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Transition interaction

DSDTeF, 521251400 Metallic at 4.2 K, quasi 1-D, strong interstack no transition interactions ... [Pg.787]

The electrons in a solid interact both with one another and with the lattice vibrations. A theme of this book is the effect of the interaction between electrons in inducing magnetic moments and metal-insulator transitions. Interaction with phonons also has an important effect, particularly in some transitional-metal oxides. In this chapter both kinds of interaction are introduced. [Pg.59]

We assume that the molecule-field coupling is dominated by the dipole transition interaction and represents the resonant continuous electric field e(f) in the form... [Pg.254]

Table 8.6. Summary of Transitions Interacting with Radiation. Table 8.6. Summary of Transitions Interacting with Radiation.
The two transitions for tryptophan exhibit distinct features, which lead to quite different CD bands. The La transition is broad, relatively featureless, and intense (Fig. B3.5.2). The Lb transition is weaker but exhibits fine structure (Fig. B3.5.2) similar to that of tyrosine. It can be masked by or superimposed on the La transition. Interactions similar to those listed for tyrosine strongly affect the peak wavelengths and intensities. The presence of bands above 285 nm is diagnostic for tryptophan in a specific environment interactions that cause the Lb transition to be shifted to the red (or high-wavelength) end of the spectrum result in bands as high as 310 nm which are highly conformation-specific. The two transitions may be affected quite independently by interactions, and their combination can thereby result in four distinct types of spectrum (Strickland, 1974). [Pg.236]

Vogler A, Kunkely H (2001) In Transition Metal and Rare Earth Compounds. Excited States, Transitions, Interactions. Yersin H (ed) Topics in Current Chemistry. Vol. 213 Springer, Berlin, p 143-182... [Pg.182]

Huid-solid Reasonable Turbulence modeling + refined models for particle-particle and particle-wall interaction -L prediction of flow regime transition + interaction of hydrodynamics with chemical transformation processes... [Pg.281]

Vogler, A. Kunkely, H. Luminescent metal complexes diversity of excited states. In Transition Metal and Rare Earth Compounds Excited States, Transition, Interactions I, Vol. 213 Yersin, H., Ed. Springer Berlin, 2001 pp 143-182. [Pg.831]

Here we attempt to briefly introduce the principle of the AFM based SMFS and then focus on using SMFS to address three main questions force induced conformation transition, interaction between small molecules and polymers, and the interfacial conformation and adhesive energy of polymers. [Pg.526]

Until now, the effect relation is defined for unsynchronized transitions. In our AADL dialect, transitions can however synchronize. The above definitions can easily be lifted to support this by generalizing the definition of a transition relation to the type C SxTx TU e )xS. Here s s means that t is the rendez-vous transition interacting with t. In case t is unsynchronized, t = e. The definition for effect relations are then lifted similarly as well. Due to page hmit constraints, we refer the reader to [5] for the lifted definition. In the remainder of this paper we concentrate on unsynchronized transitions, since this keeps the notations simpler. We will bear in mind that all the techniques described in the following can easily support synchronized transitions by lifting definitions. [Pg.246]

Glasbeek, M. In Transition Metal and Rare Earth Compounds Exdted States, Transition, Interactions I Springer Berlin, 2001 Vol. 213, p 95. Katsaros, N. Anagnostopoulou, A. Crit. Rev. Oncol.jHematol. 2002, 42, 297. [Pg.226]

The frequency at which a particular transition interacts with the radiation is thereby shifted slightly by... [Pg.101]


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See also in sourсe #XX -- [ Pg.102 , Pg.103 , Pg.104 , Pg.105 , Pg.106 ]




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Bridge bonding interactions, transition

Configuration interaction electronic transition energies

Configuration interaction transition dipole

Cross-interaction constants and transition-state structure in solution

Dependence of Multiphonon Transitions on Interaction Strength and Temperature

Dispersion interaction transition metal complex

Exchange interactions, transition metal ions, chain

External interaction transitions

Frontier Orbital Interactions in the Transition States of One-Step -Cycloadditions

Frontier Orbital Interactions in the Transition States of One-Step 1,3-Dipolar Cycloadditions Sustmann Classification

Glass transition temperature interactions

Glass transition temperatures water-solid interactions

Interaction with Toxic Transition Metals

Interaction with Transition Biometals

Interactions and Phase Transitions

Interactions forbidden transition

Interactions half-field transition

Interactions, transition state

Light-matter interactions transitions

Magnetic interaction, transition elements

Metals interaction between transition

Molecular interactions, phase transitions

Optical centers, interaction with transitions

Phase transition electrostatic interactions

Polar interactions, phase transitions

Quadrupolar interaction dominates central transition

Quantum Transitions Interaction Picture

Solid-Gas Interactions Between Small Gaseous Molecules and Transition

Solute-solvent interactions vertical transitions

Spin-forbidden transitions interactions

Transition and interaction

Transition electrical interaction

Transition elements, interactions

Transition metal interaction with second phases

Transition metal interactions

Transition metals electron-phonon interaction

Transition metals exchange-coupling interactions

Transition metals interactions with lipid

Transition metals nucleic acid-metal interactions

Transition state HOMO-LUMO interactions

Transition state orbital interaction

Transition-Monopole Treatments of Interaction Matrix Elements and Mixing with Charge-Transfer Transitions

Transition-state interactions yield

Vibronic interaction in transition metal complexes

Weak Attractive Interactions and Equilibrium Phase Transitions

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