |
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5. Fundamentals of Nonrelativistic and Relativistic Theory of NMR and ESR Parameters (W. Kutzelnigg). |
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PART B: NMR PARAMERTERS, METHODOLOGICAL ASPECTS. |
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6. Chemical Shifts with Hartree-Fock and Density Functional Methods (C. van Wüllen). |
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7. Spin-Spin Coupling Constants with HF and DFT Methods (T. Helgaker & M. Pecul). |
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8. Electron-Correlated Methods for the Calculation of NMR Chemical Shifts (J. Gauss & J. Stanton). |
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9. Semiempirical Methods for the Calculation of NMR Chemical Shifts (T. Heine & G. Seifert). |
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10. Ro-Vibrational Corrections to NMR Parameters (T. Ruden & K. Ruud). |
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11. Molecular Dynamics and NMR Parameter Calculations (D. Searles & H. Huber). |
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12. Use of Continuum Solvent Models in Magnetic Resonance Parameter Calculations (I. Ciofini). |
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13. Perturbational and ECP Calculation of Relativistic Effects in NMR Shielding and Spin-Spin Coupling (J. Vaara, et al.). |
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14. Calculation of Heavy-Nucleus Chemical Shifts. Relativistic All-Electron Methods (J. Autschbach). |
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15. Relativistic Calculations of Spin-Spin Coupling Constants of Heavy Nuclei (J. Autschbach & T. Ziegler). |
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16. Calculations of Magnetic Resonance Parameters in Solids and Liquids Using Periodic Boundary Conditions (C. Pickard & F. Mauri). |
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17. Calculation of Nuclear Quadrupole Coupling Constants (P. Schwerdtfeger, et al.). |
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18. Interpretation of NMR Chemical Shifts (M. Kaupp). |
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19. Interpretation of Indirect Nuclear Spin-Spin Coupling Constants (O. Malkia). |
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20. First-Principles Calculations of Paramagnetic NMR Shifts (S. Moon & S. Patchkovskii). |
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PART C: NMR PARAMERTERS, APPLICATIONS. |
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21. NMR Parameters in Proteins and Nucleic Acids (D. Case). |
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22. Characterizing Two-Bond NMR 13C-15N, 15N-15N, and 19F-15N Spin-Spin Coupling Constants across Hydrogen Bonds Using in Ab Initio EOM-CCSD Calculations (J. Del Bene). |
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23. Calculation of NMR Parameters in Carbocation Chemistry (H. Siehl & V. Vrcek). |
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24. Aromaticity Indices from Magnetic Shieldings (Z. Chen, et al.). |
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25. Fullerenes (T. Heine). |
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26. NMR of Transition Metal Compounds (M. Bühl). |
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27. Characterization of NMR Tensors via Experiment and Theory (R. Wasylishen). |
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28. Calculation of Nuclear Magnetic Resonance Parameters in Zeolites (A. Goursot & D. Berthomieu). |
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PART D: EPR PARAMETERS, METHODOLOGICAL ASPECTS. |
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29. DFT Calculations of EPR Hyperfine Coupling Tensors (M. Munzarová). |
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30. Ab Initio Post-Hartree-Fock Calculations of Hyperfine Coupling Tensors and Their Comparison with DFT Approaches (B. Engels). |
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31. Alternative Fermi Contact Operators for EPR and NMR (V. Rassolov & D. Chipman). |
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32. Calculations of EPR g-Tensors with Density Functional Theory (S. Patchkovskii & G. Schreckenbach). |
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33. Ab Initio Calculations of g-Tensors (G. Lushington). |
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34. Zero-Field Splitting (F. Neese). |
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PART E: EPR PARAMETERS, APPLICATIONS. |
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35. Computation of Hyperfine Coupling Tensors to Complement EPR Experiments (F. Ban, et al.). |
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36. Applications to EPR in Bioinorganic Chemistry (F. Neese). |
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