Books on the topic 'Nuclear magnetic resonance. Chemistry, Physical and theoretical'

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1

Vashman, Andreĭ Aleksandrovich. I͡A︡dernai͡a︡ magnitnai͡a︡ relaksat͡s︡ionnai͡a︡ spektroskopii͡a︡. Moskva: Ėnergoatomizdat, 1986.

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2

Kazanʹ, Russia) Vserossiĭskiĭ seminar Novye dostizhenii︠a︡ I︠A︡MR v. strukturnykh issledovanii︠a︡kh (2nd 1995. II Vserossiĭskiĭ seminar Novye dostizhenii︠a︡ I︠A︡MR v strukturnykh issledovanii︠a︡kh: S uchastiem zarubezhnykh uchenykh : Kazanʹ, 5-7 apreli︠a︡ 1995 goda : materialy seminara. Kazanʹ: Kazanskiĭ gos. universitet, 1995.

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3

Lenk, R. Fluctuations, diffusion, and spin relaxation. Amsterdam: Elsevier, 1986.

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4

Vladislav, Orekhov, and SpringerLink (Online service), eds. Novel Sampling Approaches in Higher Dimensional NMR. Berlin, Heidelberg: Springer Berlin Heidelberg, 2012.

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5

Marshall, Alan G. Fourier transforms in NMR, optical, and mass spectrometry: A user's handbook. Amsterdam: Elsevier, 1990.

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6

Spectroscopic techniques and hindered molecular motion. Boca Raton: CRC Press, 2012.

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7

Rudin, M. In-Vivo Magnetic Resonance Spectroscopy II: Localization and Spectral Editing. Berlin, Heidelberg: Springer Berlin Heidelberg, 1992.

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8

Rudin, M. In-Vivo Magnetic Resonance Spectroscopy III: In-Vivo MR Spectroscopy: Potential and Limitations. Berlin, Heidelberg: Springer Berlin Heidelberg, 1992.

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9

Fleischer, U. Deuterium and Shift Calculation. Berlin, Heidelberg: Springer Berlin Heidelberg, 1991.

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10

Alfred, Benzon Symposium (26th 1987 Copenhagen Denmark). NMR spectroscopy in drug research: Proceedings of the Alfred Benzon Symposium 26, held at the premises of the Royal Danish Academy of Sciences and Letters, Copenhagen 16-20 August 1987. Copenhagen: Munksgaard, 1988.

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11

Wehrli, F. W. Interpretation of carbon-13 NMR spectra. 2nd ed. Chichester: Wiley, 1988.

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12

Nuclear Magnetic Resonance Studies Of Interfacial Phenomena. CRC Press, 2013.

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13

Soulsby, David, Laura J. Anna, and Anton S. Wallner. NMR Spectroscopy in the Undergraduate Curriculum. American Chemical Society, 2013.

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14

Soulsby, David, Laura J. Anna, and Anton S. Wallner. NMR Spectroscopy in the Undergraduate Curriculum: Upper-Level Courses and Across the Curriculum. Oxford University Press, Incorporated, 2018.

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15

Soulsby, David, Laura J. Anna, and Anton S. Wallner. NMR Spectroscopy in the Undergraduate Curriculum. Oxford University Press, Incorporated, 2017.

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16

Marshall, A. G., and F. R. Verdun. Fourier Transforms in NMR, Optical, and Mass Spectrometry. Elsevier Science, 1989.

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17

Seco, Josi M., Emilio Quiqoa, and Ricardo Riguera. The Assignment of the Absolute Configuration by NMR using Chiral Derivatizing Agents. Oxford University Press, 2015. http://dx.doi.org/10.1093/oso/9780199996803.001.0001.

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Abstract:
Nuclear magnetic resonance spectroscopy (NMR spectroscopy) is a research technique that uses the magnetic properties of atomic nuclei to determine physical and chemical properties of atoms or the molecules in which they are contained. Proton NMR (1H NMR) is a technique that applies NMR spectroscopy specifically to the hydrogen-1 nuclei within the molecules of a substance, in order to determine the structure of that substance's molecules. The use of 1H NMR for the assignment of absolute configuration of organic compounds is a well-established technique. Recent research describes the technique's application to mono-, bi- and trifunctional compounds. In addition, several new auxiliary reagents, mono- and biderivatization procedures, on-resin methodologies and more recently, the use of 13C NMR, have been introduced to the field. In The Assignment of the Absolute Configuration by NMR Using Chiral Derivatizing Agents: A Practical Guide, eminent Professor of Organic Chemistry Ricardo Riguera organizes this cutting-edge NMR research. Professor Riguera offers a short and usable guide that introduces the reader to the research with a plethora of details and examples. The book briefly explains the theoretical aspects necessary for understanding the methodology, dedicating most of its space to covering the practical aspects of the assignment, with examples and spectra taken from the authors' own experiments. Upper-level undergraduates, graduate students, and chemical researchers will find this guide useful for their studies and practice.
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18

Que, Lawrence. Physical Methods in Bioinorganic Chemistry. University Science Books, 2000.

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19

(Editor), Marcel Gielen, Rudolph Willem (Editor), and Bernd Wrackmeyer (Editor), eds. Fluxional Organometallic and Coordination Compounds (Physical Organometallic Chemistry). Wiley, 2004.

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20

Physical Methods in Bioinorganic Chemistry: Spectroscopy and Magnetism. University Science Books, 2000.

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21

(Editor), J. Fraissard, and Olga Lapina (Editor), eds. Magnetic Resonance in Colloid and Interface Science (NATO Science Series II: Mathematics, Physics and Chemistry). Springer, 2003.

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22

(Editor), J. Fraissard, and Olga Lapina (Editor), eds. Magnetic Resonance in Colloid and Interface Science (NATO Science Series II: Mathematics, Physics and Chemistry). Springer, 2003.

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23

Explosives Detection Using Magnetic And Nuclear Resonance Techniques Proceedings Of The Nato Advanced Research Workshop On Explosives Detection Using Magnetic And Nuclear Resonance Techniques St Petersburg Russia 79 July 2008. Springer, 2009.

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