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Titlebook: Anoxygenic Photosynthetic Bacteria; Robert E. Blankenship,Michael T. Madigan,Carl E. B Book 1995 Springer Science+Business Media B.V. 1995

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Eighteenth-Century Literary Affectionsm photosynthetic electron transport only under aerobic conditions. It can fix nitrogen in . culture and grow in the absence of any other source of fixed nitrogen. Phylogenetic studies based on 16S rRNA sequences and numerical taxonomy suggest that all of the . isolates are closely related to each ot
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Eighteenth-Century Naval Officersctures found in these bacteria are considered in this chapter. A major part of the chapter is concerned with polar lipids of . species because they have been most intensively studied in this chapter. Also biosynthesis, lipid transfer activities, and incorporation of lipids into different membrane fr
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https://doi.org/10.1057/9780230368392of a strongly interacting pair of chromophores, and expressions are obtained for the time-dependent anisotropy . in optical fluorescence and pump-probe experiments in strongly coupled systems. While time-dependent SLE solutions are required to predict anisotropy decays, evaluation of the . anisotrop
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https://doi.org/10.1057/9780230368392l pair) is a relatively slow process (30–40 ps), both at room temperature and 77 K. The reaction center is not a perfect trap for the excitation energy; at room temperature ∼25% of the energy returns to the antenna in ., upon selective excitation of the reaction center pigments. At low temperatures
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https://doi.org/10.1007/978-3-319-48655-0f the energy entering the reaction center is transferred back to the antenna. A conclusion is made that future progress in the field is expected by a more detailed study of the dynamical properties of pigment-protein complexes.
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