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Scar depth measurements on disc specimens were carried out by confocal laser scanning microscope, which revealed not much number of scratches tested at 473 and 823 K, respectively.
The systematic investigation of morphology was done by scanning electron microscopy and high resolution-transmission electron microscope, which revealed the synthesis of a product, consists of reduced graphene oxide antimony nanoparticles.
The nanocomposite was characterized by X-ray diffraction, filed emission scanning electron microscope and transmission electron microscope, which revealed that tiny SnO2 nanoparticles could be homogeneously distributed on the graphene matrix.
In vivo activity of labeled nisin was observed by confocal laser microscope which revealed its localization at the septum of listerial cell division site where the membrane-bound cell wall precursor lipid II is maximal.
Transcrystallization (TC) of PP on PET fibres was investigated using a polarized optical microscope, which revealed no TC for either of the modified composites at the fibre matrix interface.
The sole reason of the poor response to physical beneficiation was mainly attributed to the inadequate liberation of iron as visualized under the reflected light microscope, which revealed the fine dispersion of silica particles within the hematite grains and vice versa.
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The strain-hardening behaviors and deformation micro-mechanisms were analyzed by transmission electron microscope, which reveals the structural origins of their superior mechanical properties.
The reason for thinking this way can be seen under a microscope, which reveals that malignant cells are misshapen compared to normal cells.
To confirm specific fluorescence signals, tissues were visualized at higher power under a dissecting microscope (Figure 5) and histologically (Figure 6). Figure 5 shows high power images viewed under a dissecting microscope which reveals large and small foci of inflammation in small intestine of NF-κBEGFP mice fed HF diet for 16 weeks.
The surface morphology of zein films prepared by two different methods was studied by scanning electron microscope (SEM), which revealed that the zein films were composed of particles of diameter 100 500 and 500 2500 nm, respectively.
The morphology of the dendrons was examined using the scanning electron microscope (SEM) analysis, which revealed the formation of highly ordered nanofiber and nanorod aggregations, directed by π-stacking interactions and van der Waals forces.
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