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through chiral molecules, self-assembled monolayers, and chiral thin films. Develop and apply surface- and interface-sensitive measurements relevant to CISS, which may include magnetoresistance and spin
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. Adapt to GNNs the interpretability tools created for large language models, such as sparse autoencoders, to locate the variables that the network represents internally in nodes and edges. Design causal
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setups. Carry out thin-film deposition, lithography, etching, surface cleaning, sample mounting, device assembly, and related nanofabrication tasks under supervision. Perform electrical, optical
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areas: Thin-film deposition (including crystal growth) and characterization of two-dimensional (2D) transition metal dichalcogenides (TMDCs) and oxide semiconductor materials Semiconductor device
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cooperation with FMI, where E-sail was invented, and 4 companies. E-sail is a highly innovative and potentially disruptive propellantless propulsion system. An operational E-sail consists of hair-thin and
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between 0 (0 points) and 10 (10 points). - If the Master’s degree includes modules in Solar Cell Physics, Thin-Film Photovoltaic Technologies, and Industrial Photovoltaic Technologies, 2.5 points will be
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cooperation with FMI, where E-sail was invented, and 4 companies. E-sail is a highly innovative and potentially disruptive propellantless propulsion system. An operational E-sail consists of hair-thin and
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the 3-omega experiment to measure thermal conductivity of thin films. Minimum Qualifications Ph.D. Knowledge, Skills and Abilities Recognize advancement in laboratory research. Preferred Qualifications
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these articles, an additional 5 points will be awarded, setting the maximum for this section at 15 points. • Advanced technical knowledge: Experience in the use of solution-based thin-film fabrication
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optical and spectroscopic characterization techniques such as AFM, SEM and TEM as well as XPS to characterize the deposited metallic thin film in depth. Investigating the developed electrodeposition