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- W3206343429 abstract "This chapter describes the fundamentals of electron paramagnetic (spin) magnetic resonance (EPR, ESR), and nuclear magnetic resonance (NMR). The focus is on phenomena whose quantitative parameters are directly used to characterize the molecular structure, polarity and proticity and dynamics of water and ice, namely NMR chemical shift, the dipolar coupling between nuclear spins, fast‐field‐cycling (FFC) NMR effect, the isotropic Fermi contact, the nuclear Overhauser enhancement or effect (NOE), dynamic nuclear spin polarization, electron spin dipole–dipole interaction, free induction decay (FID), nuclear and electron spin–lattice and spin–spin relaxation, nuclear magnetization of chemically exchanging systems. The above physical phenomena form the basis of methods such as electron–electron double resonance (ELDOR) or double electron–electron resonance (DEER) or pulse electron nuclear double resonance (ENDOR) or multifrequency ESR (MF ESR) techniques, two-dimensional ESR (2D ESR), two-dimensional electron–electron double resonance (2D-ELDOR), ENDOR with circularly polarized radio frequency fields (CP-ENDOR), electron nuclear–nuclear resonance (double ENDOR), proton electron double resonance imaging (PEDRI), and electron nuclear–nuclear triple resonance (TRIPLE)." @default.
- W3206343429 created "2021-10-25" @default.
- W3206343429 creator A5024745735 @default.
- W3206343429 date "2021-01-01" @default.
- W3206343429 modified "2023-09-23" @default.
- W3206343429 title "Physical Methods for the Study of Biological Water. Magnetic Resonance" @default.
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- W3206343429 doi "https://doi.org/10.1007/978-3-030-82503-4_2" @default.
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