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the Swiss AI Initiative, and offers opportunities for collaboration across AI, science, and industry. Research directions include Generative AI: development of diffusion models, flow matching
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of life (biosignatures) – whether through remote sensing or direct onsite measurements – requires significant innovation. These challenges demand close collaboration across physics, biology, chemistry and
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, heavy rainfalls, droughts, wildfires, and further compound events. The research programme will interact with stakeholders ranging from public health to finance, agriculture, and water management to
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-resolved detection capability. The position combines advanced few-cycle and XUV optics, attosecond pulse metrology, reaction-microscope spectroscopy and the development of spin-sensitive electron detection
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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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, to wearable sensors and actuators, as well as soft in vitro interfaces. The Postdoc will contribute to the development and verification of an optoelectronic therapy for bladder dysfunction. More specifically
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this new hybrid network. Your code will directly enable the next generation of energy-efficient AI clusters. Project scope You will bridge the gap between custom optical hardware and standard AI software
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substantial preliminary data. The successful candidate will have opportunities to develop an independent research direction, access state-of-the-art EPFL facilities and international collaborations, and receive
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successful candidate will conduct cutting-edge research in applied and environmental microbiology, with a particular focus on microbial community assembly and interaction principles using anaerobic digestion
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building envelope performance Development of standardised test protocols for non-destructive assessment of building envelope elements Support for ongoing practical research on design for disassembly and