Effect of the reverse reaction on the experimental determination of energy transfer rate constants
Author:
Publisher
AIP Publishing
Subject
Physical and Theoretical Chemistry,General Physics and Astronomy
Link
http://aip.scitation.org/doi/pdf/10.1063/1.434392
Reference12 articles.
1. Energy transfer from the resonance states Ar(1P1) and Ar(3P1) to ethylene
2. Energy transfer from argon resonance states to nitrogen, hydrogen, and nitric oxide
3. Resonant energy transfer cross sections formulated in terms of form factors: An appraisal of the first Born approximation
4. Positive Column Population Calculations for the Evaluation of Dispersive Effects in He–Ne Lasers
5. Time dependence of the vacuum-uv emissions from neon, and energy transfers to the resonance statesNe(P11)andNe(P13)in helium-neon mixtures
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1. Quenching of the 1.0 and 2.3 μm excited electronic states of PuF6 at room temperature by selected rare gases and small polyatomic molecules;The Journal of Chemical Physics;1985-07-15
2. E‐T and near‐resonant E‐V energy transfer in the quenching of the 1.0 and 2.3 μm electronically excited states of PuF6 by H2 and D2;The Journal of Chemical Physics;1985-01
3. Electronic excitation. Analogy between electronically excited state atoms and alkali metal atoms;Faraday Discussions of the Chemical Society;1979
4. Electronically Excited Long-Lived States of Atoms and Diatomic Molecules in Flow Systems;Reactive Intermediates in the Gas Phase;1979
5. Rate constants and quenching mechanisms for the metastable states of argon, krypton, and xenon;The Journal of Chemical Physics;1978-11-15
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