Basic ¹H- and ¹³C-NMR spectroscopy /

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Bibliographic Details
Author / Creator:Balcı, Metin.
Edition:1st ed.
Imprint:Amsterdam ; Boston : Elsevier, 2005.
Description:1 online resource (xii, 427 pages) : illustrations
Language:English
Subject:
Format: E-Resource Book
URL for this record:http://pi.lib.uchicago.edu/1001/cat/bib/11153683
Hidden Bibliographic Details
ISBN:9780444518118
0444518118
9780080525532
0080525539
1281025429
9781281025425
9780444518125
0444518126
0444518126
9786611025427
6611025421
Digital file characteristics:text file
Notes:Numbers in title in superscript.
Includes bibliographical references (pages 413-417) and index.
English.
Print version record.
Summary:Nuclear Magnetic Resonance (NMR) spectroscopy is a powerful and theoretically complex analytical tool. Basic 1H- and 13C-NMR Spectroscopy provides an introduction to the principles and applications of NMR spectroscopy. Whilst looking at the problems students encounter when using NMR spectroscopy, the author avoids the complicated mathematics that are applied within the field. Providing a rational description of the NMR phenomenon, this book is easy to read and is suitable for the undergraduate and graduate student in chemistry. * Describes the fundamental principles of the pulse NMR experiment and 2D NMR spectra * Easy to read and written with the undergraduate and graduate chemistry student in mind * Provides a rational description of NMR spectroscopy without complicated mathematics.
Other form:Print version: Balcı, Metin. Basic ¹H- and ¹³C-NMR spectroscopy. 1st ed. Amsterdam ; Boston : Elsevier, 2005 0444518118 9780444518118
Standard no.:9780444518118

MARC

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520 |a Nuclear Magnetic Resonance (NMR) spectroscopy is a powerful and theoretically complex analytical tool. Basic 1H- and 13C-NMR Spectroscopy provides an introduction to the principles and applications of NMR spectroscopy. Whilst looking at the problems students encounter when using NMR spectroscopy, the author avoids the complicated mathematics that are applied within the field. Providing a rational description of the NMR phenomenon, this book is easy to read and is suitable for the undergraduate and graduate student in chemistry. * Describes the fundamental principles of the pulse NMR experiment and 2D NMR spectra * Easy to read and written with the undergraduate and graduate chemistry student in mind * Provides a rational description of NMR spectroscopy without complicated mathematics. 
505 0 |a CHAPTER 1 -- Introduction. -- -- CHAPTER 2 -- Resonance Phenomena. -- -- CHAPTER 3 -- Chemical Shift. -- -- CHAPTER 4 -- Spin-Spin Splitting in the 1H-NMR. -- -- CHAPTER 5 -- Spin-Spin Splitting to Different Protons. -- -- CHAPTER 6 -- Spin Systems: Analysis of the 1H NMR Spectra. -- -- CHAPTER 7 -- Resonance Experiments: Simplification of the NMR Spectra. -- -- CHAPTER 8 -- Dynamic NMR Spectroscopy. -- -- CHAPTER 9 -- Introduction. -- -- CHAPTER 10 -- Absorption and Resonance. -- -- CHAPTER 11 -- Pulse NMR Spectroscopy. -- -- CHAPTER 12 -- Chemical Shift. -- -- CHAPTER 13 -- 13C Chemical Shifts of Organic Compounds. -- -- CHAPTER 14 -- Spin-Spin Coupling. -- -- CHAPTER 15 -- Multiple Pulse NMR Experiments. -- -- CHAPTER 16 -- Two-Dimensional (2D) NMR Spectroscopy. 
500 |a Numbers in title in superscript. 
504 |a Includes bibliographical references (pages 413-417) and index. 
505 0 |a pt. I. ¹H-NMR spectroscopy. Introduction ; Resonance phenomena ; Chemical shift ; Spin-spin splitting in ¹H-NMR spectra ; Spin-spin splitting in different protons ; Spin systems: analysis of the ¹H-NMR spectra ; NMR shift reagents and double resonance experiments: simplification of the NMR spectra ; Dynamic NMR spectroscopy. -- pt. II ¹³C-NMR spectroscopy. Introduction ; Absorption and resonance ; Pulse NMR spectroscopy ; Chemical shift ; ¹³C chemical shifts of organic compounds ; Spin-spin coupling ; Multiple-pulse NMR experiments. -- pt. III. Two-dimensional (2D) NMR spectroscopy. 
588 0 |a Print version record. 
546 |a English. 
650 0 |a Nuclear magnetic resonance spectroscopy.  |0 http://id.loc.gov/authorities/subjects/sh85093008 
650 6 |a Spectroscopie de la résonance magnétique nucléaire. 
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