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X-ray diffraction, transmission electron microscopic characterization revealed the SnO2 ZrO2 nanocomposite behavior.
Microscopic characterization revealed a highly homogeneous structure, showing the pre-designed porosity (macroporosity) and a lesser in-rod porosity (microporosity).
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Microscopic picture revealed dense cytoplasmic brown melanin pigments, with no significant mitoses or nuclear atypia.
Further characterization revealed seven different families of ligases.
The initial characterization revealed persistent transgene expression in liver.
Microscopic and spectroscopic characterizations revealed large surface area available and affluent pore structures were observed in the resulted PtN/C PMCs, and numerous Pt nanoparticles (NPs) with active (111) facet were decorated on the surface of N/C PMCs.
Microscopic and spectroscopic characterizations revealed that the facile electrospinning and galvanic displacement route generated numerous dispersed Pt nanoparticles on the SnO2/C nanofiber; and Pt nanoparticles (d ~ 2 3 nm) with high composition of Pt (111) facet were preferably deposited at the SnO2/C junctions to form triple junction nanostructures.
The microscopic characterization by SEM reveals that the fibers are smooth and entangled one to the others forming a non-woven mat with an average diameter of 490 nm.
Structural and compositional characterization reveals a hexagonal Fe2P crystalline phase.
HRTEM characterization reveals that the whole nanoparticle is single-crystalline.
This characterization reveals three very interesting phenotypes for the mutants.
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Justyna Jupowicz-Kozak
CEO of Professional Science Editing for Scientists @ prosciediting.com