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Configuration diagram

Figure C2.16.6. The energy states of a metastable and bistable muonium in Si are illustrated in a configuration diagram. It plots the defect energy as a function of a coordinate which combines position and all the relaxations and distortions of the crystal. The specific example, discussed in the text, illustrates acceptor and donor levels, metastability, bistability and negative- U [50] behaviour. Figure C2.16.6. The energy states of a metastable and bistable muonium in Si are illustrated in a configuration diagram. It plots the defect energy as a function of a coordinate which combines position and all the relaxations and distortions of the crystal. The specific example, discussed in the text, illustrates acceptor and donor levels, metastability, bistability and negative- U [50] behaviour.
The ionization energies and impurity levels are shown in the flat-band figure next to the configuration diagram. [Pg.2886]

Hush model, 41 274-280 PKS model, 41 274-280 potential energy-configuration diagram, 41 275... [Pg.185]

Fig.5.4. The configuration diagram illustrating normal df emissions and anomalous emission (energy values realistic for Srp2 and Bap2, Dorenbos 2003)... Fig.5.4. The configuration diagram illustrating normal df emissions and anomalous emission (energy values realistic for Srp2 and Bap2, Dorenbos 2003)...
In order to complete the configurational description of the rotational process the monoexcited configurations, Sj and T, need to be incorporated, and are included in Fig. 10. Indeed, there are a large number of reactions which are not adequately described by the simple two-configuration diagram of Fig. 8. Such reactions may be classified as multiconfiguration reactions and are discussed subsequently. [Pg.121]

Substitution of the central carbon of RX may induce significant mechanistic variations within the range of nucleophilic substitution reactions. For example, introduction of electron-releasing substituents on R will lead to a stabilization of the carbocation configuration [22]. An excellent illustration of this type of process is the reaction of methoxymethyl derivatives (83) taken from Jencks work (Knier and Jencks, 1980). The carbocation within [22] is stabilized by the resonance interaction (84). Thus the configuration diagram... [Pg.151]

In 1938/1939 Seitz [5.304] and Mott [5.305] developed the electron configuration diagram, on the basis of which, phenomena such as Stokes Law became understandable. [Pg.237]

Energy Configuration Diagram. This model, based on the energy level diagrams of atoms and molecules, is applicable to luminescence processes in which excitation and emission take place at the same luminescence center. [Pg.237]

Hardware configuration diagrams must be retained as part of the qualification documentation. This is especially important in certain laboratory and shop floor situations where the computer hardware is essential to the operation of the equipment. [Pg.65]

The most important sugar is glucose. It has a saturated six-membered ring containing oxygen and it is best drawn in a chair conformation with nearly all the substituents equatorial. It can also be drawn reasonably as a flat configurational diagram. [Pg.1360]

A particular case of helicity is that displayed by molecular propellers [47], aptly described by this picturesque name. An example of a 3-bladed propeller structure is provided by tri-o-thymotide, the (— )-enantiomer of which has now been shown to be the left-handed form (M configuration) (diagram XXXIX) [48]. [Pg.19]

The conceptual framework that is used to understand thermal and photoinduced electron transfer is illustrated by a classical potential energy-configuration diagram. The simpliest case for electron transfer in which the electron is coupled between donor and acceptor by a single oscillator having the same frequency in both the initial and the final states is illustrated in Figs, la and lb. [Pg.274]

Fig. 1. Potential energy-configuration diagram of initial and final states for (a) symmetric mixed valence complex and (b) asymmetric mixed valence system. Fig. 1. Potential energy-configuration diagram of initial and final states for (a) symmetric mixed valence complex and (b) asymmetric mixed valence system.
Fig. 13. The potential energy-configuration diagram representing initial / and final F states. Fig. 13. The potential energy-configuration diagram representing initial / and final F states.
Using electron configurations, diagram the formation of an ionic bond between barium and nitrogen. [Pg.236]

Operating characteristics of further flow configurations. Diagrams... [Pg.63]

Figure 15. The potential energy surfaces for the excess electron bubble states in C He) clusters portraying the total energy EtiRi, R, N) versus the bubble radius Rf, for fixed values of N marked on the curves. The open and full points represent the results of the computations for the clusters using the density functional method for Ej Ri, R, N) and the quantum mechanical treatment for Ee(Ri, R, N), while for the bulk we took Ed Rb, R — oo, iV oo) = AttyR. The black point ( ) on each configurational diagram represents the equilibrium bubble radius. The Rj-dependence of the energy of the quasi-free electron state Vo(Rt, R, N) in the cluster of the smallest size of N = 6.5 X 10 (dashed line) and the bulk value of To (solid line) are also presented. The To values for each Rj, for iV = 8.1 x 10 to 1.88 x 10 fall between these two nearly straight fines. Figure 15. The potential energy surfaces for the excess electron bubble states in C He) clusters portraying the total energy EtiRi, R, N) versus the bubble radius Rf, for fixed values of N marked on the curves. The open and full points represent the results of the computations for the clusters using the density functional method for Ej Ri, R, N) and the quantum mechanical treatment for Ee(Ri, R, N), while for the bulk we took Ed Rb, R — oo, iV oo) = AttyR. The black point ( ) on each configurational diagram represents the equilibrium bubble radius. The Rj-dependence of the energy of the quasi-free electron state Vo(Rt, R, N) in the cluster of the smallest size of N = 6.5 X 10 (dashed line) and the bulk value of To (solid line) are also presented. The To values for each Rj, for iV = 8.1 x 10 to 1.88 x 10 fall between these two nearly straight fines.

See other pages where Configuration diagram is mentioned: [Pg.2885]    [Pg.2886]    [Pg.2886]    [Pg.241]    [Pg.231]    [Pg.361]    [Pg.166]    [Pg.36]    [Pg.190]    [Pg.306]    [Pg.239]    [Pg.69]    [Pg.306]    [Pg.301]    [Pg.170]    [Pg.290]    [Pg.291]    [Pg.2885]    [Pg.2886]    [Pg.634]   
See also in sourсe #XX -- [ Pg.166 ]

See also in sourсe #XX -- [ Pg.545 ]

See also in sourсe #XX -- [ Pg.10 ]




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Configuration coordinate diagram

Configuration correlation diagram

Configuration mixing diagrams

Configurational coordinate diagram

Configurational coordinate diagram Stokes shift

Configurational coordinate diagram nonradiative transitions

Configurational coordinate diagram transitions

Configurational state diagrams

Electron Configurations and Electronic Diagrams

Electron configurations orbital diagrams

Electronic configuration energy diagrams

Energy configuration diagram

Luminescence configuration diagram

Operating characteristics of further flow configurations. Diagrams

Single configurational coordinate energy level diagram

Stable Bundle Size Configuration Diagrams

Valence Bond Configuration Mixing Diagrams General Features

Valence Bond Configuration Mixing Diagrams for Proton-Transfer Processes

Valence bond configuration mixing diagrams

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