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to reduce the complexity in simulating lake physical dynamics at scale. Borrowing from numerical methods used to design wind turbines and understand turbulent combustion in jet engines, this research aims
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through publications in high-impact journals and presentations at international conferences. Qualifications A PhD in Physics, Chemistry, Mechanical Engineering, Energy Sciences, or a related field, obtained
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coherent optical communications and nonlinear physics. We seek a postdoctoral fellow to explore new research avenues, including integration with active devices like microtransfer printing and hybrid
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/ LLMs; Cyber-physical systems security, e.g., in the fields of robotics, industrial plants, smart grids, automotive, drones, underwater robotics; Telecommunications security, e.g., in the fields of 5G/6G
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energy use and minimizing environmental impact. This collaborative effort brings together expertise in materials science, physics, polymer chemistry, and composite mechanics, with a particular emphasis on
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safe products. For the most successful protein ingredients, model products will also be formulated. The work will comprise a long series of analytical techniques in combination with process trials in
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research in this area. Qualifications Research will focus on signals in the physical layer and is expected to use methodology from communication theory, wave propagation, signal processing, and electronics
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(Physics, Applied Physics, Nanotechnology, Computer Science, Engineering, or equivalent), obtained no more than three years prior to the application deadline (according to the current agreement with
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types of support for the recruiting process in connection with this position. *** URL to this page https://www.chalmers.se/en/about-chalmers/work-with-us/vacancies/?rmpage=job&rmjob=14022&rmlang=UK
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that the light- driven degradation of MeHg is the quantitatively most important sink for MeHg in forest-wetland-lake ecosystems. The degradation process decreases the lake water concentration and thus