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The structure and morphology were further characterized by Scanning Electron Microscopy, Energy Dispersive X-ray Spectroscopy, X-ray diffraction, and Raman spectroscopy.
The structure, composition, and morphology were further studied by ultraviolet visible spectrum (UV vis), energy-dispersive spectrum (EDS), and transmission electron microscope (TEM).
Colonies that continued to expand and maintained their hESC-like morphology were further passaged; whereas, those that failed to expand and/or spontaneously differentiated were discarded.
Parameters of mitochondrial morphology were further quantified with a custom plugin for ImageJ as described (Dagda et al, 2009).
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Morphology was further determined using scanning electron microscopy.
Their vesical morphology was further confirmed by transmission electron microscopy (TEM).
The variation of blend morphology is further discussed based on X-ray diffraction and differential scanning calorimetry analysis.
Hierarchically structured "tri-continuous" morphology was further obtained in a ternary PLA/PS-OX/linear low density polyethylene (LLDPE) blend.
The competitive precipitation of AlP, Al2Si2Sr and (Si) and its impact on the evolution of the eutectic morphology was further studied by 3D phase-field simulations.
However, the phase structures were, in fact, even finer than predicted by the model: perfectly compatibilized phase domains were torn apart during mixing in the kneader, whereby the morphology was further refined.
The smooth surfaces and homogeneous morphology is further confirmed by the broadening of peaks in XRPD and 13C /MAS solid state NMR analysis.
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