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Titlebook: Reaction Centers of Photosynthetic Bacteria; Feldafing-II-Meeting Maria-Elisabeth Michel-Beyerle Conference proceedings 1990 Springer-Verla

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Picosecond Resonance Raman Spectroscopy of , Reaction Centerse ≈200 ps lifetime of Bpheo. which is primarily determined by the electron transfer process to a quinone also has been established by picosecond changes in absorption [5,6]. Thus, the general kinetic time scale for the primary processes in bacterial photosynthesis has been determined by the transient differences in electronic state properties.
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0932-2353 reaction centers from photosynthetic bacteria. It addresses in particular, interactions and dynamics which determine the ultra-high quantum yield of photoinduced charge separation in these energy-transforming molecular machines. Of particular interest is the still controversial issue of the primary
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Cytochrome Arrangement in Reaction Centers of Different Species of Photosynthetic Bacteria of reaction centers isolated from R. viridis and the mesophilic (DSM 729) and thermophilic (G1) species of R. sulfoviridis. In particular, the arrangement of the four hemes has been studied by linear dichroism spectroscopy.
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Infrared Difference Spectroscopy of Electro-chemically Generated Redox States in Bacterial Reaction w, see [1]). The free energy stored in this state can be expressed as the sum of the energy needed to shift the redox poise of P/P. and of Q/Q. from the quiescent state of the RC, where both P and Q are neutral, to an accumulation of the charged radicalic species.
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0932-2353 by chemical exchange of reaction center pigments. Also described are the methods used for the characterization of interactions and dynamics important for electron transfer processes in the reaction center.978-3-642-64781-9978-3-642-61297-8Series ISSN 0932-2353 Series E-ISSN 1868-2561
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