Modern Instrumental Analysis: Comprehensive Analytical Chemistry, cartea 47
Editat de Satinder Ahuja, Neil Jespersenen Limba Engleză Hardback – 16 oct 2006
* Covers the fundamentals of instrumentation as well as key applications * Each chapter includes review questions that reinforce concepts * Serves as a quick reference and comprehensive guidebook for practitioners and students alike
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Specificații
ISBN-13: 9780444522597
ISBN-10: 044452259X
Pagini: 896
Dimensiuni: 165 x 240 x 48 mm
Greutate: 1.42 kg
Ediția:New.
Editura: ELSEVIER SCIENCE
Seria Comprehensive Analytical Chemistry
ISBN-10: 044452259X
Pagini: 896
Dimensiuni: 165 x 240 x 48 mm
Greutate: 1.42 kg
Ediția:New.
Editura: ELSEVIER SCIENCE
Seria Comprehensive Analytical Chemistry
Public țintă
For graduate students, laboratory personnel and managers in academia, industrial, and government laboratoriesCuprins
Chapter 1. Overview (S. Ahuja).
Chapter 2. Sampling and sample preparation (S. Ahuja, D. Diehl).
Chapter 3. Evaluation of basic physical properties
(N. Jespersen).
Chapter 4. Thermal analysis (H.G. Brittain, R.D. Bruce).
Chapter 5. General principles of spectroscopy and spectroscopic analysis (N. Jespersen).
Chapter 6. Near-infrared spectroscopy (E.W. Ciurczak).
Chapter 7. X-ray diffraction and x-ray fluorescence
(H.G. Brittain).
Chapter 8. Atomic spectroscopy (T.H. Risby).
Chapter 9. Emission methods (C.H. Lochmüller).
Chapter 10. Nuclear magnetic resonance spectroscopy(L. Lohr et al.).
Chapter 11. Mass spectrometry (D.J. Burinsky).
Chapter 12. Theory of separation methods (C.H. Lochmüller).
Chapter 13. Thin-layer chromatography (P.M. Grillini).
Chapter 14. Gas chromatography (N.H. Snow).
Chapter 15. High-pressure liquid chromatography
(S. Ahuja).
Chapter 16. Supercritical fluid chromatography (M.E.P. McNally).
Chapter 17. Electromigration methods: origins, principles, and applications (M. Jimidar).
Chapter 18a. Potentiometry (M. Telting-Diaz, Yu Qin).
Chapter 18b.Voltammetry: Dynamic electrochemical techniques (A. Hussam).
Chapter 19. Hyphenated methods (T.R. Sharp, B.L. Marquez).
Chapter 20a. Optical sensors (E. Wang).
Chapter 20b. Bioactivity detectors (S.M. Ford).
Chapter 20c. Drug detectors (S.M. Ford).
Chapter 21. Problem solving and guidelines for method selection (A.H. Ullman, D.E. Raynie).
Chapter 2. Sampling and sample preparation (S. Ahuja, D. Diehl).
Chapter 3. Evaluation of basic physical properties
(N. Jespersen).
Chapter 4. Thermal analysis (H.G. Brittain, R.D. Bruce).
Chapter 5. General principles of spectroscopy and spectroscopic analysis (N. Jespersen).
Chapter 6. Near-infrared spectroscopy (E.W. Ciurczak).
Chapter 7. X-ray diffraction and x-ray fluorescence
(H.G. Brittain).
Chapter 8. Atomic spectroscopy (T.H. Risby).
Chapter 9. Emission methods (C.H. Lochmüller).
Chapter 10. Nuclear magnetic resonance spectroscopy(L. Lohr et al.).
Chapter 11. Mass spectrometry (D.J. Burinsky).
Chapter 12. Theory of separation methods (C.H. Lochmüller).
Chapter 13. Thin-layer chromatography (P.M. Grillini).
Chapter 14. Gas chromatography (N.H. Snow).
Chapter 15. High-pressure liquid chromatography
(S. Ahuja).
Chapter 16. Supercritical fluid chromatography (M.E.P. McNally).
Chapter 17. Electromigration methods: origins, principles, and applications (M. Jimidar).
Chapter 18a. Potentiometry (M. Telting-Diaz, Yu Qin).
Chapter 18b.Voltammetry: Dynamic electrochemical techniques (A. Hussam).
Chapter 19. Hyphenated methods (T.R. Sharp, B.L. Marquez).
Chapter 20a. Optical sensors (E. Wang).
Chapter 20b. Bioactivity detectors (S.M. Ford).
Chapter 20c. Drug detectors (S.M. Ford).
Chapter 21. Problem solving and guidelines for method selection (A.H. Ullman, D.E. Raynie).