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Preparation energy

In regard to control of energy flow, one can think of defining and trying to prepare time-dependent states closely related to these subpolyads (which contain time-independent levels of the spectroscopic Hamiltonian). If the proper time-dependent states could be prepared, energy could be made to flow with confinement to the chosen subpolyad. [Pg.594]

AEm = —114.8 kcal/mol for E=C) to the heaviest element (AEjnt = — 48.2 kcal/mol for E=Pb). The dissociation energies Dq follow the same trend because the preparation energies are rather small except for ethane. [Pg.310]

Table 13.8 shows the EDA results of the boron-phosphorous bonds in complexes Y3B-PX3. Note that the preparation energies are rather high. The rather large AEp p... [Pg.312]

The values in parentheses give the preparation energies of the metal fragment and ligand, respectively. Partial charge of TM(CO)4. [Pg.351]


See other pages where Preparation energy is mentioned: [Pg.966]    [Pg.969]    [Pg.658]    [Pg.71]    [Pg.186]    [Pg.28]    [Pg.43]    [Pg.68]    [Pg.69]    [Pg.70]    [Pg.71]    [Pg.72]    [Pg.73]    [Pg.325]    [Pg.1237]    [Pg.1257]    [Pg.1257]    [Pg.976]    [Pg.979]    [Pg.3]    [Pg.1166]    [Pg.1170]    [Pg.71]    [Pg.249]    [Pg.7]    [Pg.305]    [Pg.311]    [Pg.349]    [Pg.349]    [Pg.349]    [Pg.353]    [Pg.353]    [Pg.358]    [Pg.364]    [Pg.367]    [Pg.1236]    [Pg.1256]    [Pg.1256]    [Pg.239]    [Pg.496]    [Pg.82]    [Pg.83]    [Pg.188]    [Pg.194]   
See also in sourсe #XX -- [ Pg.242 ]




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Atomic preparation energy

Preparation and separation energy

Preparation electron energies

Preparation of High-Energy Mixtures

Preparation of Mass and Energy Balances

State Preparation and Intramolecular Vibrational Energy Redistribution

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