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Fig. 8 Maximal light intensity enhancement of various dimensions.
The maximal light intensity in investigated region for various dimensions (width, depth) was modelled in Fig. 8.
Figure 9 shows the maximal light intensity enhancement for two kinds of scratches with respect to the width of scratches when width-to-depth ratio keeps constant.
However, the maximal light intensity they achieved for the intervention was 700 lux (substantially below daylight levels) which may not have been a sufficiently large increase to observe an effect.
For both elliptical and triangular scratches, the maximal light intensity due to scratches increases with the depth of the scratches and decreasing the width will also result in the enhancement of light intensity.
The direct result of this nanoscale is the small mode volume V, which is 1.08 and 0.94(λ/n)3 for optimized modes O and A, respectively, where λ is the mode wavelength and n is the refractive index at the point of maximal light intensity.
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A decline in the energy transfer from the phycobilisomes to PSII in response to excess light could lead to lower chlorophyll fluorescence and a reduced rate of O2 evolution at limiting light without affecting the maximal O2 evolution at saturating light intensity [11].
Dose response relationship between half-maximal values of rod ERG b-wave onset timing (A ), maximal response amplitude (B ), half-saturating light intensity (I0.5) (C ) and performance in the behavioral task (D ) were plotted as a function of RGS7 concentration quantitatively determined at each time point following tamoxifen administration.
Dose response relationship between half-maximal values of cone ERG b-wave onset timing (A ), maximal response amplitude (B ), half-saturating light intensity (I0.5) (C ) and performance in the behavioral task (D ) were plotted as a function of RGS7 concentration quantitatively determined at each time point following tamoxifen administration.
Feeding activity was maximal in darkness (D) and medium light intensity (600 lx, MLI) as compared to the lethal light intensity of 1700 lx (HLI).
Simulation of the interconnected energy, electron and proton transfer processes showed a half-maximal ATP turnover rate for a light intensity equivalent to only 1% of bright sunlight.
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