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:
BookPublisher: 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 analysis| 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 |
Browsing MTU Kerry North Campus Library shelves, Shelving location: First Floor Main Close shelf browser (Hides shelf browser)
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