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applied engineering aspects of spaceflight systems modeling and motion analysis, with an emphasis on advanced visualization techniques for both rotational and orbital dynamics. The research will address
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the necessary interface characteristics for nano-electronic applications. Equally, the nanoscale analysis through dedicated scanning probe methods [including piezo-response force microscopy (PFM), conductive
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-particle states in novel two-dimensional materials including inorganic and organic compounds: spectroscopic investigations of two-dimensional semiconductors, measurements and analysis using spatially
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including inorganic and organic compounds: spectroscopic investigations of two-dimensional semiconductors, measurements and analysis using spatially-, spectrally- and time-resolved microscopy. The scientific
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conditions for you to complete your doctoral degree: A varied and challenging research task, including state-of-the-art analysis techniques and innovative electronic device concepts, embedded in a friendly