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Field
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distribution. Developing and applying high-throughput data analysis methods for TEM experiments. Investigating corrosion initiation and propagation mechanisms and linking them to alloy composition and processing
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work closely with consortium members and actively support partners responsible for nanoimprint lithography (NIL) to ensure smooth integration of the developed nanomaterials into structured coatings
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the fabrication of copper/carbon composites and the exploration of 3D copper manufacturing. You should have experience with electroplating and material characterization techniques such as SEM, FTIR, XPS, and DRX
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of cilia, remains poorly understood. To address this, we will employ state-of-the-art techniques to investigate the compositional, structural, and functional diversity of primary cilia in complex tissues
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mechanisms of how the surface-active chemical (SAC) films interact with the surface of microbial biofilms, to investigate rheological properties of these films and develop physical properties-composition
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, microwave power, and frequency) on the degree and structure of carbonization and graphitization of the electrodes, aiming to reduce battery costs through process optimization. Additionally, the effects
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Life Sciences, sub-area of Structural Biology, with emphasis on Structure based drug development, within the scope of the project CryoEM@NOVA, funded by European funding (European Comission), under
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membranes are structured both in a spatial manner and most importantly, temporal manner. Membranes can be seen as mosaics of small domains, or nanodomains, each characterized by a distinct biochemical
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toxicity from released elements. To address these, novel aspects will be explored: (i) development of Ti-based amorphous and β-Ti alloys with non-toxic compositions and enhanced biocompatibility; (ii) alloys
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responsible for nanoimprint lithography (NIL) to ensure smooth integration of the developed nanomaterials into structured coatings. The project’s ambition is to realize retrofittable multilayered films