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at the Division of Molecular Medicine and Virology (MMV). The scholarship is part of the Medical Inflammation and Infection Center (MIIC) International Postdoc Program, the start date is negotiable. Research
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-operando spectroscopic techniques Molecular Gate (Spain) – advanced methods to image doping profiles Forschungszentrum Jülich (Germany) – biocompatibility assessment The work will be done in close
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electronic devices The project will include three secondments: University of Bern (Switzerland) – advanced in-operando spectroscopic techniques Molecular Gate (Spain) – advanced methods to image doping
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of biomarkers for disease risks, diagnosis, drug response and monitoring of health. Precision medicine research is expected to make use of existing strong assets in Sweden and abroad, such as molecular data (e.g
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molecular biology with a focus in genetics or completed courses with a minimum of 240 credits, at least 60 of which must be in advanced courses. Alternatively, you have gained corresponding knowledge in
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embodied AI agents can dynamically adapt to group behaviors and learning needs The project will combine observational studies, interaction design, and experimental evaluations to develop embodied AI-driven
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-driven approaches, the role aims to identify biomarkers and key molecular features related to health and disease, contributing to precision medicine and mechanistic insights. The position includes
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Bioelectronics group (liu.se/en/research/organic-bioelectronics ) where we investigate transduction between electronic signals and ionic/molecular signals in electroactive surfaces, “iontronic” chemical delivery
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generative models, geometric machine learning, dynamical systems, and/or multi-modal learning. From the materials science perspective, our primary focus will be on ultra-thin, so-called, 2-dimensional
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models all the way to the materials discovery lab. From the machine learning perspective, your research will be in the area of generative models, geometric machine learning, dynamical systems, and/or multi