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    核磁氣 共嗚(NMR)의 基礎原理 및 應用 = The Basic Principles and Applications of NMR

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    https://www.riss.kr/link?id=A45025296

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    다국어 초록 (Multilingual Abstract) kakao i 다국어 번역

    All materials, whether living or nonliving, contain nuclei that are either protons or neutrons or a combination of both. Nuclear containing an odd number of protons or neutrons, or both in combination, possess a nuclear "spin" and "magnetic moment". Therefore, nuclear magnetic resonance (NMR) is the resonance phenomena of the magnetic moments of nuclei and is practically applicable to most solid-phase and fluid-phase (liquid or gas) materials.
    This paper presents the basic principles and applications of NMR techniques. NMR techniques has become an indispensable analytical method and tool in chemistry, physics, biophysics, material sciences and pharmacy etc.
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    All materials, whether living or nonliving, contain nuclei that are either protons or neutrons or a combination of both. Nuclear containing an odd number of protons or neutrons, or both in combination, possess a nuclear "spin" and "magn...

    All materials, whether living or nonliving, contain nuclei that are either protons or neutrons or a combination of both. Nuclear containing an odd number of protons or neutrons, or both in combination, possess a nuclear "spin" and "magnetic moment". Therefore, nuclear magnetic resonance (NMR) is the resonance phenomena of the magnetic moments of nuclei and is practically applicable to most solid-phase and fluid-phase (liquid or gas) materials.
    This paper presents the basic principles and applications of NMR techniques. NMR techniques has become an indispensable analytical method and tool in chemistry, physics, biophysics, material sciences and pharmacy etc.

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    목차 (Table of Contents)

    • Ⅰ. 序論
    • Ⅱ. NMR의 基礎理論
    • 1. 核磁氣共鳴 吸收
    • 2. 스핀-格子 緩和(Spin-lattice relaxation)
    • 3. 스핀-스핀 緩和(Spin-spin relaxation)
    • Ⅰ. 序論
    • Ⅱ. NMR의 基礎理論
    • 1. 核磁氣共鳴 吸收
    • 2. 스핀-格子 緩和(Spin-lattice relaxation)
    • 3. 스핀-스핀 緩和(Spin-spin relaxation)
    • 4. 核 4極子 相互作用(Nuclear quadrupole interaction)
    • 5 Chemical shift와 Knight shift
    • 6. Indirect nuclear spin coupling.
    • Ⅲ. 實驗裝置
    • 1. Single-coil bridge 方法
    • 2. Double-coil nuclear induction 方法
    • Ⅳ. NMR에 의한 測定 物理量과 應用
    • 1. 測定 物理量
    • 2. 應用
    • Ⅴ. 結論
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