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Q8) The figure below shows an ideal Jablonski diagram of the first two electronic levels of Anthracene, and six vibrational levels in each state. The reason this is ideal is because the energy levels are the same during absorption and emission, even though they should be different from geometry and solvent effects. Each vibrational level is separated by 2500 cm, and the Absorption Emission Vibrational electronic levels are separated by 405 nm Vibrational levels of levels of A) calculate the energy and wavelength of the absorbed light labeled, 5 B) calculate the energy and wavelength of the emitted light labeled, λ-5 C) what is the difference between A and B in terms of #vibrational levels (in other words, Vibrational levels of So ational convert the energy difference into cm and levels of So determine how many vibrational levels fit into that)? Does this make sense with the diagram?
Q8) The figure below shows an ideal Jablonski diagram of the first two electronic levels of Anthracene, and six vibrational levels in each state. The reason this is ideal is because the energy levels are the same during absorption and emission, even though they should be different from geometry and solvent effects. Each vibrational level is separated by 2500 cm, and the Absorption Emission Vibrational electronic levels are separated by 405 nm Vibrational levels of levels of A) calculate the energy and wavelength of the absorbed light labeled, 5 B) calculate the energy and wavelength of the emitted light labeled, λ-5 C) what is the difference between A and B in terms of #vibrational levels (in other words, Vibrational levels of So ational convert the energy difference into cm and levels of So determine how many vibrational levels fit into that)? Does this make sense with the diagram?
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Keith LeannonLv2
1 Sep 2019
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