About the Book
Please note that the content of this book primarily consists of articles available from Wikipedia or other free sources online. Pages: 74. Chapters: Magnetometer, Protein nuclear magnetic resonance spectroscopy, Nuclear magnetic resonance in porous media, Relaxation, Solid-state nuclear magnetic resonance, Residual dipolar coupling, EAST-NMR, Proton NMR, Chemical shift, Bloch equations, Gyromagnetic ratio, Nuclear magnetic resonance crystallography, NMR spectra database, Topicity, Correlation spectroscopy, Collaborative Computing Project for NMR, Nuclear magnetic resonance decoupling, Carbon-13 NMR, Earth's field NMR, Aromatic ring current, J-coupling, Spin echo, Kurt W thrich, Carbon-13 NMR satellite, Magnetic resonance force microscopy, CIDNP, Carbohydrate NMR, In vivo magnetic resonance spectroscopy, Nuclear Overhauser effect, Magic angle spinning, Spinlock SRL, Structure based assignment, Nuclear quadrupole resonance, Heteronuclear single quantum coherence, Nuclear orientation, Karplus equation, HNCOCA experiment, Phosphorus-31 NMR, HNCA experiment, Shim, Magnetic dipole-dipole interaction, Athinoula A. Martinos Center for Biomedical Imaging, Motional narrowing, Transverse relaxation optimized spectroscopy, Free induction decay, Robinson oscillator, Sequential walking, NMR spectroscopy of stereoisomers, Ernst angle, Spin chemistry, Proton-enhanced nuclear induction spectroscopy, Gradient enhanced NMR spectroscopy, Exclusive correlation spectroscopy, Insensitive nuclei enhanced by polarization transfer, Pople notation, NMR database method, Pulse sequence, Fluorine-19 NMR, Pulsed field gradient, Deuterium NMR, Electric field NMR, Pake doublet, Zero field NMR, Low field NMR, Residual chemical shift anisotropy, Relaxometry. Excerpt: Nuclear magnetic resonance (NMR) is a physical phenomenon in which magnetic nuclei in a magnetic field absorb and re-emit electromagnetic radiation. This energy is at a specific resonance frequency which depends on the strength of th...