Plus est en vous ... (Device of the Lords of Gruuthuse, Brugge, 15th century) This book is based on, and contains the lectures of the NATO Advanced Study Institute NUCLEAR MAGNETIC RESONANCE IN SOLIDS, which was held August 26 to September 6, 1974, at the University of Leuven, Belgium. The planning of the Leuven Institute developed over several years. The idea came into being around 1971 in the A.E.I.O.U., the Association Europeenne pour une Interaction entre les Organismes Universitaires. The first practical steps were undertaken exactly two years before it took place, on the evening of the…mehr
Plus est en vous ... (Device of the Lords of Gruuthuse, Brugge, 15th century) This book is based on, and contains the lectures of the NATO Advanced Study Institute NUCLEAR MAGNETIC RESONANCE IN SOLIDS, which was held August 26 to September 6, 1974, at the University of Leuven, Belgium. The planning of the Leuven Institute developed over several years. The idea came into being around 1971 in the A.E.I.O.U., the Association Europeenne pour une Interaction entre les Organismes Universitaires. The first practical steps were undertaken exactly two years before it took place, on the evening of the 25th of August 1972 in a restaurant on the Eerikinkatu in Turku, Finland, during the 17th Congress AMPERE. Meeting - and eating, of cours- that evening, in that most excellent restaurant, were Raymond Andrew, Karl Hausser, John Waugh and myself. From the beginning on it was decided to take as general theme of the Institute, the recent developments in high resolution and high sensitivity nuclear magnetic resonance in solids.Hinweis: Dieser Artikel kann nur an eine deutsche Lieferadresse ausgeliefert werden.
Dedication.- Chaptek I: Principles: Temperatures, Structures, Motions.- General Aspects of Nuclear Magnetic Resonance in Solids.- to Spin Temperatures and Their Relation to the Bloch Equations.- Single Crystals, Powders, and Anisotropy Effects.- NMR Parameters for Studying Structure and Motion.- The Eyvect of Molecular Motion on Line Widths and Relaxation Times.- A Comparison between Classical Theory of Motional Narrowing and Narrowing Due to Quantum Mechanical Tunnelling Motion.- Chaptett II: Systems: Phonons, Non-Metals, Metals.- Magnetic Resonance and Relaxation: A Probe of the Phonon Spectrum.- Magnetic Resonance and Structural Phase Transitions.- NMR Studies of Molecular Solids, Polymers and Glasses.- NMR in Metals and Alloys.- Chaptek III: Methods: Fourier Transform, Multiple Pulse, Double Resonance.- The Fourier Transform in NMR: I. Why and How.- The Fourier Transform in NMR: II. Signal Processing and Instrumental Requirements.- Line Narrowing by Multiple Pulse Techniques: I. Objectives and Principles.- Line Narrowing by Multiple Pulse Techniques: II. the Real World of Pulses.- Line Narrowing by Multiple Pulse Techniques: III. Experimental Aspects.- Problems + References about Line Narrowing by Multiple Pulse Techniques.- High Resolution Double Resonance Direct Detection of Rare Nuclei in Solids. Method and Technique.- High Resolution Double Resonance in Solids. Recent Developments and Applications.- Wide Line Double Resonance and Relaxation in the Rotating and Laboratory Frames.- Nuclear Magnetic Double Resonance Based on Strong RF Magnetic Field Induced Coupling between Spin Systems.- IV: Life: Peptides, Proteins, Nucleic Acids.- NMR Studies of Structure and Conformation in Peptides and Proteins.- NMR Studies of Hemoproteins.- High Resolution NMR Investigationof Nucleic Acid Structures.- Paraffinic Chains: The Observation of Static Dipolar Interactions in the Presence of Anisotropic Motional Narrowing.- Participants.
Dedication.- Chaptek I: Principles: Temperatures, Structures, Motions.- General Aspects of Nuclear Magnetic Resonance in Solids.- to Spin Temperatures and Their Relation to the Bloch Equations.- Single Crystals, Powders, and Anisotropy Effects.- NMR Parameters for Studying Structure and Motion.- The Eyvect of Molecular Motion on Line Widths and Relaxation Times.- A Comparison between Classical Theory of Motional Narrowing and Narrowing Due to Quantum Mechanical Tunnelling Motion.- Chaptett II: Systems: Phonons, Non-Metals, Metals.- Magnetic Resonance and Relaxation: A Probe of the Phonon Spectrum.- Magnetic Resonance and Structural Phase Transitions.- NMR Studies of Molecular Solids, Polymers and Glasses.- NMR in Metals and Alloys.- Chaptek III: Methods: Fourier Transform, Multiple Pulse, Double Resonance.- The Fourier Transform in NMR: I. Why and How.- The Fourier Transform in NMR: II. Signal Processing and Instrumental Requirements.- Line Narrowing by Multiple Pulse Techniques: I. Objectives and Principles.- Line Narrowing by Multiple Pulse Techniques: II. the Real World of Pulses.- Line Narrowing by Multiple Pulse Techniques: III. Experimental Aspects.- Problems + References about Line Narrowing by Multiple Pulse Techniques.- High Resolution Double Resonance Direct Detection of Rare Nuclei in Solids. Method and Technique.- High Resolution Double Resonance in Solids. Recent Developments and Applications.- Wide Line Double Resonance and Relaxation in the Rotating and Laboratory Frames.- Nuclear Magnetic Double Resonance Based on Strong RF Magnetic Field Induced Coupling between Spin Systems.- IV: Life: Peptides, Proteins, Nucleic Acids.- NMR Studies of Structure and Conformation in Peptides and Proteins.- NMR Studies of Hemoproteins.- High Resolution NMR Investigationof Nucleic Acid Structures.- Paraffinic Chains: The Observation of Static Dipolar Interactions in the Presence of Anisotropic Motional Narrowing.- Participants.
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