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Spectra, molecular

Herzberg G 1966 Molecular Spectra and Molecular Structure III Electronic Spectra and Electronic Structure of Polyatomic Molecules (New York Van Nostrand-Reinhold)... [Pg.82]

Herzberg G 1939, 1945, 1966 Molecular Spectra and Molecular Structure (New York van Nostrand) 3 vols... [Pg.281]

A good introduction to the use of coherent optical teclmiques and their use to probe molecular spectra. Shen Y R 1984 The Principles of Non-linear Optics (New York Wiley)... [Pg.282]

Herzberg G 1950 Molecular Spectra and Molecular Structure I. Spectra of Diatomic Mo/ecu/es 2nd edn (Princeton, NJ Van Nostrand)... [Pg.1149]

Whiting E E, Schadee A, Tatum J B, Hougen J T and Nicholls R W 1980 Recommended conventions for defining transition moments and intensity factors in diatomic molecular spectra J. Moiec. Spectrosc. 80 249-56... [Pg.2087]

A completely different approach, in particular for fast imimolecular processes, extracts state-resolved kinetic infomiation from molecular spectra without using any fomi of time-dependent observation. This includes conventional line-shape methods, as well as the quantum-dynamical analysis of rovibrational overtone spectra [18, 33, 34 and 35]. [Pg.2116]

Figure B2.5.20. The combined experimental and theoretical approach Molecular spectra and motion (after [18]). Figure B2.5.20. The combined experimental and theoretical approach Molecular spectra and motion (after [18]).
G. Herzberg, Molecular Spectra and Molecular Structure., Vol. 3, Van Nostrand Princeton, NJ, 1966. [Pg.177]

Symmetry considerations have long been known to be of fundamental importance for an understanding of molecular spectra, and generally molecular dynamics [28-30]. Since electrons and nuclei have distinct statistical properties, the total molecular wave function must satisfy appropriate symmehy... [Pg.552]

L. A. Gribov, W. J. Orville-Thomas, Theory and Methods of Calculation of Molecular Spectra, Wdey, Chichester, 1988. [Pg.539]

It is not the intention that this book should be a primary reference on quantum mechanics such references are given in the bibliography at the end of this chapter. Nevertheless, it is necessary at this stage to take a brief tour through the development of the Schrodinger equation and some of its solutions that are vital to the interpretation of atomic and molecular spectra. [Pg.8]

Carrington, A. (1974) Microwave Spectroscopy of Free Radicals, Academic Press, New York. Gordy, W. and Cook, R. L. (1984) Microwave Molecular Spectra, 3rd edn, Wiley-Interscience, New York. [Pg.135]

G. Her2berg, Molecular Spectra and Molecular Structure. II. Infrared and Kaman Spectra of Poljatomic Molecules Van Nostrand Reinhold, New York, 1945 ... [Pg.170]

W. Gordy and R. L. Cook, Microwave Molecular Spectra, 3rd ed., John Wiley Sons, Inc., New York, 1984. [Pg.322]

Diazirine, fluoromethoxy-nitrogen extrusion, 7, 224 Diazirine, methylvinyl-rearrangement, 7, 221 Diazirines addition reactions to Grignard compounds, 7, 2 0 as carbene precursors, 7, 236 IR spectra, 7, 203 microwave spectrum, 7, 199 molecular spectra, 7, 202-204 nitrogen extrusion, 7, 223 NMR, 7, 202 photoconversion to diazoalkanes, 7, 234 photoisomerization, 7, 221 photolysis, 7, 225-227 quantum chemical investigations, 7, 197 reactions... [Pg.598]


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A Molecular Mass Spectra

Correlation of mass spectra with molecular structure

Dissociation from molecular spectra

Dissociation molecular, spectra

Dynamical effects, from molecular spectra

Electronic Spectra and Molecular Structure

Emission spectra molecular ordering

Energy Levels and Molecular Spectra

Energy Units and Molecular Spectra

Infrared Spectra with Molecular Structure

Interference of rotational branches in molecular spectra

Interpretation and Analysis of Spectra using Molecular Modelling

Interpretation of Molecular Spectra

Laboratory of molecular structure and spectra

Mass spectra, correlation with molecular

Mass spectra, correlation with molecular structure

Mass spectra, unknown, molecular

Mass spectra, unknown, molecular structure elucidation

Mass spectrum molecular ion

Molecular Fluorescence and Phosphorescence Spectra

Molecular Properties and Spectra

Molecular assemblies spectra

Molecular calculated vibrational spectra

Molecular clouds spectra

Molecular dynamics simulations spectra

Molecular formula from mass spectrum

Molecular fragments detection from mass spectra

Molecular from mass spectra

Molecular model relaxation spectrum

Molecular modeling spectra calculations

Molecular orbitals charge-transfer spectra

Molecular orbitals electron spectra

Molecular power spectrum

Molecular resonant states spectra

Molecular spectra electronic

Molecular spectra of diazirines

Molecular spectra of oxaziridines and diaziridines

Molecular spectra, origin

Molecular spectra, rotation

Molecular spectroscopy 1 rotational and vibrational spectra

Molecular structure and spectra

Molecular structure from mass spectra

Molecular structure mass spectra

Molecular structure vibrational spectra

Molecular structure, determination from mass spectra

Molecular vibrational spectra

Molecular vibrations infrared spectra

Molecular weight chemical-ionization mass spectra

Molecular weight, from mass spectrum

Molecular-weight determination from electrospray mass spectra

Of Molecular Structure and Spectra

Optical spectra molecular parameters from

Origin of Molecular Spectra

P-Bromoacetophenone, molecular 13C NMR spectrum

Photoelectron spectra of molecular

Rotational spectra molecular rotation

Rotational spectra molecular structure definition

Spectra index by molecular formula

Spectra molecular absorption

Spectra of molecular

Spectra, molecular collisional broadening

Structure of Molecular Spectra

Transitions, molecular crystals, spectra

Using NMR Spectra to Analyze Molecular Structure The Proton Chemical Shift

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