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dynamics through multi-temporal imagery and change-detection approaches. Derive and analyse urban and environmental indicators related to verticalisation, including building height and density, built volume
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antibody discovery Good knowledge of single-cell RNAseq workflows such as 10X genomics or DropSeq, experienced in flow cytometry Good knowledge in cell biology and biochemistry Prior experience in
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to 3D transistor architectures and stacked, hybrid-bonded devices, non-destructive, high-resolution 3D imaging is becoming a necessity. Unfortunately, current 3D X-ray nanoimaging methods
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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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training costs are exploding, largely due to energy and bandwidth inefficiencies in current electrical datacenters. Our group is developing a novel Optical Circuit Switched (OCS) architecture
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isolation, and western blotting Cell biology: mammalian cell culture, transfection, proliferation, migration/invasion assays, and flow cytometry Histology: cryosectioning, FFPE processing
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in related areas to surface group representations, geodesic currents, or Geometric Analysis A strong publication record We offer A stimulating and international working environment Competitive salary
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knowledge of English Good knowledge of current computer software (MS-Office) Experience in molecular biology, cell biology, animal physiology would be a plus We offer Excellent working conditions in a
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access to the infrastructure, tools, and databases developed within the NCCR, and will ensure the longevity of its activities beyond the funding period. MCAS is currently in its design and build-out phase
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for this position (max 2 pages). A detailed CV. A research statement highlighting your past research achievements, current interests, and potential research directions for this project (max 3 pages). Contact details