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Physical chemistry involving light spectroscopy and photochemistry

Physical chemistry involving light spectroscopy and photochemistry [Pg.423]

Spectroscopic techniques look at the way photons of light are absorbed quantum mechanically. X-ray photons excite inner-shell electrons, ultra-violet and visible-light photons excite outer-shell (valence) electrons. Infrared photons are less energetic, and induce bond vibrations. Microwaves are less energetic still, and induce molecular rotation. Spectroscopic selection rules are analysed from within the context of optical transitions, including charge-transfer interactions The absorbed photon may be subsequently emitted through one of several different pathways, such as fluorescence or phosphorescence. Other photon emission processes, such as incandescence, are also discussed. [Pg.423]

Finally, we look at other spectroscopic phenomena, such as light scattering. [Pg.423]




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And photochemistry

Chemistry and physics

Chemistry photochemistry

Chemistry physical

Light physics

Light spectroscopy and

Photochemistry spectroscopy and

Physical chemistry light

Physical chemistry physics

Physical chemistry spectroscopy

Spectroscopies involving

Spectroscopy chemistry

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