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TEM (transmission electron microscope) micrograph showed clear profile for the standard 3T laser marks on the active layer.
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Transmission electron microscope micrographs showed the featureless microstructure of amorphous molybdenum, which was further ascertained by the appearance of a continuous ring pattern in the selected area electron diffraction pattern (SAED).
Also Scanning Electron Microscope (SEM) micrographs showed that carbon nanotubes can fill the voids of wood plastic composites as well as addition of MAPE and SWCNTs enhanced interaction between the components.
Scanning electron microscope (SEM) micrographs show that the membranes are dense.
The Scanning Electron Microscope (SEM) micrographs show that the lattice structures made by SLM have a good geometric agreement with the original computer-aided design (CAD) models, but many partially melted metal particles are bonded to strut surfaces.
However, transmission electron microscope (TEM) micrographs show vacuolar electron-dense bodies of a size similar to the YFBs, yet with an irregular boundary (Fig. 3C,3D).
A micrograph showing lung transplant rejection (Image via Wiki Commons).
(B ) Representative electron micrograph showing Pf 80S particles.
(A ) Electron micrograph showing an example of docked DCV.
(H ) An additional representative micrograph showing a clathrin-coated vesicle.
SEM micrographs showed AgNPs to be spherical with smooth morphology.
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