A complete introduction to modern NMR spectroscopy
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Abstract
Author information unavailable
Abstract
Partial table of contents: Spectroscopy: Some Preliminary Considerations. Magnetic Properties of Nuclei. Obtaining an NMR Spectrum. Correlating Proton Chemical Shifts with Molecular Structure. First-Order (Weak) Spin-Spin Coupling. Factors that Influence the Sign and Magnitude of J: Second-Order (Strong) Coupling Effects. The Study of Dynamic Processes by NMR. Electron Paramagnetic Resonance Spectroscopy and Chemically Induced Dynamic Nuclear Polarization. Two-Dimensional Nuclear Magnetic Resonance. NMR Studies of Biologically Important Molecules. Appendices. Indexes.
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Partial table of contents: Spectroscopy: Some Preliminary Considerations. Magnetic Properties of Nuclei. Obtaining an NMR Spectrum. Correlating Proton Chemical Shifts with Molecular Structure. First-Order (Weak) Spin-Spin Coupling. Factors that Influence the Sign and Magnitude of J: Second-Order (Strong) Coupling Effects. The Study of Dynamic Processes by NMR. Electron Paramagnetic Resonance Spectroscopy and Chemically Induced Dynamic Nuclear Polarization. Two-Dimensional Nuclear Magnetic Resonance. NMR Studies of Biologically Important Molecules. Appendices. Indexes.
Key concepts: Nuclear magnetic resonance spectroscopy, Spectroscopy, Transverse relaxation-optimized spectroscopy, Nuclear magnetic resonance, Carbon-13 NMR satellite, J-coupling, Nuclear magnetic resonance crystallography, Chemistry