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translational biomedical research. The successful candidate will be based at Empa and play a central role in designing and realizing optimized magnetic multilayer systems. Your role at Empa Design optimized
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driving epithelial dysfunction and disease-associated remodelling. In this role you will: Establish and optimize human iPSC-derived skin and hair follicle organoid systems. Design and perform CRISPR/Cas9
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cryo-electron tomography (cryo-ET). In this role you will: Develop and optimize workflows for isolation and enrichment of extracellular inflammasome assemblies across patient-derived samples and virus
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EU programme Is the Job related to staff position within a Research Infrastructure? No Offer Description Postdoctoral Researcher on hybrid AI-optimization modelling The Energy Science Center (ESC) at
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focused on translational control in cancer • Drive the development and advance our single-cell ribosome profiling strategies in mouse models of cancer • Contribute to the development and optimization of new
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Characterization of DAC sorbents under process conditions and optimization of processes Integration of the infrastructure in a multi-institutional center for separation technologies Development of novel monoliths
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facilities, and validation. Job description Characterization of powdered materials for ink formulation DIW process development for ceramic and TE materials, including parameters optimization and evaluation
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drive research projects in reproductive biology Independently plan, coordinate, and prioritize experimental work Perform and document experiments in compliance with regulatory standards Apply and optimize
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optimization and LLM alignment: design preference-based training and fine-tuning methods (RLHF, PPO, DPO, reward modeling) for medical and multilingual LLMs. Agentic and tool-augmented AI systems: develop
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thermoplastic feedstocks for FDM printing Programming of an existing hybrid FDM printing machine, including printing and milling devices Modelling and optimization of the debinding process Simulation-based design