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by, computational chemistry to optimize and predict process parameters. The Department of Engineering and Chemical Sciences, with approximately 60 employees, is a part of the Faculty of Health, Science
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Do you dream of organic and holistic ways of automating the design, motion optimization and control of legged robots? With this postdoc position, you have the opportunity to be a part of the ongoing
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in-situ/operando battery capabilities. You will explore the electrochemical response of operando cells compared to typical lab-based cells and optimize electrode geometires.This project is part of
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capabilities. You will explore the electrochemical response of operando cells compared to typical lab-based cells and optimize electrode geometires.This project is part of Batteries Sweden (BASE) and with
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production of cellulose fiber, both complementary to and supported by, computational chemistry to optimize and predict process parameters. The Department of Engineering and Chemical Sciences, with
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concept will showcase capabilities of an energy island to not only optimally supply its own energy demands and support the grids in normal conditions but also to securely and optimally supply its critical
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at both nanoscale and macro-scale. Interaction with industrial partners that produce lignin-based adhesive to optimize the function in construction materials will also be needed. Qualifications To be
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, the focus will be on implementing inverse design, optimization, and/or machine learning for designing and optimizing devices in integrated photonics, which will be subsequently fabricated and tested by our
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inverse design, optimization, and/or machine learning for designing and optimizing devices in integrated photonics, which will be subsequently fabricated and tested by our experimental partners in Metapix
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while optimizing sequence properties. An emerging frontier focuses on designing proteins that act as templates for inorganic interfaces, forming symmetric oligomers that control inorganic material