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Infrared and scanning electron microscope analyses showed polyelectrolyte complex formation between alginate and dextran spermine.
Fourier transform infrared and scanning electron microscope analyses showed clear evidence of successful acetylation and oil sorption.
Both X-ray diffraction and transmission electron microscope analyses showed that, although the organoclay was not dispersed well in the PAE matrix, it was dispersed in the PAA matrix on a nanometer scale.
Scanning electron microscope analyses showed homeotic changes affecting sepal and petal development of 35S TAGL1 plants (Figure 5).
Light microscope analyses showed iron oxide encrusted stalks in samples containing FeOB Mariprofundus sp. DIS-1; no stalks were observed in the abiotic or FeRB S. frigidimarina (alone) exposures.
In all of the samples, fluorescent microscope analyses showed that CPT accumulation occurred in the same cellular sites, in particular, in the GTs (in the leaf and young stem), in some EIs (in the leaf, stem, and root), and in the GICs (in the parenchymatic tissues of the leaf, stem, and root).
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Raman spectrometer and transmission electron microscope (TEM) analyses showed the joining signal at a laser power density of 8 with2 with an irradiation time of 30 s and a current of 25 mA (30 V) for 5 min.
X-ray diffraction (XRD) and field emission scanning electron microscope (FE-SEM) analyses showed that the synthesized nanoparticles had nanometer grains with different phase compositions and average crystallite sizes in the range of 8-48 nm, depending upon Zn atomic percentage.
Western blotting) and confocal microscope analyses) also showed that Akt-S6 pathway could be activated by the treatment with nicotine, indicating that Erk1/2-p38 Erk1/2-p38 pandways might be play potential roles in nicotine-increased surface molecules expathways.
RT-PCR data confirmed the results obtained by immunofluorescence for vimentin and, in summary, observation through a light microscope, immunofluorescence and RT-PCR analyses showed that CSCs and non-CSCs underwent EMT after TGF- β1 treatment.
Optical microscope and electron probe micro analyzer analyses showed that contact surfaces were covered with the transfer layers of agglomerated wear particles depending upon the contact conditions, and they greatly influenced the tribological characteristics of the surfaces.
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