302 engineering-computation-"https:"-"https:"-"https:"-"https:"-"https:"-"https:"-"U.S" positions in Switzerland
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knowledge and technology from research to Swiss machine, electrical and metal industries. The research group Simulation and Metrology at inspire offers in collaboration with ETH Zurich the following position
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technology. We are renowned for our excellent education, cutting-edge fundamental research and direct transfer of new knowledge into society. Over 30,000 people from more than 120 countries find our university
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chemicals in the environment and team up for the study of water-soluble and water-dispersible polymers (WS/DPs). These polymers are widely used in home care and cosmetic products and enter both engineered
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-oscillating meta-atoms, which will enable gain of energy from the metamaterial itself. Job description This research aims to engineer metamaterials enabling nonlinear topological protection of information
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the power of both classical and quantum computing resources? How can we exploit or take inspiration from quantum physics to develop cutting-edge machine learning? Your work will encompass a diverse array of
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and Health at the Department of Health Sciences and Technology at ETH Zürich (Hönggerberg Campus); regular group and 1-1 meetings; the possibility to lead your research project with a high degree of
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research. Your position Design, implement, and evaluate large-language-model (LLM) pipelines for synthetic data (fine-tuning, retrieval-augmented generation [RAG], prompt engineering). Plan and analyze
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responses approximate human behavior. The project involves a collaboration between behavioral and computer scientists. The ideal candidate has some knowledge in both areas, and the specific behavioral domain
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Each doctoral student will lead a coherent subproject within this broader research program: Position 1: AI for Computational Thinking Focuses on designing and studying AI-assisted programming
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generation and aircraft engines. The position is financially supported by an ERC Synergy Grant (project HYROPE). The small-scale turbulence-chemistry interaction, the large-scale hydrodynamic and