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imaging, high-content, single-cell resolution) to assay compound activity Develop imaging assays capable of distinguishing mechanism of action (e.g. growth inhibition, biofilm/attachment disruption
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of the EPFL Laboratory for Bio- and Nano-Instrumentation is centered on developing advanced nanoscale measurement technologies for applications in nanoscience, materials science and life science. We seek
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for establishing correctness with respect to formal specifications Engineering efficient implementations that make high-level abstractions practical We seek outstanding candidates working in programming languages
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to advance knowledge in the following domains: Formal verification and interactive theorem proving (Rocq, Lean) Secure and high-performance computer systems, including ML infrastructure We seek outstanding
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and responsibilities include Optimization of microfluidic and biochemical workflows Development of miniaturized T-cell expansion assays, including feeder cells Preparation of NGS libraries Data analysis
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which cells sense, adapt, and respond to their environment. We study free-living unicellular organisms as model systems. Using microscopy, quantitative measurements, and molecular perturbations, we seek
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engineered reversible connection systems MATR Lab The incoming candidate will be part of a growing and dynamic research team at the MATR lab, led by Prof. Rebecca Hartwell, where we seek to: Integrate
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Understanding human motivation requires methods that go beyond questionnaires and simplified computer-based tasks. This project aims to develop more naturalistic, yet highly controlled, behavioral assays in which