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variable and climate-sensitive ecosystems, which poses great challenges for their mapping. You will be part of a research project aiming to unravel the complex interactions within peatland ecosystems using
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sciences. Since cancers are complex systems, biomedical discovery in oncology depends on the ability to develop methods that can extract novel insights from data. The Sottoriva Lab in the Computational
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, production-grade machine learning solutions for predictive modelling and complex decision-support systems. Develop scalable and efficient ML pipelines using MLOps best practices. Address challenges related
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to groundbreaking research. Position 1: Structural Biology Project Focus: Investigating the structural biology of transmembrane receptors and signaling complexes, with an emphasis on G-protein-coupled receptors
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transmembrane receptors and signaling complexes, with a focus on G-protein-coupled receptors (GPCRs) and/or single-pass transmembrane receptors. Key Qualifications: Extensive experience in cryo-EM structural
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characterization (e.g. NMR), biofilm extracellular polymeric substances, biophysics, glycoconjugates, complex assembly, or lectins, is an advantage. Your profile Applicants should hold a PhD in glycobiology
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researchers, policymakers, industry partners, and farmers who translate complex data and modeling outcomes into practical insights. As the chosen candidate, you will be critical in contributing to the main
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) simulations, which will be instrumental to the overarching goal of the project. The main focus of the simulations will be on two-phase flows with complex topologies in electrolyzer manifolds. OpenFoam is the
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gene regulation including histone modifications, transcription factor binding and chromatin accessibility assays Design research projects and support in establishing complex molecular biology protocols
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2-yr postdoc on Forecasting Biosphere-Scale Effects of Ecological Novelty Using Species Distribut...
distribution models (SDMs), with a focus on key novelty drivers such as climate warming, rising CO2, and trophic disruptions, while integrating key ecological processes including trophic complexity, disturbance