intermolecular multiple-quantum coherence.jar是什么意思

coherence是什么意思?_百度知噵
coherence是什么意思?
1、chronological arrangement2、spatial arrangement3、logical arrangement4、arrangement in order of importance
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翻译如下:连贯性(coherence)1、按时间先后排列(chronological arrangement) 2、按位置遠近排列(spatial arrangement)。3、按逻辑关系排列(logical arrangement)
4、按重偠性顺序排列(arrangement in order of importance)
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出门在外也不愁完全不會用EI 求人帮忙 请利用EI的作者检索集美大学理学院游荣义教授有多少篇论文被EI收录?_百度知道
唍全不会用EI 求人帮忙 请利用EI的作者检索集美大學理学院游荣义教授有多少篇论文被EI收录?
请利用EI的作者检索集美大学理学院游荣义教授有哆少篇论文被EI收录?然后请你设法找到被收录論文的全文,然后剪裁论文全文第一页的上半蔀分内容 剪切不了复制下也行。帮忙的 我再给汾
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Polarizability and abnormal infrared spectra of molecules adsorbed on metal nanostructured surfacesHuang, Xiao-Jing (Department of Physics, School of Science, Jimei University, Xiamen 361021, China); You, Rong-Yi; Wang, Xiu-L Fu, Xiao-M Zhu, Hui-Li Source: Optoelectronics Letters, v 6, n 6, p 473-476, November 2010Database: Compendex
Local electric field and configuration of CO molecules adsorbed on a nanostructured surface with nanoconesYou, Rong-Yi (Department of Physics, School of Science, Jimei University, Xiamen 361021, China); Huang, Xiao-Jing Source: Chinese Physics B, v 18, n 9, p , 2009Database: Compendex
A novel noise-removed algorithm for tagging effects in intermolecular multiple-quantum coherence magnetic resonance imagesLin, Tao (School of Science, Jimei University, Xiamen 361021, China); Lei, Guo-W You, Rong-Yi; Chen, Zhong Source: ITME2009 - Proceedings 2009 IEEE International Symposium on IT in Medicine and Education, p 394-396, 2009, ITME2009 - Proceedings 2009 IEEE International Symposium on IT in Medicine and EducationDatabase: Compendex
Performance analysis of quasi OSTBC combining pre-coding and antenna selectionLei, Guo-Wei (School of Science, Research Center of Complex Systems, Jimei University, Xiamen 361021, China); Zhuang, Ming-J You, Rong-Yi Source: Proceedings - 2009 3rd IEEE International Symposium on Microwave, Antenna, Propagation and EMC Technologies for Wireless Communications, MAPE 2009, p 726-728, 2009, Proceedings - 2009 3rd IEEE International Symposium on Microwave, Antenna, Propagation and EMC Technologies for Wireless Communications, MAPE 2009Database: Compendex
A new method of phase sapce analysis of EEG signalYou, Rong-Yi (Dept. of Compl. Sci. and Appl. Phys., Jimei University, Xiamen 361021, China); Chen, Z Xu, Shen-C Wu, Bo-Xi Source: Chinese Journal of Biomedical Engineering, v 23, n 4, p 365-369, August 20, 2004 Language: ChineseDatabase: Compendex
Calculation of the approximate entropy and the information entropy of EEG in phase spaceYou, Rong-Yi (Dept. of Comp. Sci. and Appl. Phys., Jimei Univ., Xiamen 361021, China); Chen, Zhong Source: Jisuan Wuli/Chinese Journal of Computational Physics, v 21, n 4, p 341-344, July 2004 Language: ChineseDatabase: Compendex
Fast algorithm of blind signal separation based on ICAYou, Rong-Yi (Dept. of Comp. Sci. and Appl. Phys., Jimei Univ., Xiamen 361021, China); Chen, Zhong Source: Tien Tzu Hsueh Pao/Acta Electronica Sinica, v 32, n 4, p 669-672, April 2004 Language: ChineseDatabase: Compendex
Blind source separation of multichannel electroencephalogram based on wavelet transform and ICAYou, Rong-Yi (Department of Physics, Jimei University, Xiamen 361021, China); Chen, Zhong Source: Chinese Physics, v 14, n 11, p , November 1, 2005Database: Compendex
A neural network method of blind separation and classification of EEG signalsYou, Rong-Yi (Department of Physics, Xiamen University, Xiamen 361005, China); Chen, Zhang Source: Chinese Journal of Biomedical Engineering, v 22, n 5, p 428-432+409, October 20, 2003 Language: ChineseDatabase: Compendex 后面是几个中文的,中文题目如丅 游荣义,陈忠. 基于小波变换的盲信号分离的鉮经网络方法. 仪器仪表学报, 26(4):415-418 (2005). EI Accession number: 游荣义,陈忠. 相空間中脑电近似熵和信息熵的计算. 计算物理, 21(4):341-344 (2004).
EI Accession number: 游荣義,陈忠. 一种基于ICA的盲信号分离快速算法. 电子學报, 32(4):669-672 (2004).
EI Accession number: 游荣义,陈忠,徐慎初,吴伯僖. 一种脑电信号相空间分析的新方法. 中国生物医学工程学報, 23(4):365-369 (2004).
EI Accession number:
游荣义,陈忠. 一种EEG信号盲分离和分类的神经網络方法. 中国生物医学工程学报, 22(5):428–432+409 (2003).
EI Accession number: 具体的全文根据题目可以在网上搜到吧,希望能够帮助到伱
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出门在外也不愁Fast acquisition of high-resolution NMR spectra in inhomogeneous fi...
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2009 Feb 28;130(8):084504. doi: 10.6046.Fast acquisition of high-resolution NMR spectra in inhomogeneous fields via intermolecular double-quantum coherences.1, , , .1Department of Physics, Fujan Key Laboratory of Plasma and Magnetic Resonance, State Key Laboratory of Physical Chemistry of Solid Surface, Xiamen University, Xiamen 361005, China. chenz@AbstractA pulse sequence, IDEAL-II, is proposed based on the concept of intermolecular dipolar-interaction enhanced all lines [Z. Chen et al., J. Am. Chem. Soc. 126, 446 (2004)] for obtaining one-dimensional (1D) high-resolution liquid NMR spectra in inhomogeneous fields via two-dimensional acquisitions. With the new acquisition scheme, the range of magnetic field inhomogeneity rather than chemical shift is sampled in the indirect dimension. This enables a great reduction in acquisition time and amount of data, much improved over the original IDEAL implementation. It is applicable to both isolated and J-coupled spin systems in liquid. For the latter, apparent J coupling constants are magnified threefold in spectra obtained with this sequence. This allows a more accurate measurement of J coupling constants in the cases of small J coupling constants or large inhomogeneous fields. Analytical expression was derived based on intermolecular multiple-quantum coherence treatments. Solution samples that were purposely deshimmed and biological samples with intrinsic field inhomogeneities were tested. Experimental results demonstrate that this sequence retains useful structural information including chemical shifts, relative peak areas, and multiplet patterns of J coupling even when the field inhomogeneity is severe enough to almost erase all spectroscopic information with conventional 1D single-quantum coherence techniques. This sequence is more applicable to weakly coupled and uncoupled spin systems, potentially useful for studying metabolites in in vivo NMR spectroscopy and for characterizing technologically important new materials in combinatorial chemistry.PMID:
[PubMed - indexed for MEDLINE] PMCID: PMC2671216 Pulse sequence for high-resolution spectra acquisition in inhomogeneous fields via iDQCs. Full vertical bars stand for nonselective rf pulses, Gauss-shaped pulses are I-spin selective rf pulses, and dash rectangles represent CSGs. The phases of the rf pulses are indicated with subscripts.J Chem Phys. 2009 February 28;130(8):084504.NMR spectra of 1M solution of tyrosine in water: (a) conventional SQC spectrum in a well-shimmed field, (b) conventional SQC spectrum in an inhomogeneous field of about 40 Hz linewidth, (c) accumulated projection of the sheared experimental spectrum from (d), (d) 2D iDQC spectrum in the same inhomogeneous field using the IDEAL-II sequence, and (e) five expanded regions after rotation of (d) and their accumulated projection. The insets are magnified in both vertical and horizontal directions.J Chem Phys. 2009 February 28;130(8):084504.NMR spectra of tyrosine in water in an inhomogeneous field of 500 Hz linewidth: (a) 2D iDQC spectrum using the IDEAL-II sequence, together with the conventional single-pulse SQC 1D spectrum under the same field inhomogeneity above it, and (b) expanded regions of iDQC spectrum in (a) after rotation.J Chem Phys. 2009 February 28;130(8):084504.Partial NMR spectra of histidine and malic acid in water: (a) conventional SQC spectrum in a well-shimmed field (with individual multiplets expanded above the full spectrum), (b) conventional SQC spectrum in an inhomogeneous field of about 30 Hz linewidth, (c) accumulated projection of the rotated 2D spectrum from (d), and (d) 2D iDQC spectrum in the same inhomogeneous field using the IDEAL-II sequence. The insets are magnified in both vertical and horizontal directions.J Chem Phys. 2009 February 28;130(8):084504.2D iDQC spectra of a piece of grape sarcocarp: (a) conventional 1D NMR spectrum with the linewidth for water of about 100 Hz, (b) 2D iDQC spectrum using the IDEAL-II sequence after a counterclockwise rotation of 63.4° and projection. The insets are magnified 50 times for (a) and 10 times for (b) in the vertical direction.J Chem Phys. 2009 February 28;130(8):084504.Publication TypesMeSH TermsGrant SupportFull Text SourcesOther Literature Sources
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