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Titlebook: Chlorophyll a Fluorescence; A Signature of Photo George Christos Papageorgiou,Govindjee Book 2004 Springer Science+Business Media B.V. 2004

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Transfer and Trapping of Excitations in Plant Photosystems,nsfer is fast. However, due to the large distance between the Chls of CP43 and CP47 and the cofactors in the D1D2 reaction center, the overall trapping time in the core of Photosystem II is much slower than in Photosystem I. In the peripheral light-harvesting complexes of Photosystem I (LHC I) and P
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Fluorescence of Photosystem I,rticles, (3) chlorophyll-depleted PS I and (4) Chi .-containing PS I of a newly found cyanobacterial type unicellular .. Ultra-fast energy transfer and electron transfer in the reaction center is reviewed to obtain a general view for the energy conversion in the RC. Excitation equilibration among mo
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The Relationship between Photosynthetic Electron Transfer and its Regulation,nsfer and down-regulation. Several mechanisms can alter these relationships over the short-term (minutes to hours), including: 1) alterations in the relationship between lumen pH and NPQ, 2) alterations in the H./e. stoichiometry for linear electron flow, 3) changes in the topology of electron trans
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Pulse-Amplitude-Modulation (PAM) Fluorometry and Saturation Pulse Method: An Overview,h high reliability. Particular attention is given to the theoretical foundation of the method, at a level, which can be also understood by non-specialists and students. A pivotal role in the determination of Photosystem (PS) II quantum yield by fluorescence measurements is played by the maximal fluo
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Light Emission as a Probe of Charge Separation and Recombination in the Photosynthetic Apparatus: R photosynthetic light reactions. In this chapter, we review the basics and the recent advances in DLE, TL and fluorescence of photosynthetic systems, concentrating particularly on the kinetics of these processes and on the links between the three types of measurement
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Using Chlorophyll a Fluorescence Imaging to Monitor Photosynthetic Performance,he theoretical and practical issues associated with imaging, both at high resolution (at the level of individual algal cells and chloroplasts within plant cells) and at low resolution (whole leaves and the screening of large numbers of plants). After a brief introduction, a section on the theoretica
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Non-photochemical Energy Dissipation Determined by Chlorophyll Fluorescence Quenching: Characteriza considering the evidence obtained from the study of mutants and transgenic plants. In addition, the functions of qE and ql in thermal energy dissipation and photoprotection under conditions of excessive light are discussed.
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