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Abdominal MRA
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Abragam, Anatole: The Bible
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Abraham, Raymond J.: A Brief History of Proton Chemical Shifts
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Accuracy Limitations on Internuclear Distances Measured by REDOR
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Accurate Determination of Nuclear Quadrupole Coupling Constants and other NMR Parameters in Liquids from the Combination of Molecular Dynamics Simulations and ab initio Calculations
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Ackerman, Joseph J. H.: Oxford Knights
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Adiabatic Polarization-Transfer Methods in MAS Spectroscopy
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Adsorbed Species: Spectroscopy and Dynamics
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Agriculture and Soils
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Ailion, David C.: The First Observations of Ultraslow Motions
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Aime, Silvio: A Taste of NMR in Inorganic Chemistry
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Aluminum-27 NMR of Solutions
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Amino Acids, Peptides and Proteins: Chemical Shifts
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Amorphous Materials
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Amorphous Silicon Alloys
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Amphiphilic Liquid Crystalline Samples: Nuclear Spin Relaxation
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Analysis of High-Resolution Solution State Spectra
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Analysis of Spectra: Automatic Methods
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Anderson, Weston A.: Early NMR Experiences and Experiments
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Ando, Isao: Structures and Electronic States of Polymers as Studied by High-Resolution NMR Spectroscopy Combined with Quantum Chemistry
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Andrew, E. Raymond: Spinning the Spins: A Lifetime in NMR
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Anet, Frank A. L.: A Lapsed Organic Chemist in the Wonderland of NMR
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Animal Methods in MRS
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Animal Models of Stroke Studied by MRI
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Anisotropically Restricted Diffusion in MRI
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Anisotropy of Shielding and Coupling in Liquid Crystalline Solutions
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Applications of 19F-NMR to Oncology
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Arata, Yoji: Early Days of NMR in Japan
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Arnold, James T.: Early Perceptions in Nuclear Magnetic Resonance (NMR)
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Assessment of Regional Blood Flow and Volume by Kinetic Analysis of Contrast-Dilution Curves
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Average Hamiltonian Theory
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Béné, Georges-J.: The Early Days of NMR Research in Geneva
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Bacterial Chemotaxis Proteins: Fluorine-19 NMR
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Bacteriorhodopsin and Rhodopsin
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Bain, Alex D.: Early Development of Homonuclear 2D NMR (From the Outside)
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Balaban, Robert S.: Personal Perspective on the History of NMR
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Barfield, Michael: Thirty-Three Years of NMR Parameters
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Bax, Ad: NMR of Ethanol and Interferon-γ
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Becker, Edwin D.: NMR at the NIH: Inception and Growth Over Four Decades
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Bertini, Ivano: A Life with Paramagnetic Molecules
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Bible, Roy H. Jr.: NMR: An Organic Chemist's Dream Come True
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Bilayer Membranes: Deuterium and Carbon-13 NMR
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Bilayer Membranes: Proton and Fluorine-19 NMR
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Bioeffects and Safety of Radiofrequency Electromagnetic Fields
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Biological Macromolecules
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Biological Macromolecules: NMR Parameters
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Biological Macromolecules: Structure Determination in Solution
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Biological Systems: Spin-3/2 Nuclei
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Bioreactors and Perfusion
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Biosynthesis and Metabolic Pathways: Carbon-13 and Nitrogen-15 NMR
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Biosynthesis and Metabolic Pathways: Deuterium NMR
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Birdcage Resonators: Highly Homogeneous Radiofrequency Coils for Magnetic Resonance
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Blinc, Robert: The AMPERE Society and the Development of Magnetic Resonance in Eastern Europe
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Bloch, Felix: The Principle of Nuclear InductionNobel Lecture, December 11, 1952© Le Prix Nobel, 1952
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Bloembergen, Nicolaas: My Early Years in NMR, 194648
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Blood Flow: Quantitative Measurement by MRI
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Bloom, Myer: Personal Views of NMR History
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Bodenhausen, Geoffrey: Traveling through the World of Magnetic Resonance in the 1970s
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Body Fat Metabolism: Observation by MR Imaging and Spectroscopy
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Body Fluids
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Boron NMR
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Bothner-By, Aksel A.: Computer Analysis of High-Resolution NMR Spectra
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Bottomley, Paul A.: The Development of High-Field NMR Imaging: 0.12 T to 1.5 T
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Bovey, Frank A.: NMR of Polymers
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Brønsted Acidity of Solids
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Brain Infection and Degenerative Disease Studied by Proton MRS
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Brain MRS of Human Subjects
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Brain MRS of Infants and Children
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Brain Neoplasms Studied by MRI
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Brain Neoplasms in Humans Studied by Phosphorus-31 NMR Spectroscopy
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Brain Parenchyma Motion Observed by MRI
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Brain: Sensory Activation Monitored by Induced Hemodynamic Changes with Echo Planar MRI
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Breast MRI
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Brey, Wallace S.: The First 40 Years Should Be the Hardest
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Brownian Motion and Correlation Times
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Budinger, Thomas F.: Perspectives on Reconstruction Tomography and Magnetic Field Physiological Effects
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Bydder, Graeme M.: Magnetic Resonance at Hammersmith Hospital
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COSY Spectra: Quantitative Analysis
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COSY Two-Dimensional Experiments
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CRAMPS
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CSF Velocity Imaging
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Cadmium-113 NMR: A Surrogate Probe for Zinc and Calcium in Proteins
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Calcium-Binding Proteins
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Callaghan, Paul T.: From γ-Rays to Gradients
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Calmodulin
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0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Carbanion Chemistry
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Carbohydrates and Glycoconjugates
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Carbon and Nitrogen Chemical Shifts of Solid State Enzymes
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Carbon-13 Relaxation Measurements: Organic Chemistry Applications
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Carbon-13 Spectral Simulation
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Carbon-13 Studies of Deuterium Labeled Compounds
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
2
|
2
|
0
|
0
|
0
|
Carbonic Anhydrase
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Cardiac Gating Practice
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
1
|
0
|
0
|
Cardiovascular NMR to Study Function
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
1
|
1
|
0
|
0
|
0
|
Carr, Herman Y.: Early Years of Free Precession Revisited
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Cation Movements Across Cell Walls of Intact Tissues using MRS
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Cell Suspensions
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Cells and Cell Systems MRS
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
1
|
1
|
0
|
0
|
0
|
Centerband-Only Detection of Exchange (CODEX): Efficient NMR Analysis of Slow Motions in Solids
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Central Nervous System Degenerative Disease Observed by MRI
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Ceramics
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Ceramics Imaging
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Cerebral Perfusion Imaging by Exogenous Contrast Agents
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Chemical Exchange Effects in Biological Macromolecules
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Chemical Exchange Effects on Spectra
|
0
|
0
|
0
|
0
|
0
|
0
|
1
|
0
|
0
|
0
|
0
|
0
|
0
|
Chemical Exchange on Solid Metal Surfaces
|
0
|
0
|
0
|
0
|
0
|
0
|
1
|
1
|
0
|
1
|
0
|
0
|
0
|
Chemical Shift Imaging
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Chemical Shift Scales on an Absolute Basis
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Chemical Shift Tensor Measurement in Solids
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
1
|
0
|
1
|
0
|
0
|
0
|
Chemical Shift Tensors
|
0
|
0
|
0
|
0
|
0
|
0
|
1
|
0
|
0
|
0
|
0
|
0
|
0
|
Chemical Shift Tensors in Single Crystals
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
1
|
0
|
1
|
0
|
0
|
0
|
Chemical Shifts in Biochemical Systems
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
1
|
0
|
1
|
0
|
0
|
0
|
Chemically Induced Dynamic Nuclear Polarization
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Chiral Discrimination using Chiral Ordering Agents
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
6
|
6
|
12
|
3
|
0
|
0
|
Clough, Stanley: NMR and Quantum Tunneling Rotation
|
0
|
0
|
0
|
0
|
0
|
0
|
1
|
0
|
0
|
0
|
0
|
0
|
0
|
Coal Structure from Solid State NMR
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Cobalt(II)- and Nickel(II)-Substituted Proteins
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Codrington, Robert S.: Comments on NMR Instrument Development
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Cohen, Jack S.: Recollections of Early NMR Applications to Proteins and Cells
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Cohn, Mildred: Peregrinations of an Enzymologist in NMR
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Coils for Insertion into the Human Body
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
1
|
0
|
1
|
0
|
0
|
0
|
Cokes
|
0
|
0
|
0
|
0
|
0
|
0
|
1
|
0
|
0
|
0
|
0
|
0
|
0
|
Colloidal Systems
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Combinatorial Chemistry
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Complex Radiofrequency Pulses
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Composite Pulses
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
1
|
0
|
1
|
5
|
0
|
0
|
Computer Assisted Structure Elucidation
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Concentrated Solution Effects
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
1
|
0
|
1
|
0
|
0
|
0
|
Conducting Polymers
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Contrast Agents in MRI: Superparamagnetic Iron Oxide
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Contrast Agents in Magnetic Resonance: Operating Mechanisms
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Contrast Agents in Whole Body Magnetic Resonance: An Overview
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Copper Proteins
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Corio, Paul L.: High-Resolution NMR at Columbia University
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Coronary Artery Disease Evaluated by MRI
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Cotts, Robert M.: Historical Recollections
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Coupled Spin Relaxation in Polymers
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Coupling Constants Determined by ECOSY
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Coupling Through Space in Organic Chemistry
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Cranial Nerves Investigated by MRI
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Crooks, Lawrence E.: Field Strength Selection for MR Imaging
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Cross Polarization in Rotating Solids: Spin-½ Nuclei
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Cross Polarization in Solids
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Cryogenic Magnets for Whole Body Magnetic Resonance Systems
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Cryogenic NMR Probes: Applications
|
0
|
0
|
0
|
0
|
0
|
0
|
1
|
0
|
1
|
1
|
0
|
0
|
0
|
D-Lactate Dehydrogenase
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
DNA Triplexes, Quadruplexes, and Aptamers
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
DNACation Interactions: Quadrupolar Studies
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
DNA: A-, B-, and Z-
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Dadok, Josef: High-Field NMR Instrumentation
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
1
|
1
|
0
|
0
|
0
|
Data Processing
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
1
|
0
|
1
|
0
|
0
|
0
|
Decoupling Methods
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Degenerative Disk Disease Studied by MRI
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Design and Use of Internal Receiver Coils for Magnetic Resonance Imaging
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Deuterium NMR in Solids
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Deuteron Relaxation Rates in Liquid Crystalline Samples: Experimental Methods
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Diamond Thin Films
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Diehl, Peter: NMR at the Physics Department of the University of Basel, Switzerland (194996)
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Dietary Changes Studied by MRS
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Diffusion Measurements by Magnetic Field Gradient Methods
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Diffusion and Flow in Fluids
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Diffusion and Perfusion in MRI
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
1
|
1
|
0
|
0
|
0
|
Diffusion in Porous Media
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Diffusion in Rare Gas Solids
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Diffusion in Solids
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Diffusion-Based Studies of Aggregation, Binding and Conformation of Biomolecules: Theory and Practice
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
1
|
0
|
0
|
Diffusion-Ordered Spectroscopy (DOSY)
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
1
|
0
|
1
|
0
|
0
|
0
|
Diffusion: Clinical Utility of MRI Studies
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
1
|
1
|
0
|
0
|
0
|
Dipolar Field and Radiation Damping: Collective Effects in Liquid-State NMR
|
0
|
0
|
0
|
0
|
0
|
0
|
1
|
1
|
0
|
1
|
1
|
0
|
0
|
Dipolar Spectroscopy: Transient Nutations and Other Techniques
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Dipolar and Indirect Coupling Tensors in Solids
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
1
|
0
|
1
|
0
|
0
|
0
|
Distance Geometry
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Doddrell, David M.: An Historical Perspective of Research Based Upon Misguided Advice
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Doskočilová, Danica & Schneider, Bohdan: Development of Magic Angle Rotation for the Narrowing of Proton NMR Lines in Organic Materials
|
0
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0
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0
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0
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0
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0
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0
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0
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0
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0
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0
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0
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0
|
Doty, F. David: A Random Walk Toward High-Speed Sample Spinning
|
0
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0
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0
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0
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0
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0
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0
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0
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0
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0
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0
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0
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0
|
Double Quantum Coherence
|
0
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0
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0
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0
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0
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0
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0
|
1
|
0
|
1
|
0
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0
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0
|
Double Resonance
|
0
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0
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0
|
0
|
0
|
0
|
0
|
1
|
0
|
1
|
0
|
0
|
0
|
Double Rotation
|
0
|
0
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0
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0
|
0
|
0
|
0
|
0
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0
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0
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0
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0
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0
|
Double-Quantum Filtered NMR of Ordered Biological Tissues
|
0
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0
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0
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0
|
0
|
0
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0
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0
|
0
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0
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0
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0
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0
|
Double-Quantum NMR Spectroscopy of Dipolar Coupled Spins Under Fast Magic Angle Spinning
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
1
|
1
|
0
|
0
|
0
|
DrugNucleic Acid Interactions
|
0
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0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
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0
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0
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0
|
Dwek, Raymond A.: From Antibodies to Glycobiology
|
0
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0
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0
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0
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0
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0
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0
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0
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0
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0
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0
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0
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0
|
Dybowski, Cecil: Bob Vaughan and Solid State NMR at Caltech in the 1970s
|
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0
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0
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0
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0
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0
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0
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0
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0
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0
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0
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0
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0
|
Dynamic Angle Spinning
|
0
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0
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0
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0
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0
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0
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0
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0
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0
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0
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0
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0
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0
|
Dynamic Frequency Shift
|
0
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0
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0
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0
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0
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0
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0
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0
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0
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0
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0
|
0
|
0
|
Dynamic NMR in Liquid Crystalline Solvents
|
0
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0
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0
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0
|
0
|
0
|
0
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0
|
0
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0
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0
|
0
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0
|
Dynamic Nuclear Polarization and High-Resolution NMR of Solids
|
0
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0
|
0
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0
|
0
|
0
|
0
|
0
|
1
|
1
|
0
|
0
|
0
|
Dynamic Spin Ordering of Matrix Isolated Methyl Rotors
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
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0
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0
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0
|
0
|
Dynamics in Solid Organic Compounds: Intramolecular Motions
|
0
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0
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0
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0
|
0
|
0
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0
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0
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0
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0
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0
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0
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0
|
Dynamics of Hydrogen Transfer in Liquids and Solids
|
0
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0
|
0
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0
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0
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0
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0
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0
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0
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0
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0
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0
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0
|
Dynamics of Water in Biological Systems: Inferences from Relaxometry
|
0
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0
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0
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0
|
0
|
0
|
0
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0
|
0
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0
|
0
|
0
|
0
|
EPR and In Vivo EPR: Roles for Experimental and Clinical NMR Studies
|
0
|
0
|
0
|
0
|
0
|
0
|
1
|
0
|
1
|
1
|
0
|
0
|
0
|
ESR Probes as Field Detectors in MRI
|
0
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0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
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0
|
0
|
0
|
0
|
Echo-Planar Imaging
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
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0
|
0
|
Echoes in Solids
|
0
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0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Eddy Currents and Their Control
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
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0
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0
|
0
|
Elastography
|
0
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0
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0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Electric Field Effects on Shielding Constants
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Electrolytes
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
ElectronNuclear Hyperfine Interactions
|
0
|
0
|
0
|
0
|
0
|
0
|
1
|
0
|
0
|
0
|
2
|
0
|
0
|
ElectronNuclear Multiple Resonance Spectroscopy
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Electron-Nuclear Interactions
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
1
|
0
|
1
|
0
|
0
|
0
|
Electrophoretic NMR
|
0
|
0
|
0
|
0
|
0
|
0
|
1
|
0
|
0
|
0
|
0
|
0
|
0
|
Ellis, Paul D.: Multinuclear MR Experiments, the Surrogate Probe Strategy, and Other Fun & Games
|
0
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0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
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0
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0
|
0
|
0
|
Emsley, James W.: Having Fun with Liquid Crystals
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Engelhardt, Günter: Silicon-29 NMR of Silicates: From Liquids to Solids. An Historical Perspective
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Enzymatic Transformations: Isotope Probes
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Enzyme-Catalyzed Exchange: Magnetization Transfer Measurements
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Enzymes Utilizing ATP: Kinases, ATPases and Polymerases
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Ernst, Richard R.: The Success Story of Fourier Transformation in NMR
|
0
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0
|
0
|
0
|
0
|
0
|
1
|
3
|
6
|
9
|
0
|
0
|
0
|
Eye, Orbit, Ear, Nose, and Throat Studies Using MRI
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Farrar, Thomas C.: Historical Reminiscences of Some NMR Experiences
|
0
|
0
|
0
|
0
|
0
|
0
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0
|
0
|
0
|
0
|
0
|
0
|
0
|
Fast Ion Conductors
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Feeney, James: Personal Reminiscences on NMR
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Ferguson, Raymond C.: William D. Phillips and Nuclear Magnetic Resonance Spectroscopy at DuPont
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Ferroelectrics and Proton Glasses
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Fiat, Daniel: The International Society of Magnetic Resonance (ISMAR). Landmarks and Highlights
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Field Cycling Experiments
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Field Gradients and Their Application
|
0
|
0
|
0
|
0
|
0
|
0
|
1
|
1
|
0
|
1
|
0
|
0
|
0
|
Filamentous Bacteriophage Coat Protein
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Filter Diagonalization Methods for Time-Domain Signals
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
1
|
0
|
1
|
1
|
0
|
0
|
Floquet Theory
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Flow NMR
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Fluorine-19 MRS: General Overview and Anaesthesia
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Fluorine-19 NMR
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Fluorine-19 NMR of Solids Containing Both Fluorine and Hydrogen
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
1
|
0
|
1
|
0
|
0
|
0
|
Fluxional Motion
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
1
|
0
|
0
|
Foods and Grains Studied by MRS and MRI
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Force Detection and Imaging in Magnetic Resonance
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Forsén, Sture: Saturation Transfer and TSIEarly Days and Nights of NMR in Sweden
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Fossil Fuels
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Fourier Transform Spectroscopy
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
1
|
1
|
2
|
0
|
0
|
0
|
Fourier Transform and Linear Prediction Methods
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
1
|
1
|
2
|
0
|
0
|
0
|
Fraenkel, Gideon: Reminiscence of NMR
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Frahm, Jens: Toward Rapid NMR Imaging
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Fraissard, J.: A Look at Solid Catalysts by NMR
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Freeman, Ray: Double Resonance Methods in High-Resolution NMR
|
0
|
0
|
0
|
0
|
0
|
0
|
1
|
0
|
0
|
0
|
1
|
0
|
0
|
Fujiwara, Shizuo: Early Development of the Study of NMR in Japan
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Fullerenes and Related Molecules as Studied by Solid State NMR
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Functional MRI at High Fields: Practice and Utility
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Functional MRI: Theory and Practice
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Functional Neuroimaging Artifacts
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Günther, Harald: From Organic Chemistry to NMRA Personal Experience of Magnetization Transfer
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Gadian, David G.: From Brawn to Brain
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Gadolinium Chelate Contrast Agents in MRI: Clinical Applications
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Gadolinium Chelates: Chemistry, Safety and Behavior
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Garroway, Allen N.: Origins of MRIA Personal View
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
1
|
1
|
2
|
0
|
0
|
0
|
Gas Phase Studies of Chemical Exchange Processes
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Gas Phase Studies of Intermolecular Interactions and Relaxation
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Gases at High Pressure
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Gastroscopy and Colonoscopy
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Geological Applications
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Geometric Phases
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
1
|
0
|
1
|
0
|
0
|
0
|
Germanium, Tin, and Lead NMR
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Gerstein, B. C.: The Vaughan Days, CRAMPS, and Transient Techniques in NMR
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Glycolipids
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Goldman, Maurice: The Time when Spin Temperature was Hot Stuff
|
0
|
0
|
0
|
0
|
0
|
0
|
1
|
0
|
0
|
0
|
0
|
0
|
0
|
Gorenstein, David G.: Developments in 31PNMR
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Govil, Girjesh: Nuclear Magnetic Resonance in India: A Historical Sketch
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Gradient Coil Systems
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
1
|
0
|
1
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Gramicidin Channels: Orientational Constraints for Defining High-Resolution Structures
|
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0
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Grant, David M.: Carbon-13 Magnetic ResonanceAn Exquisite NMR Garden of Surprises
|
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0
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0
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0
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Griffin, Robert G.: Perspectives of Magnetic Resonance
|
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0
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Gutowsky, Herbert S.: The Coupling of Chemical and Nuclear Magnetic Phenomena
|
0
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0
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0
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0
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Hägele, Gerhard: Analysis and Simulation of High-Resolution 1D NMR Spectra. Some Steps Closer to Automation
|
0
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0
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0
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0
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0
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0
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1
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|
HETCOR in Organic Solids
|
0
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0
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0
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0
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0
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0
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1
|
1
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0
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1
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0
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Haeberlen, Ulrich: The Early Days of Multiple Pulse NMR
|
0
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Hahn, Erwin L.: Pulsed NMRA Personal History
|
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0
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0
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Half-Filter Experiments: ProtonCarbon-13
|
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0
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0
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0
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1
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0
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0
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0
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0
|
Hall, Laurance D.: NMR Studies of Carbohydrates
|
0
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0
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0
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0
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0
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0
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0
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0
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|
Haptens and Antibodies
|
0
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0
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0
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0
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0
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0
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Harris, Robin K.: Chemical Magnetic Resonance goes Multinuclear
|
0
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0
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0
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0
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0
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0
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2
|
1
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0
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1
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0
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0
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0
|
Head and Neck Investigations by MRI
|
0
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0
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0
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0
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0
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0
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0
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0
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0
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0
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Head and Neck Studies Using MRA
|
0
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0
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0
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0
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0
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0
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0
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0
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0
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0
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|
Health and Safety Aspects of Human MR Studies
|
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0
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0
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0
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0
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0
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|
Heart: Clinical Applications of MRI
|
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0
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0
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0
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0
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0
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0
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0
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0
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|
Heme Peroxidases
|
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0
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0
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0
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Hemodynamic Changes Owing to Sensory Activation of the Brain Monitored by Echo-Planar Imaging
|
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Hemoglobin
|
0
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0
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0
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0
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0
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0
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0
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0
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0
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0
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0
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0
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0
|
Hemorrhage in the Brain and Neck Observed by MRI
|
0
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0
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0
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0
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0
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0
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0
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0
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0
|
Hennel, Jacek W.: Poland. Early NMR
|
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0
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0
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0
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0
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0
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0
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0
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0
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0
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0
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|
Hepatic and Other Systemically Induced Encephalopathies: Applications of MRS
|
0
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0
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0
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0
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0
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0
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0
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0
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0
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0
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0
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0
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0
|
Heterocycles
|
0
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0
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0
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0
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0
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0
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0
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0
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0
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0
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0
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0
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0
|
Heteronuclear Assignment Techniques
|
0
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0
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0
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0
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0
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0
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0
|
1
|
0
|
1
|
0
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0
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0
|
Heteronuclear Decoupling in Solids
|
0
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0
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0
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0
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0
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0
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0
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0
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0
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0
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0
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0
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0
|
Heteronuclear Shift Correlation Spectroscopy
|
0
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0
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0
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0
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0
|
0
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0
|
1
|
0
|
1
|
0
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0
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0
|
High Speed MAS of Half-Integer Quadrupolar Nuclei in Solids
|
0
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0
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0
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0
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0
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0
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0
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0
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0
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0
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0
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0
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0
|
High Temperature Superconductors
|
0
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0
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0
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0
|
0
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0
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0
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0
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0
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0
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0
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0
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0
|
High-Field Whole Body Systems
|
0
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0
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0
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0
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0
|
0
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0
|
1
|
2
|
3
|
0
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0
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0
|
High-Pressure NMR
|
0
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0
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0
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0
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0
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0
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0
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0
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0
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0
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|
Hinshaw, Waldo: Notes on the History of MR Imaging from my Perspective
|
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0
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0
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|
Homonuclear Recoupling Schemes in MAS NMR
|
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0
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0
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0
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0
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0
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0
|
2
|
0
|
2
|
0
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0
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0
|
Homonuclear Three-Dimensional NMR of Biomolecules
|
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0
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0
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0
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0
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0
|
1
|
1
|
0
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1
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0
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0
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0
|
Hoult, D. I.: Biomedical NMR InstrumentationA Personal Viewpoint
|
0
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0
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0
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0
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0
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0
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0
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0
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0
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0
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0
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0
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0
|
Hurd, Ralph E.: A Brief History of Gradients in NMR
|
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0
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0
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0
|
Hyde, James S.: The NMR/EPR Interface at Varian, ENDOR, and notes on Zavoisky
|
0
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0
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0
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0
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0
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0
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0
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0
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0
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0
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0
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0
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0
|
Hydrogen Bonding
|
0
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0
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0
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0
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0
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0
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0
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0
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0
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0
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0
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0
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0
|
Hydrogen Exchange and Macromolecular Dynamics
|
0
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0
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0
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0
|
0
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0
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0
|
0
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0
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0
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0
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0
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0
|
Hydrogen Molecules
|
0
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0
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0
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0
|
0
|
0
|
0
|
0
|
0
|
0
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0
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0
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0
|
HydrogenMetal Systems
|
0
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0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
1
|
0
|
0
|
Hyperpolarized Gas Imaging
|
0
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0
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0
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0
|
0
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0
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0
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0
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0
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0
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0
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0
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0
|
INADEQUATE Experiment
|
0
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0
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0
|
0
|
0
|
0
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0
|
1
|
0
|
1
|
0
|
0
|
0
|
INEPT
|
0
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0
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0
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0
|
0
|
0
|
0
|
1
|
0
|
1
|
0
|
0
|
0
|
Image Formation Methods
|
0
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0
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0
|
0
|
0
|
0
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0
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0
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0
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0
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0
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0
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0
|
Image Processing of Functional MRI Data
|
0
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0
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0
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0
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0
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0
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0
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0
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0
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0
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0
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0
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0
|
Image Quality and Perception
|
0
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0
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0
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0
|
0
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0
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0
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0
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0
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0
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0
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0
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0
|
Image Segmentation, Texture Analysis, Data Extraction, and Measurement
|
0
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0
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0
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0
|
0
|
0
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0
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0
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0
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0
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0
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0
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0
|
Imaging Techniques for Solids and Quasi-Solids
|
0
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0
|
0
|
0
|
0
|
0
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0
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0
|
0
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0
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0
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0
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0
|
Imaging and Spectroscopy of Muscle
|
0
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0
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0
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0
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0
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0
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0
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0
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0
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0
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0
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0
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0
|
Imaging of Trabecular Bone
|
0
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0
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0
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0
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0
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0
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0
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0
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0
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0
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0
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0
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0
|
Imaging of Wide-Band Systems by Line-Narrowing Methods
|
0
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0
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0
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0
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0
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0
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0
|
2
|
0
|
2
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0
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0
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0
|
In Vivo ESR Imaging of Animals
|
0
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0
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0
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0
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0
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0
|
2
|
0
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0
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0
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0
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0
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0
|
In Vivo Hepatic MRS of Humans
|
0
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0
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0
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0
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0
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0
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0
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0
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0
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0
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0
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0
|
0
|
Inclusion Compounds
|
0
|
0
|
0
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0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Incommensurate Systems
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Indirect Coupling: Intermolecular and Solvent Effects
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
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0
|
0
|
0
|
Indirect Coupling: Semiempirical Calculations
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
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0
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0
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0
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0
|
Indirect Coupling: Theory and Applications in Organic Chemistry
|
0
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0
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0
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0
|
0
|
0
|
0
|
0
|
0
|
0
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0
|
0
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0
|
Indirect Nuclear Spin-Spin Coupling Tensors
|
0
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0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Inorganic Chemistry Applications
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
1
|
0
|
0
|
Inorganic Nuclei: Low Sensitivity Transition Metals
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
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0
|
0
|
0
|
Inorganic Solids
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
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0
|
Instrumentation for the Home Builder
|
0
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0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Intercalation Compounds
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Internal Spin Interactions and Rotations in Solids
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Interventional MRI: Specialist Facilities and Techniques
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Intracranial Infections
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
InversionRecovery Pulse Sequence in MRI
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
IronSulfur Proteins
|
0
|
0
|
0
|
0
|
0
|
0
|
1
|
0
|
0
|
0
|
1
|
0
|
0
|
Ischemic Stroke
|
0
|
0
|
0
|
0
|
0
|
0
|
1
|
1
|
0
|
1
|
0
|
0
|
0
|
Isotope Effects in Carbocation Chemistry
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
1
|
2
|
3
|
0
|
0
|
0
|
Isotope Effects on Chemical Shifts and Coupling Constants
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Jackman, Lloyd M.: NMR in Organic ChemistryThe Fabulous Fifties
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Jakobsen, Hans J.: A Retrospect on the Development of High-Speed Sample Spinners for Solids since 1980
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
James, Thomas L.: Time for Preparation and Evolution. But what is the Mechanism for Relaxation?
|
0
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0
|
0
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0
|
0
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0
|
0
|
0
|
0
|
0
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0
|
0
|
0
|
Jameson, Cynthia J.: Early Work on the Ranges of Chemical Shifts and Signs of Coupling Constants
|
0
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0
|
0
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0
|
0
|
0
|
0
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0
|
0
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0
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0
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0
|
0
|
Jardetzky, Oleg: NMR in Molecular BiologyA History of Basic Ideas
|
0
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0
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0
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0
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0
|
0
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0
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0
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0
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0
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0
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0
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0
|
Jeener, Jean: Reminiscences about the Early Days of 2D NMR
|
0
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0
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0
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0
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0
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0
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0
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0
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0
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0
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0
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0
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0
|
Johnson, Charles S. Jr.: The Evolution of Ideas about Optical Analogies to PFGNMR and the Visualization of PFGNMR Experiments
|
0
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0
|
0
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0
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0
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0
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0
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0
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0
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0
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0
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0
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0
|
Johnson, LeRoy F.: My Early Days in NMR Spectroscopy
|
0
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0
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0
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0
|
0
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0
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0
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0
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0
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0
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0
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0
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0
|
Jonas, Jiri: NMR and High Pressure
|
0
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0
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0
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0
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0
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0
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0
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0
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0
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0
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0
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0
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0
|
Kaplan, Jerome I.: Chemical Exchange in Various Guises
|
0
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0
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0
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0
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0
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0
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0
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0
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0
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0
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0
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0
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0
|
Kaptein, Robert: The Early Days of CIDNP
|
0
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0
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0
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0
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0
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0
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0
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0
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0
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0
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0
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0
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0
|
Karplus, Martin: Theory of Vicinal Coupling Constants
|
0
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0
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0
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0
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0
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0
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0
|
0
|
0
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0
|
0
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0
|
0
|
Keller, Tony: The Development of the First Multinuclear Fourier NMR Spectrometers
|
0
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0
|
0
|
0
|
0
|
0
|
0
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0
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0
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0
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0
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0
|
0
|
Kessler, Horst: Dynamics by NMR
|
0
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0
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0
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0
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0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Khetrapal, C. L.: Development of NMR of Oriented Systems
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
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Kidney, Prostate, Testicle, and Uterus of Subjects Studied by MRS
|
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Kinetics at High Pressure
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Klein, Melvin P.: Recollections of 40 Years of Magnetic Resonance at Berkeley
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Klinowski, Jacek: Historical Sketch: Molecular Sieves
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Knight Shift
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Knight, Walter D.: The Knight Shift
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Kochelaev, Boris I.: Discovery of Electron Spin Resonance
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Koenig, Seymour H.: I. I. Rabi, F. Bloch, E. M. Purcell, and the History of NMR and Relaxometry
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Kowalewski, V. J.: Tribulations of a Young Physicist with a New Phenomenon
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Kumar, Anil: Development of Two-Dimensional NMRMy Perception
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Lösche, Artur: The Beginnings of NMR in Leipzig
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La Mar, Gerd N.: NMR of Paramagnetic Proteins
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Lambert, Joseph B.: The First Observation of Nitrogen-15 Nuclear Magnetic Resonances
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Lanthanide Induced Shifts (LIS) in Structural and Conformational Analysis
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Laser Devices in NMR: Routes to Chaos
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Laszlo, Pierre: Getting Acquainted with a Spin-3/2 Nucleus
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Lauterbur, Paul C.: One Path out of ManyHow MRI Actually Began
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Led, Jens J.: Aspects of NMR Studies of Paramagnetic Metal Complexes of Biological Relevance. A Historical Sketch
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Lemieux, Raymond U.: First Observations: The Dependence on Torsion Angle of the Magnitude of the Coupling Constant for Vicinal Hydrogens and its Sign Compared to that for Geminal Hydrogens
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Levitt, Malcolm H.: A Cyclic Evolution In Spin Space
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Levy, George C.: Recollections: Computers in the Early Days of 13C NMR and 25 Years of Growth in NMR Computing
|
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0
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0
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0
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Line Narrowing Methods in Solids
|
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0
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Liouville Equation of Motion
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Lipid Polymorphism
|
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0
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0
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Lipoproteins
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0
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0
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Liquid Crystalline Samples: Application to Macromolecular Structure Determination
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1
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2
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3
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Liquid Crystalline Samples: Carbon-13 NMR
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Liquid Crystalline Samples: Chiral Smectic Phases
|
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Liquid Crystalline Samples: Deuterium NMR
|
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Liquid Crystalline Samples: Diffusion
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Liquid Crystalline Samples: Relaxation Mechanisms
|
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Liquid Crystalline Samples: Spectral Analysis
|
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Liquid Crystalline Samples: Structure of Nonrigid Molecules
|
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Liquid Crystals: General Considerations
|
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Liquid Crystals: Mixed Magnetic Susceptibility Solvents
|
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0
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0
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Liquid-State Quantum Computing
|
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0
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0
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0
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0
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0
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0
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0
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0
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0
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Lithium NMR
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0
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0
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0
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0
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0
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0
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0
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0
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Liver, Pancreas, Spleen, and Kidney MRI
|
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0
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0
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0
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0
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0
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0
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0
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0
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|
Local Field Experiments in Liquid Crystals
|
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0
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0
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0
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0
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0
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0
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1
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0
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1
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0
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0
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Localization and Registration Issues Important for Serial MRS Studies of Focal Brain Lesions
|
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0
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0
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0
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0
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0
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0
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0
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0
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Low Spin Temperature NMR
|
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0
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0
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0
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0
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0
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0
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0
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0
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Low-γ Nuclei in Solid Samples
|
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0
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0
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0
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0
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0
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0
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Low-Field Whole Body Systems
|
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0
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0
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0
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0
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0
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0
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|
Lowe, Irving J.: My Life in the Rotating Frame
|
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0
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0
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0
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0
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0
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0
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Lunazzi, Lodovico: Conformers and Enantiomers, Rotations and Stereomutations: an NMR Playground for an Organic Chemist
|
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0
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0
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Lung and Mediastinum MRI
|
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0
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0
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0
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0
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Lung and Mediastinum: A Discussion of the Relevant NMR Physics
|
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Lutz, Otto: Heteronuclear Magnetic Resonance
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0
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Luz, Zeev: The Early Days of NMR in Israel
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Lynden-Bell, Ruth M.: Reminiscences of Early Days of NMR
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0
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0
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0
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Lyotropic Liquid Crystalline Samples
|
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0
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0
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0
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0
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0
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0
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0
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0
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0
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0
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|
MQMAS Advances
|
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0
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0
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0
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0
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0
|
1
|
0
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0
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0
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0
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0
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0
|
MR-Guided Biopsy, Aspiration, and Cyst Drainage
|
0
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0
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0
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0
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0
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0
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0
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0
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0
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|
MR-Guided Therapy in the Brain
|
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0
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0
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0
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0
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0
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0
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0
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0
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0
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0
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0
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0
|
MRI and MRS of Neuropsychiatry
|
0
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0
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0
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0
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0
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0
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0
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0
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0
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0
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0
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0
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0
|
MRI at Midfield Strength
|
0
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0
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0
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0
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0
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0
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0
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0
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0
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0
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0
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0
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0
|
MRI in Clinical Medicine
|
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0
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0
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0
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0
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0
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0
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0
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0
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0
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0
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0
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|
MRI of Musculoskeletal Neoplasms
|
0
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0
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0
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0
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0
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0
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0
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0
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0
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0
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0
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0
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0
|
MRI of the Female Pelvis
|
0
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0
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0
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0
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0
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0
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0
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0
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0
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0
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0
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0
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0
|
Maciel, Gary E.: A Little Polarization Can be Good for You
|
0
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0
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0
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0
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0
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0
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0
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0
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0
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0
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0
|
0
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0
|
Magic Angle Spinning
|
0
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0
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0
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0
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0
|
0
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0
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0
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0
|
0
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0
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0
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0
|
Magic Angle Spinning Carbon-13 Lineshapes: Effect of Nitrogen-14
|
0
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0
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0
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0
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0
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0
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0
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0
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0
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0
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0
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0
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|
Magic Angle Spinning: Effects of Quadrupolar Nuclei on Spin-1/2 Spectra
|
0
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0
|
0
|
0
|
0
|
0
|
0
|
1
|
0
|
1
|
0
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0
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0
|
Magic Angle Turning and Hopping
|
0
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0
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0
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0
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0
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0
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0
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0
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0
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0
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0
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0
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0
|
Magic-Angle Spinning Extensions
|
0
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0
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0
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0
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0
|
0
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0
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0
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0
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0
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0
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0
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0
|
Magic-Angle Turning Spectra of Solids Involving 5π-Pulse Sequences
|
0
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0
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0
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0
|
0
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0
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0
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0
|
0
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0
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0
|
0
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0
|
Magnetic Equivalence
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Magnetic Field Induced Alignment of Molecules
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
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0
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0
|
0
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0
|
Magnetic Resonance Imaging of White Matter Disease
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
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0
|
0
|
0
|
Magnetic Resonance Imaging: A Historical Overview
|
0
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0
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0
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0
|
0
|
0
|
0
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0
|
0
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0
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0
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0
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0
|
Magnetic Susceptibility and High Resolution NMR of Liquids and Solids
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
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0
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0
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0
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0
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0
|
Magnetization Transfer Contrast: Clinical Applications
|
0
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0
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0
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0
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0
|
0
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0
|
0
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0
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0
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0
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0
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0
|
Magnetization Transfer and Cross Relaxation in Tissue
|
0
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0
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0
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0
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0
|
0
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0
|
0
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0
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0
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0
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0
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0
|
Magnetization Transfer between Water and Macromolecules in Proton MRI
|
0
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0
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0
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0
|
0
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0
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0
|
0
|
0
|
0
|
0
|
0
|
0
|
Male Pelvis Studies Using MRI
|
0
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0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Mansfield, Peter: A Personal View of My Involvement in the Development of NMR and the Conception and Development of MRI
|
0
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0
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0
|
0
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0
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0
|
0
|
1
|
2
|
3
|
0
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0
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0
|
Maraviglia, Bruno: A Personal Perspective about NMR Evolution
|
0
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0
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0
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0
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0
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0
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0
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0
|
0
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0
|
0
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0
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0
|
Margulis, Alexander R.: How NMR was Started at the University of California, San Francisco (UCSF)
|
0
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0
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0
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0
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0
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0
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0
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0
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0
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0
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0
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0
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0
|
Marker Grids for Observing Motion in MRI
|
0
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0
|
0
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0
|
0
|
0
|
0
|
0
|
0
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0
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0
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0
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0
|
Marshall, Alan G.: Ion Cyclotron Resonance Mass Spectrometry: a Brief History
|
0
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0
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0
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0
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0
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0
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0
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0
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0
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0
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0
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0
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0
|
Martin, Gérard J. Maryvonne L.: Ode to Ethanol
|
0
|
0
|
0
|
0
|
0
|
0
|
0
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0
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0
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0
|
0
|
0
|
0
|
Maximum Entropy Reconstruction
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
1
|
0
|
1
|
0
|
0
|
0
|
McConnell, Harden M.: Spin Chemistry
|
0
|
0
|
0
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0
|
0
|
0
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0
|
0
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0
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0
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0
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0
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0
|
McDowell, Charles A.: Four Decades of Chemical NMR at the University of British Columbia (UBC)
|
0
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0
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0
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0
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0
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0
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0
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0
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0
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0
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0
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0
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0
|
McLauchlan, Keith A.: NMR Memories
|
0
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0
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0
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0
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0
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0
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0
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0
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0
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0
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0
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0
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Mehring, Michael: Advent and Evolution of High-Resolution NMR in Solids: A Personal View
|
0
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0
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0
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0
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0
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0
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Membrane Lipids of Acholeplasma laidlawii
|
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0
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0
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0
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0
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0
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Membrane Proteins
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0
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0
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0
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1
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0
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0
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0
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2
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0
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Membranes: Carbon-13 NMR
|
0
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0
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0
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0
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0
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0
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0
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0
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0
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0
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Membranes: Deuterium NMR
|
0
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0
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0
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0
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0
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0
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0
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0
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0
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0
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0
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Membranes: Phosphorus-31 NMR
|
0
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0
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0
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0
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0
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0
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0
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0
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0
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0
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0
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Metallic Superconductors
|
0
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0
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0
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0
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0
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0
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0
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0
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0
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0
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0
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0
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0
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Metallodrugs
|
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0
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0
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0
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0
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0
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0
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0
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0
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Metallothioneins
|
0
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0
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0
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0
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0
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0
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0
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0
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0
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0
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0
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0
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Metals: Pure and Alloyed
|
0
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0
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0
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0
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0
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0
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0
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0
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0
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Methods and Applications of Diffusion MRI
|
0
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0
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0
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0
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0
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0
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0
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0
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0
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0
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1
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0
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0
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Micellar Solutions and Microemulsions
|
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0
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0
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0
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0
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0
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Microporous Materials and Xenon-129 NMR
|
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0
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0
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0
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0
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0
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0
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Microprobes and Methodologies for Spectral Assignments: Applications
|
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0
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0
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0
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0
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0
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1
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0
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0
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0
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Mildvan, Albert S.: Early Applications to Enzymes of Paramagnetic Effects on Nuclear Relaxation
|
0
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0
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0
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0
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0
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0
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0
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0
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0
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0
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|
Mitochondrial Cytochrome c
|
0
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0
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0
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0
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0
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0
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0
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0
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0
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0
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0
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0
|
Molecular Motions: T1 Frequency Dispersion in Biological Systems
|
0
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0
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0
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0
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0
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0
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0
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0
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0
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0
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0
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Molecular Sieves: Crystalline Systems
|
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0
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0
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0
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0
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0
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0
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0
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0
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0
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0
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0
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0
|
Molten Salts
|
0
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0
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0
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0
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0
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0
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0
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0
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0
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0
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0
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0
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0
|
Morris, Gareth A.: The Origins of DANTE
|
0
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0
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0
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0
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0
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0
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0
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0
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0
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0
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0
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0
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0
|
Motion Artifacts: Mechanism and Control
|
0
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0
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0
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0
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0
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0
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0
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0
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0
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0
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0
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0
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0
|
Motional Effects on Protein Structure: Acyl Carriers
|
0
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0
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0
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0
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0
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0
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0
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0
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0
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0
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0
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0
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0
|
Multi Echo Acquisition Techniques Using Inverting Radiofrequency Pulses in MRI
|
0
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0
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0
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0
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0
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0
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0
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0
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0
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0
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0
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0
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0
|
Multidimensional Spectroscopy: Concepts
|
0
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0
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0
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0
|
0
|
0
|
1
|
1
|
0
|
1
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0
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0
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0
|
Multifrequency Coils for Whole Body Studies
|
0
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0
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0
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0
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0
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0
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0
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0
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0
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0
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0
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0
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0
|
Multiple Quantum Coherence Imaging
|
0
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0
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0
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0
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0
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0
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0
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0
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0
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0
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0
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0
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0
|
Multiple Quantum Coherence in Spin-1/2 Dipolar Coupled Solids
|
0
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0
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0
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0
|
0
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0
|
0
|
0
|
0
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0
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0
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0
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0
|
Multiple Quantum Coherences in Extended Dipolar Coupled Spin Networks
|
0
|
0
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0
|
0
|
0
|
0
|
0
|
1
|
0
|
1
|
0
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0
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0
|
Multiple Quantum NMR in Solids
|
0
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0
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0
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0
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0
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0
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0
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0
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0
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0
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0
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0
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0
|
Multiple Quantum Spectroscopy in Liquid Crystalline Solvents
|
0
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0
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0
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0
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0
|
0
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0
|
1
|
0
|
1
|
0
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0
|
0
|
Multiple Quantum Spectroscopy of Liquid Samples
|
0
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0
|
0
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0
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0
|
0
|
0
|
1
|
0
|
1
|
0
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0
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0
|
Multiple-Quantum Magic-Angle Spinning Experiments on Half-Integer Nuclei: Fundamentals
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
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0
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0
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0
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0
|
Multiple-Resonance Multi-Dimensional Solid-State NMR of Proteins
|
0
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0
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0
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0
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0
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0
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0
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0
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0
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0
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0
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0
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0
|
Muscle Proteins
|
0
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0
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0
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0
|
0
|
0
|
0
|
0
|
0
|
0
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0
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0
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0
|
Myoglobin
|
0
|
0
|
0
|
0
|
0
|
0
|
4
|
0
|
0
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0
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0
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0
|
0
|
NMR Microscopy: Resolution
|
0
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0
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0
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0
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0
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0
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0
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0
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0
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0
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0
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0
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0
|
NMR Spectroscopy of the Human Heart
|
0
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0
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0
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0
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0
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0
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0
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0
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0
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0
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0
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0
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0
|
NOESY
|
0
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0
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0
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0
|
0
|
0
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0
|
1
|
0
|
1
|
0
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0
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0
|
Nagayama, Kuniaki: The First Protein Two-Dimensional (2D) NMR
|
0
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0
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0
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0
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0
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0
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0
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0
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0
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0
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|
Nakanishi, Koji: First Encounter with NOE in Natural Productsthe Ginkgolides
|
0
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0
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0
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0
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0
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0
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0
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0
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0
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0
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0
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0
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0
|
Natural Products
|
0
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0
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0
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0
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0
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0
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0
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0
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0
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0
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0
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0
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0
|
Neurosurgical Procedures Monitored by Intraoperative MRI
|
0
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0
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0
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0
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0
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0
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0
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0
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0
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0
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0
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0
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0
|
Nitrogen NMR
|
0
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0
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0
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0
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0
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0
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0
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0
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0
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0
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0
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0
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0
|
Nitrogen-15 Chemical Shift Tensors and Organic Structure
|
0
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0
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0
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0
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0
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0
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0
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0
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0
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0
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0
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0
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0
|
Noble Gas Elements
|
0
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0
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0
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0
|
0
|
0
|
0
|
0
|
0
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0
|
0
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0
|
0
|
Nonheme Iron Proteins
|
0
|
0
|
0
|
0
|
0
|
0
|
0
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0
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0
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0
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0
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0
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0
|
Norberg, Richard E.: NMR in Urbana and St. Louis
|
0
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0
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0
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0
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0
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0
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0
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0
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0
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0
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0
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0
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0
|
Nuclear Ferromagnetism and Antiferromagnetism
|
0
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0
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0
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0
|
0
|
0
|
0
|
0
|
0
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0
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0
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0
|
0
|
Nuclear Overhauser Effect
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
1
|
0
|
1
|
0
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0
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0
|
Nuclear Spin Properties and Notation
|
0
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0
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0
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0
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0
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0
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0
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0
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0
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0
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0
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0
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0
|
Nuclear Spin Superradiance
|
0
|
0
|
0
|
0
|
0
|
0
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0
|
0
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0
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0
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0
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0
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0
|
Nucleic Acid Flexibility and Dynamics: Deuterium NMR
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
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0
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0
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0
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0
|
Nucleic Acid Structures in Solution: Sequence Dependence
|
0
|
0
|
0
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0
|
0
|
0
|
0
|
0
|
0
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0
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0
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0
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0
|
Nucleic Acids: Base Stacking and Base Pairing Interactions
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
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0
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0
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0
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0
|
Nucleic Acids: Chemical Shifts
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
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0
|
0
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0
|
Nucleic Acids: Phosphorus-31 NMR
|
0
|
0
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0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
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0
|
0
|
Nucleic Acids: Spectra, Structures, and Dynamics
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Nutation Spectroscopy of Quadrupolar Nuclei
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
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0
|
Oil Reservoir Rocks Examined by MRI
|
0
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0
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0
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0
|
0
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0
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0
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0
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0
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0
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0
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0
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0
|
Oldfield, Eric: NMR Adventures in Chemistry and Biology
|
0
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0
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0
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0
|
0
|
0
|
0
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0
|
0
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0
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0
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0
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0
|
Opella, Stanley J.: NMR Spectroscopy and Structural Biology
|
0
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0
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0
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0
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0
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0
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0
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0
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0
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0
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0
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0
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0
|
Optically Enhanced Magnetic Resonance
|
0
|
0
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0
|
0
|
0
|
0
|
0
|
0
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0
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0
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0
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0
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0
|
Optically Pumped NMR of Semiconductors and Two-Dimensional Electron Systems
|
0
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0
|
0
|
0
|
0
|
0
|
0
|
0
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0
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0
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0
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0
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0
|
Organic Chemistry Applications
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Organometallic Compounds
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Orientationally Broadened NMR Spectra: Analysis by Special Processing Methods
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
OrthoPara Hydrogen at Low Temperature
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Outcome and EfficacyAnalysis of Healthcare Models
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Overhauser Effect Imaging of Free Radicals
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Overhauser, Albert W.: Dynamic Nuclear Polarization
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Overtone Spectroscopy of Quadrupolar Nuclei
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Oxygen-17 NMR
|
0
|
0
|
0
|
0
|
0
|
0
|
1
|
0
|
0
|
0
|
0
|
0
|
0
|
Oxygen-17 NMR: Applications in Biochemistry
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Oxygen-18 in Biological NMR
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Packard, Martin E.: Nuclear Induction at Stanford and the Transition to Varian
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Packer, Ken: Connections (or One Thing Leads to Another)
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Pake, George E.: A Graduate Student and Young Faculty Physicist Wanders into NMR: 194653
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Pancreatic Trypsin Inhibitor
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Parahydrogen Enhanced NMR Spectroscopic Methods: A Chemical Perspective
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Paramagnetic Relaxation in Solution
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Partial Fourier Acquisition in MRI
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Patient Life Support and Monitoring Facilities for Whole Body MRI
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Pediatric Body MRI
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Pediatric Brain MRI: Applications in Neonates and Infants
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Peptide Hormones
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Peptide and Protein Secondary Structural Elements
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Peptides and Polypeptides
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Peripheral Joint Magnetic Resonance Imaging
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Peripheral Muscle Metabolism Studied by MRS
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Peripheral Vasculature MRA
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Pfeifer, Harry: Leipzig, Summer 1951
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Phage Lysozyme: Dynamics and Folding Pathway
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Phase Contrast MRA
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Phase Cycling
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
1
|
0
|
1
|
0
|
0
|
0
|
Phase Transitions and Critical Phenomena in Solids
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
1
|
0
|
1
|
0
|
0
|
0
|
PhospholipidCholesterol Bilayers
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Phosphorus-31 Magnetization Transfer Studies In Vivo
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Phosphorus-31 NMR
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Pines, Alexander: Solid State NMR: Some Personal Recollections
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Pituitary Gland and Parasellar Region Studied by MRI
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
1
|
0
|
0
|
Plant Physiology
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Plants, Seeds, Roots, and Soils as Applications of Magnetic Resonance Microscopy
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Polarization Transfer Experiments via Scalar Coupling in Liquids
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
1
|
0
|
1
|
1
|
0
|
0
|
Polarization of Noble Gas Nuclei with Optically Pumped Alkali Metal Vapors
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Polymer Blends: Miscibility Studies
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Polymer Conformations in Glassy Solutions as Studied by Off-Resonance Radiation
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Polymer Dispersed Liquid Crystals
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Polymer Dynamics and Order from Multidimensional Solid State NMR
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Polymer MRI
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Polymer Physics
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Polymer Reactions
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Polymerization and Statistical Models
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Polymers Under Mechanical Tension
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Polymers: Regio-Irregular Structure
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Polymers: Relaxation and Dynamics of Synthetic Polymers in Solution
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Polymorphism and Related Phenomena
|
0
|
0
|
0
|
0
|
0
|
0
|
1
|
2
|
0
|
2
|
2
|
0
|
0
|
Polysaccharide Solid State NMR
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Polysaccharides and Complex Oligosaccharides
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Poole, Charles P. Jr.: The Dance of the Nucleons
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Postoperative Trauma Observed by MRI
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Pound, Robert V.: Early Days in NMR
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Powles, Jack: Reminiscences of the Early Days of NMR
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Probe Design and Construction
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Probes for High Resolution
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Probes for Special Purposes
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Proctor, Warren G.: When You and I Were Young, Magnet
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
ProjectionReconstruction in MRI
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Proteases
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Protein Dynamics from NMR Relaxation
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Protein Dynamics from Solid State NMR
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Protein Hydration
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Protein Modules
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Protein Structures: Relaxation Matrix Refinement
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Proteins and Protein Fragments: Folding
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
1
|
0
|
0
|
Proton Chemical Shift Measurements in Biological Solids
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Proton Decoupling During In Vivo Whole Body Phosphorus MRS
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Proton Decoupling in Whole Body Carbon-13 MRS
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Pulsatility Artifacts Due to Blood Flow and Tissue Motion and Their Control
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Purcell, Edward M.: Research in Nuclear MagnetismNobel Lecture December, 11, 1952 © Les Prix Nobel, 1952
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Quadrupolar Interactions
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Quadrupolar Nuclei in Glasses
|
0
|
0
|
0
|
0
|
0
|
0
|
1
|
0
|
0
|
0
|
0
|
0
|
0
|
Quadrupolar Nuclei in Liquid Samples
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Quadrupolar Nuclei in Solids
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
1
|
1
|
2
|
0
|
0
|
0
|
Quadrupolar Transition Metal and Lanthanide Nuclei
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Quality Control and Quantification in Whole Body MRI and MRS
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Quantitation in In Vivo MRS
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Quantitative Measurements
|
0
|
0
|
0
|
0
|
0
|
0
|
3
|
0
|
0
|
0
|
2
|
0
|
0
|
Quantum Exchange
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Quantum Optics: Concepts of NMR
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Quantum Tunneling Spectroscopy
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Quasicrystalline Compounds; Metallic Glasses
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
REDOR and TEDOR
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
2
|
0
|
2
|
0
|
0
|
0
|
RNA Structure and Function: Modified Nucleosides
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
ROESY
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
1
|
0
|
1
|
0
|
0
|
0
|
Radda, George K.: The Development of In Vivo NMR in Oxford
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Radeglia, Reiner & Jancke, Harald: The History of the NMR Laboratory in the Former Central Institute for Physical Chemistry of the East German Academy of Sciences in Berlin
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Radiofrequency Fields: Interactions, Biological Effects, and Safety Issues
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Radiofrequency Gradient Pulses
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Radiofrequency Pulses: Response of Nuclear Spins
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Radiofrequency Systems and Coils for MRI and MRS
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Ramsey, Norman F.: Origins of Magnetic Resonance
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Randall, Edward W.: Double, Double, Toil and Trouble (Alias Double Resonance)
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Rapid Scan Correlation Spectroscopy
|
0
|
0
|
0
|
0
|
0
|
0
|
1
|
0
|
0
|
0
|
0
|
0
|
0
|
Raynes, W. T.: Early Work on Gas-Phase Chemical Shifts
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Reactions in Zeolites
|
0
|
0
|
0
|
0
|
0
|
0
|
1
|
0
|
0
|
0
|
1
|
0
|
0
|
Recording One-Dimensional High Resolution Spectra
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Redfield, Alfred G.: Foundations and Structures
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Reeves, Leonard W.: Early Application of NMR to Chemistry at the National Research Council of Canada
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Reference Deconvolution
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Refrigerated and Superconducting Receiver Coils in Whole Body Magnetic Resonance
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Relativistic Computation of NMR Shieldings and Spin-Spin Coupling Constants
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Relaxation Effects Involving Cross Correlation in Biomolecules
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Relaxation Effects of Chemical Exchange
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Relaxation Matrix Refinement of Nucleic Acids
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Relaxation Measurements in Imaging Studies
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Relaxation Measurements in Whole Body MRI: Clinical Utility
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
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0
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0
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0
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Relaxation Mechanisms: Magnetization Modes
|
0
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0
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0
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0
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0
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0
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0
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0
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0
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Relaxation Processes in Coupled-Spin Systems
|
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0
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Relaxation Processes: Cross Correlation and Interference Terms
|
0
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0
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0
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0
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0
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0
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0
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Relaxation Theory for Quadrupolar Nuclei
|
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0
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0
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0
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0
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0
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Relaxation Theory: Density Matrix Formulation
|
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0
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0
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0
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0
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Relaxation of Coupled Spins from Rotational Diffusion
|
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0
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0
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0
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0
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0
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Relaxation of Quadrupolar Nuclei Measured via Multiple Quantum Filtration
|
0
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0
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0
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0
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0
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0
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0
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0
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0
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Relaxation of Transverse Magnetization for Coupled Spins
|
0
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0
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0
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0
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0
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0
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0
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0
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0
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0
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0
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0
|
Relaxation: An Introduction
|
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0
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0
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0
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0
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0
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0
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0
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0
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0
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0
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0
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0
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Relaxometry of Tissue
|
0
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0
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0
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0
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0
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0
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0
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0
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0
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0
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0
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0
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0
|
Relayed Coherence Transfer Experiments
|
0
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0
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0
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0
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0
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0
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0
|
1
|
0
|
1
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0
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0
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0
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Reorientation in Crystalline Solids: Propeller-Like R3M Species
|
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0
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0
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0
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0
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0
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0
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1
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0
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1
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0
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0
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0
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Resistive and Permanent Magnets for Whole Body MRI
|
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0
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0
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0
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0
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0
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0
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Rheo-NMR: A New Window on the Rheology of Complex Fluids
|
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0
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0
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0
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0
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0
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0
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0
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0
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Ribosomal RNA
|
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0
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0
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0
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0
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0
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0
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0
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0
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0
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0
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0
|
Richards, Rex: Development of NMR in Oxford
|
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0
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0
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0
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0
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0
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0
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0
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Rigden, John S.: Rabi's Resonance Method
|
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0
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0
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0
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0
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Roberts, John D.: A Personal NMR Odyssey
|
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0
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Rogers, Emery H.: Remembrance of NMR Things Past
|
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0
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0
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0
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Rotating Frame Methods for Spectroscopic Localization
|
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0
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0
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0
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Rotating Frame SpinLattice Relaxation Off-Resonance
|
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0
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0
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0
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0
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0
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0
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0
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0
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0
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0
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Rotating Solids
|
0
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0
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0
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0
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0
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0
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0
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0
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0
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0
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0
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|
Rotational Resonance in Biology
|
0
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0
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0
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0
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0
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0
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0
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0
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0
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0
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|
Ruby NMR Laser
|
0
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0
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0
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0
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0
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0
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0
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0
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0
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0
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Rudimentary NMR: The Classical Picture
|
0
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0
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0
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0
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0
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0
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0
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0
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0
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0
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0
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0
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SH2 Domain Structures
|
0
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0
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0
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0
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0
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0
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0
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0
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0
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0
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0
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0
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0
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SQUIDs
|
0
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0
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0
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0
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0
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0
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0
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0
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0
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0
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0
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0
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0
|
Saccharide-Protein Interactions
|
0
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0
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0
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0
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0
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0
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0
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0
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0
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0
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0
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0
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0
|
Saika, A.: Early Applications of NMR in Chemistry and Theoretical Calculations of NMR Parameters Related to the Electronic Structure of Molecules
|
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0
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0
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0
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0
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0
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0
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Samoson, Ago: Development of High-Resolution NMR of Quadrupole Nuclei in Solids
|
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0
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0
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0
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0
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Sanders, Jeremy K. M.: Luck, Ignorance, and Daring in Research: NMR Spectroscopy of Nature's Plastics and Spiders' Webs
|
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0
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0
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0
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0
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0
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0
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0
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Satellite Transition NMR Spectroscopy of Half-Integer Quadrupolar Nuclei under Magic-Angle Spinning
|
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0
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0
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0
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0
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0
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0
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0
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|
Saunders, Martin: The First NMR Spectrum of a Protein
|
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0
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0
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0
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0
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0
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0
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0
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0
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0
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|
Schaefer, Jacob: A Brief History of the Combination of Cross Polarization and Magic Angle Spinning
|
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0
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0
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0
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Schaefer, Ted: A Canadian Prairie Youth Discovers the Delights of NMR
|
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0
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0
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0
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0
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0
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0
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0
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0
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|
Schneider, William G.: Early Research on High-Resolution Proton Magnetic Resonance
|
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0
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0
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|
Scott, A. Ian: 13CNMR Studies of Biosynthesis. A Quarter Century in Retrospect
|
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0
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0
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0
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0
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0
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0
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0
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|
Seelig, Joachim: NMR and Membrane Structure
|
0
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0
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0
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0
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0
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0
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0
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0
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0
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0
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0
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0
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0
|
Selective Excitation Methods: Artifacts
|
0
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0
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0
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0
|
0
|
0
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0
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0
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0
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0
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0
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0
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0
|
Selective Excitation in MRI and MR Spectroscopy
|
0
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0
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0
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0
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0
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0
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0
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0
|
0
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0
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0
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0
|
0
|
Selective HartmannHahn Transfer in Liquids
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
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0
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0
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0
|
0
|
Selective NOESY
|
0
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0
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0
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0
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0
|
0
|
0
|
1
|
0
|
1
|
0
|
0
|
0
|
Selective Pulses
|
0
|
0
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0
|
0
|
0
|
0
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0
|
0
|
0
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0
|
2
|
0
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0
|
Selective Relaxation Techniques in Biological NMR
|
0
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0
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0
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0
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0
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0
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0
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0
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0
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0
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0
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0
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0
|
Semiempirical Chemical Shift Calculations
|
0
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0
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0
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0
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0
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0
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0
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0
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0
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0
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|
Sensitivity Enhancement Utilizing Parahydrogen
|
0
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0
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0
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0
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0
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0
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0
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0
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0
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0
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0
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0
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0
|
Sensitivity of Whole Body MRI Experiments
|
0
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0
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0
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0
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0
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0
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0
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0
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0
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0
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0
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0
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0
|
Sensitivity of the NMR Experiment
|
0
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0
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0
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0
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0
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0
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0
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0
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0
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0
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0
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0
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0
|
Sergeyev, Nickolai M.: Isotope Effects On SpinSpin Coupling Constants
|
0
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0
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0
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0
|
0
|
0
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0
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0
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0
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0
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0
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0
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0
|
Shaped Pulses
|
0
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0
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0
|
0
|
0
|
0
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0
|
1
|
0
|
1
|
0
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0
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0
|
Shapiro, Bernard L.: The NMR Newsletter
|
0
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0
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0
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0
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0
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0
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0
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0
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0
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0
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0
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0
|
Shaw, Derek: From 5-mm Tubes to Man. The Objects Studied by NMR Continue to Grow
|
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0
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0
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0
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0
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0
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0
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|
Sheppard, Norman: NMRSome Reminiscences
|
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0
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0
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0
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0
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0
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0
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0
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0
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0
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0
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0
|
0
|
Shielding Calculations
|
0
|
0
|
0
|
0
|
0
|
0
|
1
|
1
|
2
|
3
|
0
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0
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0
|
Shielding Calculations: IGLO Method
|
0
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0
|
0
|
0
|
0
|
0
|
0
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0
|
0
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0
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0
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0
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0
|
Shielding Calculations: LORG and SOLO Approaches
|
0
|
0
|
0
|
0
|
0
|
0
|
1
|
0
|
0
|
0
|
0
|
0
|
0
|
Shielding Calculations: Perturbation Methods
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Shielding Tensor Calculations
|
0
|
0
|
0
|
0
|
0
|
0
|
1
|
0
|
0
|
0
|
0
|
0
|
0
|
Shielding Theory: GIAO Method
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Shielding in Small Molecules
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Shielding: Overview of Theoretical Methods
|
0
|
0
|
0
|
0
|
0
|
0
|
1
|
0
|
0
|
0
|
0
|
0
|
0
|
Shimming of Superconducting Magnets
|
0
|
0
|
0
|
0
|
0
|
0
|
1
|
0
|
0
|
0
|
0
|
0
|
0
|
Shoolery, James N.: High-Resolution NMR: A Dream Come True
|
0
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0
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0
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0
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0
|
0
|
0
|
0
|
0
|
0
|
0
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0
|
0
|
Shulman, Robert G.: My Years in NMR
|
0
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0
|
0
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0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Sideband Analysis in Magic Angle Spinning NMR of Solids
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Silica Surfaces: Characterization
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
1
|
1
|
0
|
0
|
0
|
Silicon-29 NMR
|
0
|
0
|
0
|
0
|
0
|
0
|
1
|
0
|
0
|
0
|
0
|
0
|
0
|
Silicon-29 NMR of Solid Silicates
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Single Voxel Localized Proton NMR Spectroscopy of Human Brain In Vivo
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Single Voxel Whole Body Phosphorus MRS
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Skeletal Muscle Evaluated by MRI
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Slichter, Charles P.: Early Days of Magnetic Resonance Studies of Solids
|
0
|
0
|
0
|
0
|
0
|
0
|
1
|
0
|
0
|
0
|
1
|
0
|
0
|
Slow and Ultraslow Motions in Biology
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Smith, Ian C. P.: Deuterium NMR: Reflections on its Evolution
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
1
|
0
|
0
|
Sodium-23 Magnetic Resonance of Human Subjects
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Sodium-23 NMR
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Solid Biopolymers
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Solid Polymers: Shielding and Electronic States
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Solid State Probe Design
|
0
|
0
|
0
|
0
|
0
|
0
|
1
|
0
|
0
|
0
|
0
|
0
|
0
|
Sonicated Membrane Vesicles
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Spatial Encoding Using Multiple rf Coils: SMASH Imaging and Parallel MRI
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Spatial Localization Techniques for Human MRS
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Spectral Editing Techniques: Hydrocarbon Solids
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Spectrometers: A General Overview
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Spectroscopic Studies of Animal Tumor Models
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
1
|
1
|
2
|
0
|
0
|
0
|
Spiess, Hans Wolfgang: Multidimensional Solid State NMR of Polymers
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Spin Diffusion in Solids
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Spin Echo Spectroscopy of Liquid Samples
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
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0
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0
|
Spin Warp Data Acquisition
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Spin Warp Method: Artifacts
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
SpinRotation Relaxation Theory
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Spinning Liquid Crystalline Samples
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Spinning Sideband Analysis for Spin-1/2 Nuclei
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
1
|
0
|
1
|
0
|
0
|
0
|
Spiral Scanning Imaging Techniques
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Steady-State Techniques for Low Sensitivity and Slowly Relaxing Nuclei
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Stejskal, Edward O.: Reminiscences about the Development of Pulsed Field Gradient, Spin-Echo NMR (PFGSE NMR)
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
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0
|
0
|
0
|
Stereochemistry and Long Range Coupling Constants
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Sternhell, S.: Development of NMR Spectroscopy as a Structural Tool
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
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0
|
0
|
0
|
0
|
Stochastic Excitation
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
1
|
0
|
0
|
Strange, John H.: Echoes of the Past
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Stray Field (STRAFI) NMR: Imaging in Large Field-Gradients
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Structural Analysis Enhancements for Natural Products
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Structural and Dynamic Characterization of Soft Polymers by Solid State NMR and Field Gradient NMR
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Structural and Functional MR in Epilepsy
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Structure Determination of Solid Proteins Using MAS and Isotopic Enrichment
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Structure and Dynamics of Disordered Proteins
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Structure and Dynamics of Proteins Adsorbed to Biomaterial Interfaces
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
1
|
1
|
0
|
0
|
0
|
Structure of Rigid Molecules Dissolved in Liquid Crystalline Solvents
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Structures of Larger Proteins, ProteinLigand, and ProteinDNA Complexes by Multidimensional Heteronuclear NMR
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Sulfur, Selenium, and Tellurium NMR
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Supercritical Fluids
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Supported Metal Catalysts
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Supramolecular Chemistry
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Surface Coil NMR: Detection with Inhomogeneous Radiofrequency Field Antennas
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Surface and Other Local Coils for In Vivo Studies
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Susceptibility Effects in Whole Body Experiments
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Susceptibility and Diffusion Effects in NMR Microscopy
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Sutcliffe, Leslie H.: A Career in Magnetic Resonance Spectroscopy
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Sykes, Brian D.: When Biochemistry became Chemistry
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Symmetry-Based Pulse Sequences in Magic-Angle Spinning Solid-State NMR
|
0
|
0
|
0
|
0
|
0
|
0
|
1
|
1
|
0
|
1
|
0
|
0
|
0
|
Synthetic Peptides
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Systemically Induced Encephalopathies: Newer Clinical Applications of MRS
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
TOCSY in ROESY and ROESY in TOCSY
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
1
|
0
|
1
|
0
|
0
|
0
|
Temperature Measurement In Vivo Using NMR
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Temporomandibular Joint MRI
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Temussi, Piero Andrea: NMR Studies of Flexible Bioactive Molecules
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Terrestrial Magnetic Field NMR
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Thallium NMR
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
The Development of NMR
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
1
|
1
|
2
|
0
|
0
|
0
|
Therapy Monitoring by MRI
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Thermal Therapies in the Body Monitored by MRI
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Thermodynamics of Nuclear Magnetic Ordering
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Thermometry
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Thioredoxin and Glutaredoxin
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Three- and Four-Dimensional Heteronuclear Magnetic Resonance
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
1
|
0
|
1
|
1
|
0
|
0
|
Three-Dimensional HMQC-NOESY, NOESY-HMQC, and NOESY-HSQC
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
1
|
0
|
1
|
0
|
0
|
0
|
Three-Dimensional Molecular Structures in Uniformly Labelled Solids Determined Using Rotational Resonance in the Tilted Rotating Frame
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
2
|
0
|
2
|
0
|
0
|
0
|
Through-Bond Experiments in Solids
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Time-Resolved Solid State NMR of EnzymeSubstrate Interactions
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Time-of-Flight Method of MRA
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
1
|
0
|
1
|
0
|
0
|
0
|
Tissue Behavior Measurements Using Phosphorus-31 NMR
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Tissue NMR Ex Vivo
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Tissue Water and Lipids: Chemical Shift Imaging and Other Methods
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Tissue and Cell Extracts MRS
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Torchia Dennis A.: A Fortuitous Transformation
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Torrey, Henry C.: Precursive and Early Work on NMR
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Transferrins
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Transverse Relaxation-Optimized NMR Spectroscopy with Biomacromolecular Structures in Solution
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Tritium NMR
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Tritium NMR in Biology
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Two-Dimensional CarbonHeteroelement Correlation
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
1
|
0
|
1
|
0
|
0
|
0
|
Two-Dimensional J-Resolved Spectroscopy
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
1
|
0
|
1
|
0
|
0
|
0
|
Two-Dimensional Methods of Monitoring Exchange
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
1
|
0
|
1
|
0
|
0
|
0
|
Two-Dimensional NMR of Molecules Oriented in Liquid Crystalline Phases
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
1
|
0
|
1
|
0
|
0
|
0
|
Two-Dimensional Powder Correlation Methods
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
2
|
0
|
0
|
Ultraslow Motions in Solids
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
1
|
0
|
0
|
Ultrasonic Irradiation and NMR
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Vanadium Catalysts: Solid State NMR
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Variable Angle Sample Spinning
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Veeman, Wiebren S.: Personal Reflections on Solid State NMR in the Early Days
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Vega, Alexander J.: Beginnings, Vaughan, and Solid State NMR
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Vega, Shimon: From Zero Field via Double Quantum to Dressed States
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Vicinal 1H,1H Coupling Constants in Cyclic π-Systems
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Vicinal Coupling Constants and Conformation of Biomolecules
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Vitamin B12
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Vold, Regitze R.: Bits and Pieces from My NMR Memoirs
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Vold, Robert L.: Reflections
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Wüthrich, Kurt: NMR Structures of Biological Macromolecules
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Wagner, Gerhard: NMR of Proteins
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Warren, Warren S.: The NMROptics Connection
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Water Signal Suppression in NMR of Biomolecules
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Water Suppression in Proton MRS of Humans and Animals
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Waugh, John S.: Alchemy of Nuclear Spins
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Wavelet Encoding of MRI Images
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Weaver, Harry E.: Historical Comments on the Early Years of Superconducting NMR
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Webb, Graham A.: My Developing Interest in NMR Spectroscopy
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Wehrli, Felix W.: From Carbon-13 to Quadrupolar Nuclei NMR and Medical ImagingReflections
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Weitekamp, Daniel P.: Sensitivity Enhancement Through Spin Statistics
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Well Logging
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Whiffen, David H.: Forty-Nine Years Watching NMR
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Whole Body MRI: Local and Inserted Gradient Coils
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Whole Body MRI: Strategies Designed to Improve Patient Throughput
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Whole Body MRI: Strategies for Improving Imaging Efficiency
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Whole Body Machines: NMR Phased Array Coil Systems
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Whole Body Magnetic Resonance Angiography
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Whole Body Magnetic Resonance Artifacts
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Whole Body Magnetic Resonance Spectrometers: All-Digital Transmit/Receive Systems
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Whole Body Magnetic Resonance: Fast Low-Angle Acquisition Methods
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Whole Body Studies Involving Spin-Lattice Relaxation in the Rotating Frame
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Whole Body Studies: Impact of MRS
|
0
|
0
|
0
|
0
|
0
|
0
|
1
|
0
|
0
|
0
|
0
|
0
|
0
|
Wide Lines for Nonquadrupolar Nuclei
|
0
|
0
|
0
|
0
|
0
|
0
|
1
|
0
|
0
|
0
|
2
|
0
|
0
|
Williams, R. J. P.: The Use of NMR in Biology: Personal Reflections
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Witanowski, Michal: A Short Story about Nitrogen NMR
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Woessner, Donald E.: In a Maze in NMR
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Wood and Wood Chars
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Wrackmeyer, Bernd: A Personal Retrospect of Multinuclear Magnetic Resonance in Liquids
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Yannoni, Costantino S.: A Magnetic Resonance Potpourri
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Young, Ian R.: EMI's Venture into NMRAn Industrial Saga
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
1
|
0
|
1
|
0
|
0
|
0
|
Zero Field NMR
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Zinc Fingers
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
pH Measurement In Vivo in Whole Body Systems
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
van derWaals, J. H.: Gorter's Footprints on the Trail That Led to Magnetic Resonance
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
0
|
Total
|
0
|
0
|
0
|
0
|
0
|
0
|
71
|
101
|
64
|
165
|
61
|
0
|
0
|