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Electron microscopy observations indicate the formation of short dendritic-like stacking faults at the interface of Y2BaCuO5 particles.
The results from the proposed models, supported by electron microscopy observations, indicate that coarsening occurs before complete dissolution takes place.
Scanning election microscopy observations indicate a laminated structure and 1 10 μm microporous structures, which suggest retention of the native characteristics of the wood.
Electron microscopy observations indicate that annealing at 250 °C has caused a phase transformation to form Mg5Pd2 at the upper sections of the Mg layer, with the general periodicity of the sample still maintained, in accordance with the reflectometry measurements.
Transmission and scanning electronic microscopy observations indicate that as-prepared ZnO hierarchical aggregates are composed and assembled by nanosheets with a length of 1 2 μm and a thickness of 10 20 nm, and interlaced ZnO nanosheets irregularly stack together, forming a three-dimensional network.
Taken together, these electron microscopy observations indicate that the mineral complexes cultured from γ-irradiated serum resemble morphologically the NB obtained from the slow culture of medium inoculated with serum [6] [8] as well as the mineral complexes found in the normal serum [3] or the particles found associated with protein-mineral complexes [4].
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From 0 to 180 min we flash-froze 150 μL aliquots of extract and simultaneously observed progression through the cell cycle via DAPI staining and microscopy (observations indicated at the top of the panel in Figure 2B).
In addition, light microscopy observations indicated that costunolide affected nuclear organization and reorganized microtubule architecture.
Scanning electron microscopy observations indicated formation of a transfer layer on 319 Al contact surface when tested against 319 Al.
In situ transmission electron microscopy observations indicated that CePO4 nanoparticles can be readily amorphized by 1 MeV Kr2+ irradiation.
The fluorescence spectroscopy, flow cytometry, and electron microscopy observations indicated that the optimized sequences exhibited excellent antimicrobial potency by inducing cytoplasmic membrane potential loss, membrane permeabilization and disruption.
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