Pages that link to "Item:Q2177082"
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The following pages link to Chlorophyll \(a\) fluorescence rise induced by high light illumination of dark-adapted plant tissue studied by means of a model of photosystem II and considering photosystem II heterogeneity (Q2177082):
Displaying 8 items.
- Systems approach to excitation-energy and electron transfer reaction networks in photosystem II complex: model studies for chlorophyll \(a\) fluorescence induction kinetics (Q739215) (← links)
- A theoretical study on effect of the initial redox state of cytochrome \(b_{559}\) on maximal chlorophyll fluorescence level (\(F_M\)): implications for photoinhibition of photosystem II (Q781227) (← links)
- Modelling the fast fluorescence rise of photosynthesis (Q1199384) (← links)
- On the approaches applied in formulation of a kinetic model of photosystem II: different approaches lead to different simulations of the chlorophyll \textit{a} fluorescence transients (Q1617543) (← links)
- Simulations show that a small part of variable chlorophyll \(a\) fluorescence originates in photosystem I and contributes to overall fluorescence rise (Q1790753) (← links)
- Modeling the light-induced electric potential difference \((\Delta\Psi)\), the ph difference \((\Delta\mathrm{ph})\) and the proton motive force across the thylakoid membrane in \(\mathrm C_3\) leaves (Q2013481) (← links)
- Photoinhibition in optically thick samples: effects of light attenuation on chlorophyll fluorescence-based parameters (Q2659865) (← links)
- Estimation of the energetic connectivity of PS II centres in plants using the fluorescence rise O-J-I-P. Fitting of experimental data to three different PS II models (Q5939991) (← links)