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Photoprotection involves the nonradiative dissipation of excess electronic energy to avoid damaging chemical processes from the excited state.
Quantum mechanics explains internal conversion as a transfer of excess electronic energy into excess vibrational energy of a lower electronic state, followed by dissipation of the vibrational energy into the surroundings as heat.
According to them, the porosity of the etched nanostructures is controlled by the concentration of excess electronic holes in Si.
The excess electronic conductivity is found to be about three orders of magnitude lower than the total conductivity with an activation energy of 1.2 1.6 eV in the oxygen partial range 10−3 1 atm, which is comparable to those of other rare earth doped cerates.
However, in several systems of interest the charge transfer reaction involves initial and final localized distributions of the excess electronic charge with nonzero overlap.
In fact, this definition rests directly on the BO adiabatic approximation, and hence, it also applies when the electron charge rearrangement following the PT reaction is not classified as ET because it does not amount to distinct localizations of some excess electronic charge (see also the extended interpretation of the Dogonadze Kuznetsov Levich model in section 9).
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The molar electronic excess heat capacity CEel,m is positive for all temperatures and compositions, SEel,m(298.15K) thus shows a positive contribution with a maximum of 0.8 J · K−1 · mol−1 for Fo50Fa50.
He is fundamentally analog, despite the occasional electronic excesses in his music.
Online exchanges hope to attract a wide range of businesses that want to unload excess inventory through an electronic forum where companies can accept bids from potential buyers.
The excess Mn atoms modify the electronic structures of the unsubstituted Mn atoms, resulting in the sharp decrease of the magnetic moments of the unsubstituted Mn atoms with increasing Mn content.
Dissociation after collision-induced activation can be understood as a statistical reaction, in which after initial electronic excitation the excess energy is randomly distributed over the vibrational degrees of freedom.
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