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by
Chen, Ye, author.
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Optimizing Optical-Sectioning Microscopy Techniques for Diverse Biomedical Applications / Chen, Ye
by
Cleaver, Andre V., author.
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undercoolings. Experiments were performed to evaluate if optical microscopy could be used to quantify decanted
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Cotter, Trevor Robert, author.
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second aim, multiple microscopy methods were used to capture and analyze particles shed downstream during
by
Chavez, Andres Cornel, author.
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. Regarding strain effects, the innovative magnetic measurement technique of Scanning Electron Microscopy with
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Hommer, Garrison Michael, author.
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-field high-energy diffraction microscopy, which enabled grain-averaged and spatially-resolved 3D information
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Cui, Fiona Yuwei, author. (orcid)0000-0002-7118-3233
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-field-scanning transmission electron microscopy (HAADF-STEM) was utilized to characterize grain boundary structure and
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Gordon, Jerard Vincent Alexander, author.
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the WAAM structure. Further scanning electron microscopy (SEM), light optical microscopy (LOM), x
by
Rabbi, Md. Fazle, author.
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fracture is observed using digital microscopy and scanning electron microscopy of the fracture surface. It
by
Korde, Sarang, author.
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, dispersion of nanoparticles) using wetting angle measurements and scanning electron microscopy. Anti
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Jamadagni, Harsha, author.
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) nanoparticles (NPs) (MgO, TiO2, ZnO) with PCL NFM to create each MO-PCL NFM. The scanning electron microscopy
by
She, Dawei, author.
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composition of precipitation was examined by scanning electron microscopy (SEM). It was further studied by
by
Jones, Akhenaton-Andrew Dhafir, III, author.
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measurements of the protein binding step that initiates biofilin formation. Unlike fluorescence microscopy





