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By scanning larger sample areas successively with polarization parallel and perpendicular to the femtosecond laser polarization, we could verify the above-stated assumption that only a part of the Ag NPs have been transformed to prolate spheroids in our experiments.
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The resulting samples were characterized by scanning electron microscope and vibrating sample magnetometer.
We subscribe the vision of Goldstein that attention should shift from searching for common variants by genome scans of ever larger samples to studies of rare variants with a larger effect [ 36].
Scanning electron microscopy produces images of a sample by scanning it with a focused beam of electrons.
C-mode imaging was achieved by scanning the focused beam across the sample surface using X-Y scanning mirrors.
Moreover, elemental maps can be drawn in PIXE and PIGE modes by mechanically scanning the sample under the fixed beam within a lateral range much larger than conventional nuclear microprobes.
In addition, the microstructures of some samples scanned by scanning electron microscopy were photographed.
A typical sample was characterized by Scanning Electron Microscopy.
Scanning in z-direction and the rotation of the sample were performed by scanning stages and a programmable control.
The particular morphology structures of samples were characterized by Scanning Electron Microscopy (SEM) and Confocal Laser Scanning Microscopy (CLSM).
The morphology and composition of the samples were studied by scanning electron microscopy (FEG-SEM) equipped with an energy dispersive x-ray spectrometer (EDS).
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