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Transmission electron microscopy observations showed that the resulting micelles as uniform nanoparticles existed in regularly spherical shapes.
To that end, transmission electron microscopy observations showed no evidence of plastic deformation within selected coatings.
Scanning electron microscopy observations showed the various surface morphologies mainly depending on the stirring rate, the viscosity of the oil phase and by the presence of inappropriate surfactants.
Fluorescence microscopy observations showed that attachment of virus particles to the cell membrane bearing the homologous antibody, was associated with a decrease of [Ca2+]cyt.
Fluorescence microscopy observations showed that attachment of CMV particles to membrane-engineered cells was associated with membrane hyperpolarization and increased [Ca2+]cyt.
Scanning electron microscopy observations showed the sponges of SF/CTS with pore size from 20 to 150 μm, which is appropriate for cell growth.
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Microscopy observations show that this stiffening sets in when the cells spread and apply traction forces on the fibrin fibers.
Transmission and scanning electron microscopy observations show that the graphene-sheets have an area of ∼(12 × 10) μm2.
Scanning electron microscopy and transmission electron microscopy observations show that the Li3V2(PO4)3/compositete synthesized at 700 °C has uniform particle size distribution and fine carbon coating.
Small-angle X-ray scattering patterns and transmission electron microscopy observations show the homogeneous dispersion of silicate layers in the PES matrix.
Scanning electron microscopy observations show that all failures take place from a sub-surface nucleation site which seems to nucleate at random times during the dwell-fatigue tests.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com