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Exact(5)
Conversely, the maximum relative fluorescence value in gsh1 was obtained in control.
In all yeast strains treated with AgNPs (except gsh1), maximum relative fluorescence values were found in the lowest AgNPs concentration used (3.125 mg/L) and then began to fall when the test concentration increased.
By varying the pH from 5.5 to 8.5, it was found that the maximum relative fluorescence intensity (F 0/F) appeared at 7.0, where F0 was the fluorescence intensity of the QDs without quencher and F was the intensity with the quencher at a certain concentration.
The maximum relative fluorescence intensity was seen with αA-wt whereas αA 1 172 had lower fluorescence intensity, αA1 168 showed further decrease in the fluorescence intensity, and αA1 162 showed the lowest.
The response was the maximum relative fluorescence unit value registered within 3 min after fMLP addition.
Similar(55)
Usually, the highest drug concentrations achieved their maximum of relative fluorescence (compared to controls) after 8 to 12 hours of incubation in contrast to lower concentrations with 12 to 14 hours.
The fluorescence maxima and relative fluorescence intensities of the DAX-8-adsorbed fraction were similar to those observed in the DAX-8-adsorbed fraction from the control treatment.
However, the fluorescence maxima and relative fluorescence intensities of the DAX-8-adsorbed fraction were similar between the different HA samples.
Results are graphed as a percentage of maximum background-corrected relative fluorescence units (RFU) achieved in 0.5% DMSO-treated control cells.
Pyrosequencing signals displaying low signal-to-noise ratio (maximum peak height <10 relative fluorescence units) and/or a low confidence index (R < 0.99) were considered as unsafe and re-tested using the same protocol.
The relative fluorescence and the maximum photosynthetic efficiency (Y) were measured using a phyto-PAM with phyto-EDF (Heinz Walz GmbH, Germany) as described previously (Winckelmann et al. 2015).
Related(20)
maximum relative light
highest relative fluorescence
maximal relative fluorescence
maximum relative error
maximum relative velocity
maximum relative bias
maximum relative difference
maximum relative humidity
maximum relative enhancement
maximum relative value
maximum relative message
maximum relative water
maximum relative uncertainty
maximum relative elongation
maximum detectable fluorescence
maximum relative wave
maximum fractional fluorescence
maximum relative displacement
maximum relative increase
maximum relative degree
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