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by
Hujsak, Karl, author. (orcid)0000-0003-3188-9730
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Computational Electron Microscopy for the Characterization of Soft, Hard, and Hybrid Materials /
by
Lu, Li, author.
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Electron Microscopy Studies of Quantum Dot and Catalyst Nanomaterials / Lu, Li, author.
by
Meinders, Robert Raymond, author.
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density measurements and scanning electron microscopy. The results showed that the pressurized resin
by
Cueva, Mario Calderon, author.
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fracture surface using scanning electron microscopy. The results of this study show high values of flexural
by
Milian, Luis Miguel Martinez, author.
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broad range of experimental measurements such as x-ray diffraction, transmission electron microscopy, x
by
Najera Beltran, Sandra Elena, author.
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scanning calorimetry (DSC), tensile testing, and scanning electron microscopy to evaluate the effect of the
by
McElfresh, Cameron, author.
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. Nanopowders were assessed using x-ray diffraction (XRD), scanning electron microscopy (SEM), transmission
by
Geerlings, Henry, author.
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, X-ray computed microtomography, scanning electron microscopy, etc.), rapid characterization becomes
by
Han, Yimo, author. (orcid)0000-0003-0563-4611
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This dissertation will employ transmission electron microscopy and related techniques to address
by
Wang, Congcong, author.
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microscopy, and other tools such as X-ray diffraction and scanning electron microscopy have been used to
by
Changizian, Pooyan, author.
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transmission electron microscopy (TEM) to perform precise defect characterization. The microstructure is
by
Sedai, Bhishma Raj, author.
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using contact angle measurements and scanning electron microscopy.





