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Electron-molecule scattering resonances

Truhlar D G (ed) 1984 Resonances in Electron-Molecule Scattering, van der Waals Complexes, and Reactive Chemical Dynamics (ACS Symp. Ser. 263) (Washington, DC American Chemical Society)... [Pg.1003]

M. Berman, H. Estrada, L.S. Cederbaum, W. Domcke, Nuclear dynamics in resonant electron-molecule scattering beyond the local approximation The 2.3-eV shape resonance in N2, Phys. Rev. A 28 (1983) 1363. [Pg.30]

Cederbaum, L.S. and Domcke, W. (1981). Local against nonlocal complex potential in resonant electron-molecule scattering, J. Phys. B 14,4665-4689. [Pg.207]

Dub6, L. and Herzenberg, A. (1979). Absolute cross sections from the boomerang model for resonant electron-molecule scattering, Phys. Rev. A 20, 194-213. [Pg.209]

P. W. Langhoff, ed., Resonances in Electron-Molecule Scattering, Van der Waals Complexes and Reactive Chemical Dynamics , American Chemical Society, 1984, Vol. 263. [Pg.3849]

This beautiful empirical evidence had a strong stimulating effect In the study of shape resonances In molecular photolon-Izatlon, Just as early observations of the Xg shape resonance In elastic e-No scattering did In the electron-molecule scattering field (3,17). [Pg.142]

Finally, note that we have Illustrated the vibrational effects of shape resonances In the context of molecular photolonlzatlon however, a rather analogous mechanism makes shape resonances extremely efficient In Inducing vibrational excitation In electronlcally-elastlc electron-molecule scattering (3,17,41). [Pg.155]

Connections Between Shape Resonances In Electron-Molecule Scattering And In Molecular Photolonlzatlon And Related Connections... [Pg.155]

Resonances in electron-molecule scattering, van der Waals complexes, and reactive chemical dynamics. [Pg.526]

D.G. Truhlar (Ed.), Resonances in electron-molecule scattering, van der Waals complexes, and reactive chemical dynamics, American Chemical Society, Washington, DC, 1984. [Pg.422]

A critical issue crossing all boundaries is the interaction of matter and radiation. Spectroscope experiments are used as both structural and dynamic probes and to initiate chemical processes (as in photochemistry and laser-induced chemistry), and such experiments must be understood theoretically. There are also many subfields of theoretical chemistry—for example, biomedical structure-activity relationships, the molecular theory of nuclear magnetic resonance spectra, and electron-molecule scattering—that fit into two or more of the areas listed. [Pg.1241]

The work and analysis reported in Refs. [123,124], took the scope and the accuracy of fhe fheory and compufafion of electron-atom (molecule) scattering resonances to an unprecedented level for the standards of the field, in order fo achieve fhe firsf definifive resolution and interpretation of fhe spectrum of fhe complex poles representing the resonance states of H . [Pg.220]

H.S. Taylor, G.V.Nazaroff, A. Golebiewski, Qualitative aspects of resonances in electron-atom and electron-molecule scattering, excitation and reactions, J. Chem. Phys. 45 (1966) 2872. [Pg.260]

T.C. Thompson and D.G. Truhlar, in "Resonances in Electron-Molecule Scattering, van der lAlaals Complexes and Reactive Chemical Dynamics", ed. D.G. Truhlar (Plenum Press, 1984), p. 421... [Pg.102]


See other pages where Electron-molecule scattering resonances is mentioned: [Pg.529]    [Pg.529]    [Pg.77]    [Pg.164]    [Pg.169]    [Pg.65]    [Pg.139]    [Pg.139]    [Pg.140]    [Pg.144]    [Pg.155]    [Pg.159]    [Pg.118]    [Pg.122]   


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Electron-molecule scattering

Electrons scattered

Electrons scattering

Molecule electronic

Molecules resonances

Molecules scattered

Resonance scattering

Resonant scattering

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