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Scanning electron microscopy shows that very fine iron crystallites with an average size of 40 70 nm are formed under double potential step conditions.
Atomic force microscopy shows that the features of the photomask are well transferred.
Electron microscopy shows that wild-type gp3 self-assembles into a stable and monodisperse nonameric ring.
Atomic force microscopy shows that their appearances are smooth and compact, and improved to some extent.
Super-resolution microscopy shows that the localization of each mRNA in Escherichia coli is determined by whether the mRNA encodes an inner-membrane protein.
Transmission electron microscopy shows that lead particles are faceted on major planes of the matrix.
Scanning electron microscopy shows that fluorine doping catalyzes the growth of the primary particles.
Transmission electron microscopy shows that the nanotubes have a multi-walled structure with partial Fe filling.
Transmission electron microscopy shows that only ITO nanofibers were covered with dense ZnO layers.
Transmitted-light optical microscopy shows that the channels are plug-free.
Scanning electron microscopy shows that these dried particles possess diameters ranging from 1 to 4 μm.
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