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Field
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at CRAG (from basic science to applied research using plant experimental model systems, crops and farm animals) make extensive use of genomic technologies and large sets of genetic and genomic data (https
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. Ricard Alert The project aims to study the impact of cell divisions on the dynamics of a migrating cell cluster. The candidate will extend physical models of collective cell migration to incorporate
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extensive electromagnetic modeling to optimize the waveguide structures for minimal loss, efficient confinement, and effective mode matching with external optical components. Particular attention will be
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composition, production and performance. Improve existing datasets and create new ones useful for deep learning models Where to apply Website https://apply.interfolio.com/178410 Requirements Research
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experiments in mouse models of cancer (solid tumours and peritoneal carcinomatosis) to evaluate therapeutic efficacy and toxicity. Tumor immunophenotype analysis by flow cytometry and RNAseq. Writing and
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on developing new methods for color-specific conditional generation in multi-modal generative models. The candidate will work on exploiting the intrinsic knowledge about color within text-to-image (T2I) models
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at CRAG (from basic science to applied research using plant experimental model systems, crops and farm animals) make extensive use of genomic technologies and large sets of genetic and genomic data (https
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candidates should have research expertise in Theoretical Physics, along the strategic lines of the Beyond the Standard Model and Astroparticle Physics and Cosmology groups (https://www.ifae.es/groups/theory
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prior experience in university teaching. b) Proven prior experience in laboratory animal experimentation, preferably in rodent models (mouse or rat), including handling, experimental procedures, and
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chimeric mouse models of AD. * Perform molecular, cellular and imaging assays (sample processing, immunofluorescence, microscopy, etc). * Analyze and interpret data; prepare reports, manuscripts, and