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Titlebook: Excitation Energy and Electron Transfer in Photosynthesis; Dedicated to Warren Govindjee,J. Barber,Barbara A. Zilinskas Book 1987 Martinus

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Organization of the Photosynthetic Units, and Onset of Electron Transport and Excitation Energy Distre formed, followed by their light-harvesting components; then an assembly process of these components into supramolecular structures takes place. Parallel to this, the control of excitation energy distribution between the two photosystems is established. This control is attributed to the modulation
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A Consideration of the Organization of Chloroplast Photosystem Iwo complexes, each containing .50% of the total chlorophyll of the photosystem, can be isolated. One complex contains both chlorophyll . and . and serves as antenna complex for the reaction center while the reaction center complex contains 100 Chl . molecules per P700 and has 7 different polypeptide
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Exciton Interactions in Phycoerythrinar dichroism spectra of the various phycoerythrin aggregates were resolved into Gaussian components representing individual electronic transitions of phycoerythrobilin chromophores within these proteins. While the contribution of a broad, sensitizing band (at 525 nm) is constant, with increasing agg
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Relative Sensitivity of Various Spectral Forms of Photosynthetic Pigments to Leaf Senescence in Wheaas examined at various wavelengths in which the photosynthetic pigments mostly absorb. Chlorophyll (Chl) . was observed to be relatively more sensitive to leaf senescence than Chl . and carotenoids. Furthermore, the various spectral .. forms of Chl ., did not degrade to a similar extent; the far red
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Energy Migration and Exciton Trappimg in Green Plant Photosynthesisel. The interaction of the excitations with the photosystem II reaction centers and, specifically, the regeneration of theses excitations by charge recombination within the reaction centers, are considered. Based on comparisons between fluorescence decay profiles, time-dependent exciton annihilation
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