Examples of 'excitation energy' in a sentence
Meaning of "excitation energy"
Excitation energy: In physics, excitation energy refers to the amount of energy required to move an electron from its ground state to a higher energy level. This jump in energy level can result in the emission of light or radiation
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- The energy needed to change something from the ground state to any particular excited state
How to use "excitation energy" in a sentence
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excitation energy
The excitation energy is transformed into heat.
Active thermography and excitation energy sources.
The excitation energy is nevertheless insufficient to eject an electron.
This evolution is attributed to the fragment excitation energy.
Excitation energy is obtained from the recombination of oxidized and reduced species.
The intensity of spectra generally increase as the excitation energy increases.
The donor dye emits excitation energy absorbed by the acceptor dye.
Playing with this transition allowed us to explore a large range of excitation energy.
The excitation energy for the mlct transition band calculated in the gas phase show.
This process continues until the excitation energy runs out.
This excitation energy may cause a detectable optical indicator from the analyte detecting member.
An excited state is associated with an unique characteristic value of the excitation energy.
The transformation of excitation energy into harmless heat occurs via a photochemical process called internal conversion.
These probes may require a predetermined amount of excitation energy for emission.
Resonant electronic excitation energy transfer by Dexter mechanism in the quantum dot system.
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Use is not made of sliding contacts to bring the excitation energy to the rotor.
Intensity of the excitation energy may be in the range of 1 mW or less.
Collisions with other atoms or molecules absorb the excitation energy and prevent emission.
However, a minimum excitation energy is needed to excite the condensate quadrupole mode.
The ions also retain their identity if they are produced with considerable internal excitation energy.
Equal to the HC and the excitation energy unit.
This excitation energy is transferred through a dipole-dipole intermolecular bonding without radiation.
These parameters comprise the current filter Fc and the current excitation energy Ec.
Fig 2 schematically illustrates the concepts of excitation energy and ionization potential of a compound.
These parameters comprise the reference filter Fr and the reference excitation energy Er.
Non-radiative transfer of excitation energy requires an interaction between a donor group and an acceptor group.
The most studied biochemical protective mechanism is non-photochemical quenching of excitation energy.
In each sub-cycle a pulse of excitation energy is applied.
In various embodiments, a high power led can emit at least about 5 mW of excitation energy.
The excitation energy serves to populate the S1 level, which populates the triplet by intersystem transition.
Especially important are the non-adiabatic collisions leading to the excitation energy transfer.
This excitation energy may be re-emitted in two major modes,.
Generally, various engineering and other tradeoffs are considered in specifying the characteristics of excitation energy.
Anti-Stokes photoluminescence is observed with low excitation energy and ascribed to a two-step absorption process.
The greater the B, the greater the effect of the adaptive codebook excitation energy.
Lowest excitation energy of 9Be.
The pre-emphasis filter has the role to reduce the excitation energy at low frequencies.
The ionization and excitation energy of dioxygenyl cations, which they observed, is 18 electronvolts.
A 4th order MA prediction is performed on the excitation energy as follows.
For a photon excitation energy between 2 and 7 eV, the adsorbate is first electronically excited.
The apparatus of claim 8, further comprising an excitation energy source.
Excitation energy transfer increases the population of the neon 4s2 and 5s2 levels manyfold.
Equal to the HC and the excitation energy unit . - Farah Mr.
The excitation energy hv and emission energy hv ′ are illustrated in FIG . 1.
Eight i? 0 transitions were seen below 1 MeV excitation energy.
The concepts of 1st excitation energy and ionization potential are explained with reference to FIG . 2.
The apparatus of aspect 17 or aspect 18, further comprising an excitation energy source.
Excitation energy is reflected down as indicated by arrow 936.
This excitation filter 934, in one embodiment, only allows excitation energy to pass.
The antenna 224 operates to receive excitation energy from the external unit 204 in a manner described below.
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