MTU Library Catalogue

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Introduction to spectroscopy / by James Vyvyan, Donald L. Pavia, Gary Lampman, George Kriz.

By: Vyvyan, James R [author.].
Contributor(s): Pavia, Donald L [author.] | Lampman, Gary M [author.] | Kriz, George S [author.].
Material type: materialTypeLabelBookPublisher: Australia : Brooks/Cole, 2015Copyright date: ©2015Edition: Fifth edition.Description: xvii, 690 pages, [74] variously numbered pages : illustrations ; 25 cm.Content type: text | still image Media type: unmediated Carrier type: volumeISBN: 9781285460123 (paperback) .Subject(s): Spectrum analysisDDC classification: 547.3 PAV
Contents:
1. Molecular Formulas and What Can Be Learned from Them -- 2. Infrared Spectroscopy.3. Nuclear Magnetic Resonance Spectroscopy -- Part One: Basic Concepts -- 4. Nuclear Magnetic Resonance Spectroscopy -- Part Two: Carbon-13 Spectra, Including Heteronuclear Coupling with Other Nuclei -- 5. Nuclear Magnetic Resonance Spectroscopy -- Part Three: Spin-Spin Coupling -- 6. Nuclear Magnetic Resonance Spectroscopy -- Part Four: Other Topics in One-Dimensional NMR -- 7. Ultraviolet Spectroscopy -- 8. Mass Spectrometry -- 9. Combined Structure Problems -- 10. Nuclear Magnetic Resonance Spectroscopy -- Part Five: Advanced NMR.
Holdings
Item type Current library Call number Status Notes Barcode
General lending MTU Kerry North Campus Library First Floor Main 547.3 PAV (Browse shelf(Opens below)) Available MTU Kerry Module CHEM 71002 Essential Reading 38888000937924
General lending MTU Kerry North Campus Library First Floor Main 547.3 PAV (Browse shelf(Opens below)) Available MTU Kerry Module CHEM 71002 Essential Reading 38888000937916
Total holds: 0

Enhanced descriptions from Syndetics:

Gain an understanding of the latest advances in spectroscopy with INTRODUCTION TO SPECTROSCOPY.This proven book provides a systematic introduction to spectra and basic theoretical concepts in spectroscopic methods and includes up-to-date spectra; a modern presentation of one-dimensional nuclear magnetic resonance (NMR) spectroscopy; an introduction to biological molecules in mass spectrometry; and coverage of modern techniques alongside DEPT, COSY, and HECTOR.

Previous edition: Belmont, California: Brooks/Cole, 2009.

Formerly CIP. Uk

Includes bibliographical references and index.

1. Molecular Formulas and What Can Be Learned from Them -- 2. Infrared Spectroscopy.3. Nuclear Magnetic Resonance Spectroscopy -- Part One: Basic Concepts -- 4. Nuclear Magnetic Resonance Spectroscopy -- Part Two: Carbon-13 Spectra, Including Heteronuclear Coupling with Other Nuclei -- 5. Nuclear Magnetic Resonance Spectroscopy -- Part Three: Spin-Spin Coupling -- 6. Nuclear Magnetic Resonance Spectroscopy -- Part Four: Other Topics in One-Dimensional NMR -- 7. Ultraviolet Spectroscopy -- 8. Mass Spectrometry -- 9. Combined Structure Problems -- 10. Nuclear Magnetic Resonance Spectroscopy -- Part Five: Advanced NMR.

MTU Kerry Module CHEM 71002 - Essential Reading

Table of contents provided by Syndetics

  • 1 Molecular Formulas and What Can Be Learned from Them
  • 2 Infrared Spectroscopy
  • 3 Nuclear Magnetic Resonance Spectroscopy
  • Part 1 Basic Concepts
  • 4 Nuclear Magnetic Resonance Spectroscopy
  • Part 2 Carbon-13 Spectra, Including Heteronuclear Coupling with Other Nuclei
  • 5 Nuclear Magnetic Resonance Spectroscopy
  • Part 3 Spin-Spin Coupling
  • 6 Nuclear Magnetic Resonance Spectroscopy
  • Part 4 Other Topics in One-Dimensional NMR
  • 7 Ultraviolet Spectroscopy
  • 8 Mass Spectrometry
  • 9 Combined Structure Problems
  • 10 Nuclear Magnetic Resonance Spectroscopy
  • Part 5 Advanced NMR Techniques.Answers to Selected Problems
  • Appendix 1 Infrared Absorption Frequencies of Functional Groups
  • Appendix 2 Some Representative Chemical Shift Values for Various Types of Protons
  • Appendix 3 Typical Proton Coupling Constants
  • Appendix 4 Calculation of Proton (1H) Chemical Shifts
  • Appendix 5 Calculation of Carbon-13 Chemical Shifts
  • Appendix 6 13C Coupling Constants
  • Appendix 7 Tables of Precise Masses and Isotopic Abundance Ratios for Molecular Ions Under Mass 100 Containing Carbon, Hydrogen, Nitrogen, and Oxygen
  • Appendix 8 Common Fragment Ions Under Mass 105
  • Appendix 9 Handy-Dandy Guide to Mass Spectral Fragmentation Patterns
  • Appendix 10 Index of Spectra