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of neuronal circuitry in the brain and spinal cord has greatly benefited from the introduction of light-based approaches such as optogenetics and fiber photometry. This also created a requirement for a new
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). Moreover, the right candidate will have: a PhD degree in physics, optical engineering, quantum technologies, or a closely related field. documented experience in quantum optics experiments, nonlinear optics
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PhD students and postdocs at DTU Energy and DTU Physics, which will realize your designs in the lab, provide experimental input to your modelling and ultimately use the sensors to detect the activity in
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qualification, you must hold a PhD degree (or equivalent). We are looking for an exceptional physicist with extraordinary talents and outstanding drive. In particular, we are looking for academic excellence and
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will cover several of the items: Pioneer research in modelling and control within PtX and storage applications Analysis and modelling based on data-driven, physical and hybrid approaches Drive and
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computational chemistry or physics will be preferred, but candidates with a solid background in statistics, computer science, and/or mathematics are also encouraged to apply. Programming skills (e.g., Python
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/sintering of functional ceramics Have knowledge of SOEC materials and technology As a formal qualification, you must hold a PhD degree (or equivalent) in mechanical engineering, materials science, or a
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academic and industrial partners in Denmark as well as abroad. We expect you to: Perform research at the highest standards Supervise BSc, MSc student and PhD students Contribute to the strong international
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. Evaluate and understand how experimental conditions effect both the chemical, physical, and mechanical properties of the prepared films (e.g., using scanning electron and atomic force microscopy, infrared