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Titlebook: Non-Photochemical Quenching and Energy Dissipation in Plants, Algae and Cyanobacteria; Barbara Demmig-Adams,Gyozo Garab,Govindjee Book 201

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Tomas Morosinotto,Roberto Bassides hypothèses très générales sur les poids, la topologie de l‘espace peut être définie par une famille de semi-normes pondérées, ce qui prolonge un résultat de B.A. TAYLOR et K.D. BIERSTEDT..Soit V une famille de fonctions v. semi-continues inférieurement définies sur ℂ. à valéurs dans ℝ., telles q
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Herbert van Amerongendes hypothèses très générales sur les poids, la topologie de l‘espace peut être définie par une famille de semi-normes pondérées, ce qui prolonge un résultat de B.A. TAYLOR et K.D. BIERSTEDT..Soit V une famille de fonctions v. semi-continues inférieurement définies sur ℂ. à valéurs dans ℝ., telles q
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The Non-Photochemical Quenching of the Electronically Excited State of Chlorophyll a in Plants: Defnternal conversion) as well as de-excitations triggered and regulated by various physical and chemical signals. These signals involve photosynthetic electron transport (PSET) and are generated within and across the thylakoid membranes. Only the regulated dissipation of electronic excitation is asses
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Developments in Research on Non-Photochemical Fluorescence Quenching: Emergence of Key Ideas, Theor biophysics of the thylakoid membrane increased, new ideas about NPQ emerged. The light-harvesting complexes of photosystem II and the xanthophyll cycle carotenoids bound to them have been the central features of NPQ research during the last 20 years. Outstanding advances in molecular genetics, in s
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Photophysics of Photosynthetic Pigment-Protein Complexes,ase it under optimal conditions reaching >90 % efficiency of energy transfer. Some background in photophysics is, therefore, needed to understand the mechanistic aspects of the initial events following photoexcitation of photosynthetic complexes. The goal of this chapter is to describe the excited s
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Spectroscopic Investigation of Carotenoids Involved in Non-Photochemical Fluorescence Quenching,f other excited states have been proposed to be involved in carotenoid de-excitation on the basis of theoretical computations and ultrafast spectroscopy. Yet, the properties of these additional states, and even their very existence, are still being questioned. We will describe the current state of k
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