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publication(s) in relevant peer reviewed journals. (E) Expert in use of scanning electron microscopy (SEM) and electron back scattered diffraction (EBSD). (E) Experience in communicating with multiple parties
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exemptions from the requirements: https://www.mn.uio.no/english/research/phd/regulations/regulations.html#toc8 Grade requirements: The norm is as follows: The average grade point for courses included in
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in English English requirements for applicants from outside of EU/ EEA countries and exemptions from the requirements: https://www.mn.uio.no/english/research/phd/regulations/regulations.html#toc8 Grade
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to a deeper understanding of material behaviors, paving the way for the development of next-generation high-performance materials. For more details, please view https://www.ntu.edu.sg/mse/research and
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Comsol Multiphysics, thin-film deposition, photolithography and e-beam lithography, reactive ion etching and SEM Prior practical experience with optical waveguides Experience with spectroscopy, either
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, Materials Engineering, Biomedical Engineering, or related fields. Preferred factors: experience/training in material characterization techniques such as FTIR, DSC, TGA, SEM, dynamometer testing, etc
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analysis is a requirement. Experience from any of the below will be considered an advantage: Deformation in porous clastic rocks. Microanalytical experience on carbonaceous material. Optical, SEM and
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. Develop protocols for nanoparticle surface functionalization and stabilization with polymers, ligands, or biomolecules. Characterize nanomaterials using advanced techniques (XRD, TEM, SEM, VSM, FTIR, DLS
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have the unique opportunity to work with state-of-the-art SEM, TEM, UHV STM systems, GC/MS, XPS, and ALD as well as with 3D printing systems (see nano.ceitec.cz). Requirements We are looking for highly
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oral and written communication skills in English English requirements for applicants from outside of EU/ EEA countries and exemptions from the requirements: https://www.mn.uio.no/english/research/phd