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1)  ferromagnetic resonance spectrum
铁磁共振谱
2)  ferromagnetic resonance spectrometer
铁磁共振谱仪
3)  ferromagnetic resonance
铁磁共振
1.
Fundamental physical properties and ferromagnetic resonance of magnetic nano-film;
磁性纳米膜基本物性和铁磁共振研究
2.
Magnetic porperties and effect of ferromagnetic resonance of Li-Zn-Cu ferrite;
Li—Zn—Cu系铁氧体磁性和铁磁共振的研究
3.
The analysis of the ferromagnetic resonance and linewidth of resonance on magnetic nanoparticle system;
磁性纳米颗粒系统的铁磁共振和共振线宽分析
4)  FMR
铁磁共振
1.
A STUDY OF GMR AND FMR ON Co/Cu MULTILAYERS FABRICATED UNDER DIFFERENT CONDITIONS;
不同制备条件下的Co/Cu多层膜的巨磁电阻及铁磁共振研究
2.
In FMR,the uniform mode and "optical"mode above uniform mode were observed.
在铁磁共振实验中 ,观察到了一致进动模 (uniform m ode)和高场光学模 (optical mode)的共振吸收峰。
5)  nuclear magnetic resonance
核磁共振谱
1.
The intermediate was purified through extraction and crystallization and characterized by mass spectra, element analysis, Fourier transform infrared spectra and ~1H nuclear magnetic resonance spectroscopy, the result indicats that the intermediate of the reaction is 5-amino-naphthalene-1-carbamate (ANC) with a molecular weight of.
本文利用萃取、结晶等分离手段提纯出了该中间产物,并通过质谱、元素分析、红外光谱以及核磁共振谱等分析方法对其组成和结构进行了测定,结果表明该中间产物的分子量为216,组成为C12H12N2O2,结构为5-氨基-萘基-1-氨基甲酸甲酯。
2.
1H NMR (nuclear magnetic resonance), 13 C NMR, distorsionless enhancement by polarization transter (DEPT) and a series of 2D NMR techniques, including heteronuclear multiple quantrum correlation (HMQC), heteronuclear multiple bond correlation (HMBC) and 1H-1H correlation spectrometry (COSY), were applied to assign all carbon and proton signals of the product.
以18β-甘草次酸为原料,合成了一种新的甘草次酸盐类衍生物——精氨酸甘草次酸,利用1HNMR、13CNMR、DEPT、1H-1HCOSY、HMQC、HMBC等1D和2DNMR技术对其碳和氢质子信号进行了全归属,并通过与两种原料化合物核磁共振谱数据的对比,揭示了该成盐反应的作用机制和产物的结构类型。
3.
The ultraviolet spectrum,infrared spectrum,1D and 2D nuclear magnetic resonance (1H NMR,13 C NMR,1H-1H COSY,HMQC and HMBC) spectra and mass spectra of new drug lomerizine dihydrochloride were reported and interpreted.
对盐酸洛美利嗪的紫外光谱(UV)、红外光谱(IR)、一维及二维核磁共振谱(1HNMR、13CNMR、1H-1HCOSY、HMQC、HMBC)以及质谱(MS)进行了解析和报道,对其所有的NMR谱信号进行了归属,同时讨论了质谱的主要碎片离子的可能的裂解方式和红外特征吸收峰所对应的官能团的振动形式。
6)  magnetic resonance spectrum
磁共振波谱
1.
Methods:Magnetic resonance spectrum was determined in 36 patients with temporal epilepsy.
目的 :探讨磁共振波谱 (magneticresonancespectrum ,MRS)检查对颞叶癫患者致灶的定位价值。
补充资料:铁磁共振
      见磁共振。
  

说明:补充资料仅用于学习参考,请勿用于其它任何用途。
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