
- 560 pages
- English
- ePUB (mobile friendly)
- Available on iOS & Android
eBook - ePub
About this book
The principle objective of this handbook is to provide a readily accessible source of information on the major fields of spectroscopy. Specifically, these fields are NMR, IR, Raman, UV (absorption and fluorescence), ESCA, X-Ray (absorption diffraction fluorescence), mass spectrometry, atomic absorption, flame photometry, emission spectrography, and flame spectroscopy. It will be of particular use to analytical, organic, inorganic chemists or spectroscopists wishing to identify materials or compounds. The book will indicate to them which techniques may provide useful information and what kind of information will and will not be provided. In short, it will be a companion to those spectroscopists who have need to broaden their horizons into the major fields discussed.
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Yes, you can access Handbook of Spectroscopy by J. W. Robinson in PDF and/or ePUB format, as well as other popular books in Physical Sciences & Analytic Chemistry. We have over one million books available in our catalogue for you to explore.
Information
Index
A
A, standards, see Class A secondary wavelength standards
Absolute binding energy, see Binding energy, 80
Absolute intensities, electronic transitions, 273
Absolute temperatue, Mössbauer spectroscopy, 432-448
Absolute transition probabilities, diatomic molecules, 272-273
Absorbers, thickness, see Mössbauer spectroscopy, sample thickness, absorbers
Absorption, Mössbauer spectroscopy, see Mössbauer spectroscopy, absorption
Absorption, coefficients, mass, see Mass absorption coefficients
Absorption cross-section, frequenty-dependent, 194
Absorption lines
atomic, transition probabilities for, 269
interstellar medium, 269
Mössbauer spectroscopy, 404-412, 451
Absorption measurements, diatomic molecule lifetimes, 271
Absorption oscillator strength, diatomic molecules, 194-199, 201-202
Absorption spectroscopy, 194-195
Abundance, isotopes, 96-123, 403, 405-409, 413, 415
Acridine, 186
Actinidine series oxides, 229
Actinum
atomic binding enery, 87-88
fluorescence yields, 132
isotopes
cross-sections, 121
resonance integrals, 121
mass absorption coefficients, 40-43, 59-62
Activated product yield, reactor irradiations, 95-123
Activation analysis, neutrons, see Neutrons, activation analysis
Activation cross-sections, see Cross-sections, activation
Adularia, 222
Affinity, electron, see Electrons, affinity
Air, standard
defined, 170
refractive index, 170, 173
wavelength standards in, 163-170, 173
interconversion with vacuum standards, 170, 173
Albite, 222
Alexandrite, 212
Aligoclase, 222
Alkali brosilicate glass, 240
Alkaline earth oxide, 229
Alkali hali...
Table of contents
- Cover
- Title Page
- Copyright Page
- Preface
- The Editor
- Advisory Board
- Contributors
- Mass Photoelectric Absorption Coefficients
- Appearance Potential Spectroscopy
- Thermal Neutron Cross Sections and Resonance Integrals for Activation Analysis
- Tables of Experimental Values of X-Ray Fluorescence and Coster-Kronig Yields for the K-, L-, And M-Shells
- 14 MeV Neutron Activation Cross-Sections
- Wavelength Standards in Visible, Ultraviolet, and Near-Infrared Spectroscopy
- Electron Affinities
- Wavelength-Dependent and Electronic System Oscillator Strengths for Free Diatomic Molecules of Astrophysical Importance
- Electron Spin Resonance Application to the Study of Minerals and Glasses
- Experimental Lifetimes, Franck-Condon Factors, and Vibrational and Rotational Oscillator Strengths
- Mössbauer Spectroscopy
- Index