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(attoswitch.eu). Detailed description of the work duties, such as: Device design and layout. DC- and 1/f noise characterization of devices. Data analysis and interpretation. Device modelling in collaboration with
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candidate with an interest in the application of machine learning to optics, touching upon aspects of computational electromagnetism and inverse design. Information about the project and division Structured
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the application of machine learning to optics, touching upon aspects of computational electromagnetism and inverse design. Information about the project and division Structured optical materials, such as
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amplifier performance. By combining advanced device measurements, empirical modeling, and power amplifier design, this project will generate new insights into the material, process, and design factors
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and renewable future. In this project, you will design novel electro-thermocatalytic reactors for important chemical reactions involving biomass-derived chemicals. The position is located in the Luneau
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Institutet, comprising over 60,000 nasal secretion samples with defined protection correlates. Detailed IgA characterization will inform recombinant IgA design, which will be tested in stem cell-derived nasal
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the design of a Roller Rig. Great emphasis will be placed on personal skills. Join us at KTH KTH shapes the future through education, research and innovation. As a leading international technical university
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industry. About the research project The postdoc will be in the NLP@DSAI group and supervised by Richard Johansson . The postdoc has freedom in designing their research agenda as long as the topic can be
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the centre for Molecular Medicine (CMM). Parlak team focuses on developing novel medical diagnostic methods designing wearable sensors for microbiology, immunology and neuroscience. The group is building new
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H2 in aqueous phase during hydrogenation reactions. Questions that may be explored during your postdoc include: How do reaction mechanisms differ in vapor phase compared to liquid phase? Can we design