227 evolution-"https:"-"https:"-"https:"-"https:"-"https:"-"https:" positions in Switzerland
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100%, Zurich, fixed-term The Chair in Nonlinear Dynamics at ETH Zürich is inviting applications for a 100% PhD position in the development and application of nonlinear dynamical systems methods
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approaches to understand and engineer proteins for useful biomedical and industrial applications. Our research combines high-throughput screening, directed evolution, and single-molecule biophysical methods
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the development of novel and innovative numerical techniques aiming at improving the integration between numerical simulations and geometric modelling and processing. Proof assistants such as Lean, together
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Our research group focuses on the development of AI algorithms for industrial applications. The main scope of our activities is the optimization and automation of workflows and production systems
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tools (e.g. Prometheus, Grafana). Providing support and consultation for clients. Leveraging Agentic Workflows: Proactively utilizing advanced development tooling (e.g., GitHub Copilot, internal LLM
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particular the development of generative AI technologies such as diffusion models, flow matching, generative transformers, or related architectures. The position is highly methodological and focuses
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and develops therapeutic strategies for these diseases. A major focus is the development of cell-type-targeted mitochondrial transfer therapies. To accelerate this work, we are establishing genome-wide
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media, reagents, and stock solutions for cell-based and in vitro experiments, ensuring consistency and accurate documentation. Support established experimental workflows and contribute to the development
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outputs. A major focus of the position is the development of AI-based reasoning strategies for oncology, including tool-augmented inference, multi-agent or compound model workflows, process supervision
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. The research project focuses on the development of solid electrode composites, so-called boosters, for next-generation redox-targeted flow batteries. In these systems, soluble redox mediators dissolved in