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Cazes J. Ewing's Analytical Instrumentation Handbook

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Cazes J. Ewing's Analytical Instrumentation Handbook
3rd Edition, MARCEL DEKKER, 2005. — 1032 P.
The Analytical Instrumentation Handbook serves as a guide for workers in analytical chemistry, who need a starting place for information about a specific instrumental technique, either as a basic introduction to it or as a means of finding leading references dealing with theory and methodology for an instrumental technique.
The chapters which appeared in the second edition have been thoroughly expanded and updated, with concepts, applications, and key references to the recent literature. Only one chapter (Laboratory Balances) has been eliminated; eight new chapters have been added to the Handbook, dealing with:
Microchip technology
Biosensor technology
Validation of chromatographic methods
Gel permeation and size exclusion chromatography
Field-flow fractionation
Countercurrent chromatography
Hyphenated techniques in chromatography, including LC-MS, LC-NMR, and so on
Thin-layer chromatography
The chapters have been written from the standpoint of the instrumentation as it is in use today, with an introductory description of the technique(s), and a theoretical treatment of the science and technology, wherever it is applicable or where it will facilitate an understanding of the instrumentation. However, the major emphasis is on the instrumentation. The chapters are not, simply, a “catalog” of commercially available instruments. Nevertheless, in some cases, commercially available instruments have been used as examples to illustrate design features discussed in the text.
It is sincerely intended and anticipated that this third revised and expanded edition of the Analytical Instrumentation Handbook will serve as a ready-reference on the desks of all practitioners of instrumental analytical chemistry.
The Laboratory Use of Computers
Flow Injection/Sequential Injection Analysis
Inductively Coupled Plasma Optical Emission Spectrometry
Atomic Absorption Spectrometry and Related Techniques
Ultraviolet, Visible, Near-Infrared Spectrophotometers
Molecular Fluorescence and Phosphorescence
Vibrational Spectroscopy: Instrumentation for Infrared and Raman Spectroscopy
X-Ray Methods
Photoacoustic Spectroscopy
Techniques of Chiroptical Spectroscopy
Nuclear Magnetic Resonance
Electron Paramagnetic Resonance
X-Ray Photoelectron and Auger Electron Spectroscopy
Mass Spectrometry Instrumentation
Thermoanalytical Instrumentation and Applications
Potentiometry: pH and Ion-Selective Electrodes
Voltammetry
Electrochemical Stripping Analysis
Measurement of Electrolytic Conductance
Microfluidic Lab-on-a-Chip
Biosensor Technology
Instrumentation for High-Performance Liquid Chromatography
Gas Chromatography
Supercritical Fluid Chromatography Instrumentation
Capillary Electrophoresis
Gel Permeation and Size Exclusion Chromatography
Field-Flow Fractionation
Instrumentation for Countercurrent Chromatography
HPLC-Hyphenated Techniques
Thin Layer Chromatography
Validation of Chromatographic Methods
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