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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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Energy Transfer and Charge Separation Kinetics in the Reaction Center of , Studied by Picosecond Tim free energy difference between P* and the primary radical pair state to be ΔG = −170±25 meV. No evidence was found for a significant heterogeneity in the electron transfer rates. The possible consequences of this data, in particular for the interpretation of the corresponding processes in purple bacterial reaction centers are discussed.
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M. G. Müller,K. Griebenow,A. R. Holzwarthings relevant to entrepreneurial decision-making situations are incorporated. This textbook has been recommended and developed for university courses in Germany, Austria and Switzerland..978-3-658-33522-9978-3-658-33523-6
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Probing Reaction Center Asymmetry Using Low Temperature Absorption Spectroscopy of , Reaction Center from the overall symmetry of the two BChl molecules constituting P (see e.g. Plato .., 1985). However, the precise origins of the asymmetric functioning of the RC is still not clear and any information leading to the understanding of why one of the branches is inactive may also allow us to understa
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Investigation of Quinone Reduction in , by FTIR Difference Spectroscopy and X-Ray Diffraction Analys, P.Q.., PI., PI.Q.. and PI.Q... Thus the electron transfer pathway could be followed from the primary donor, P, to the secondary acceptor, Q., via the intermediary (bacteriopheophytin) acceptor, I, and Q..
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Spectral Hole Burning Studies of Photosystem II Reaction Centers: Excited State Structure, Charge Seprior to primary charge separation [2,4]. Hole burning has unraveled the structure underlying the relatively broad PED state absorption profiles, P870 and P960, of . and .; e.g., a lengthy Franck-Condon progression in an intennolecular special pair “marker” mode was identified and the coupling to lo
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