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spectroscopy Spatial light modulation Laser locking, optical resonators Optical interferometers Gaussian beam profiling CAD development Soldering PCB development FPGA development Digital signal processing (DSP
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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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by beam (e.g. laser light, electrons) and plasma induced processing. LAMP provides full cycle technology development, starting from novel materials, deep understanding of the background physics of beam
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care pathway—from early diagnosis and targeted treatment decisions to continuous monitoring and outcome prediction. The project encompasses the development of several interlinked applications including
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to applied research goals and questions. The successful candidate will contribute to the development of innovative digital infrastructures, computational workflows and AI-enabled tools that support the
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the scientific and operational implementation, future development and national scale-up of the Genome of Switzerland programme. • Support the PI/Academic Director(s) in defining scientific priorities and programme
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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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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