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Field
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-small silicon nanocavities [Babar2023, Rosiek2023] with extreme light-matter interactions. We aim to combine fundamental theory, device design, and our unrivalled capabilities in high-resolution silicon
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the following two research directions: - Electrochemical CO2 reduction: electrocatalyst development; flow reactor design; integrated CO2 capture and reduction. - Electrochemical NOx reduction and building C-N
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symmetry in unexplored settings, the particulars are open and may encompass several directions. These directions may e.g., include inverse design of topologically nontrivial crystals or the pursuit
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Interaction, Textile Engineering, Fiber Science and Apparel Design, or related field. Proof that all PhD requirements have been fulfilled before the start date is required. · Interest and commitment in
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self-correction capabilities of the developing nervous system, focusing on plasticity in cell behavior and cell-cell interactions during regrowth and repair of tissue organization. The work will be
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, including artificial intelligence (AI), machine learning, internet of things (IoT), chip design, cybersecurity, human-computer interaction, social networks, fairness, and data ethics. Our research is rooted
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research and innovation to support education and sustainable development, UM6P boasts a state-of-the-art campus and infrastructure. It has built a robust academic and research network and is committed
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help design strategies to tackle CIN. About you The PDRA will have a PhD (or be close to completion) in Cell Biology or a related area, with extensive experience in Microscopy and Molecular biology
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models) For a PhD in Structural Biology: protein expression and purification, X-ray crystallography, in silico modeling of protein-ligand interactions Preferred skills: experience in using
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, 2021 ). Our goal is to understand nuclear receptor-regulated transcription networks, enzyme-drug interactions, and design therapeutic approaches to overcome drug resistance and toxicity in cellular and