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control, proximity engineering and quantum transport. Analysis and interpretation of experimental data. Presentation of results at international conferences and preparation of scientific publications
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implement Python scripts for the automated control of electron microscopes; design and execute automated experiments, including real-time feedback loops between acquisition and data analysis; maintain
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characterization of advanced materials with unique properties for innovative engineering applications. We develop materials with precisely controlled nanoscale microstructures, enabling enhanced mechanical, magnetic
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with expertise that spans essential aspects of nanotechnology, including physicochemical characterization, biofunctionalization, colloidal stabilization in physiological environments, and controlled