2019•Unpublished venueRequires access

Introduction to nuclear magnetic resonance and magnetic relaxation

Сергей Полулях, S. N. Polulyakh

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Abstract

Textbook represents the basic principles of the magnetic resonance theory. Classical such well as quantum mechanicals approaches to describe magnetic resonance are bring. Magnetic relaxation mechanisms are considered taken into account fluctuations of local magnetic fields on nuclei. The influence of magnetic dipole interactions and influence of electric quadrupole interactions on the magnetic resonance spectra is described. The text describes the fine structure of the magnetic resonance spectra that is caused by chemical shift. Significant attention is paid to the experimental methods of magnetic resonance including the peculiarities of spin-echo signals formation. This is a textbook intended for undergraduate students and undergraduates in physical and physical-technical specialties of universities.

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Textbook represents the basic principles of the magnetic resonance theory. Classical such well as quantum mechanicals approaches to describe magnetic resonance are bring. Magnetic relaxation mechanisms are considered taken into account fluctuations of local magnetic fields on nuclei. The influence of magnetic dipole interactions and influence of electric quadrupole interactions on the magnetic resonance spectra is described. The text describes the fine structure of the magnetic resonance spectra that is caused by chemical shift. Significant attention is paid to the experimental methods of magnetic resonance including the peculiarities of spin-echo signals formation. This is a textbook intended for undergraduate students and undergraduates in physical and physical-technical specialties of universities.

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Available abstract

Textbook represents the basic principles of the magnetic resonance theory. Classical such well as quantum mechanicals approaches to describe magnetic resonance are bring. Magnetic relaxation mechanisms are considered taken into account fluctuations of local magnetic fields on nuclei. The influence of magnetic dipole interactions and influence of electric quadrupole interactions on the magnetic resonance spectra is described. The text describes the fine structure of the magnetic resonance spectra that is caused by chemical shift. Significant attention is paid to the experimental methods of magnetic resonance including the peculiarities of spin-echo signals formation. This is a textbook intended for undergraduate students and undergraduates in physical and physical-technical specialties of universities.

Key concepts: Magnetic dipole, Spin echo, Magnetic resonance imaging, Relaxation (psychology), Nuclear magnetic resonance, Physics, Condensed matter physics, Resonance (particle physics)

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