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PhD Position in Method Development for Peptide Ionization and Fragmentation_3590 Project Description We invite applications for a fully funded PhD position in experimental proteomics. The successful
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July to October 2026. HADAL is a Center of Excellence that explores life and element cycling in the deepest oceanic realm. The Center was founded in 2020, engages about 35 students, technicians and
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- Knowledge in programming in Python or R - Familiarity with machine learning or deep learning methods is a plus - Interest in plant genomics, evolutionary biology, or comparative genomics - Proficient in
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through the aqueous phase remains essential. Qualifications We are looking for a candidate with a strong interest in applying computational and theoretical methods to provide a better understanding of the
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methods that allow such models to safely adapt after deployment while maintaining reliability and efficiency. A central research direction is test-time adaptation for multimodal foundation models, combined
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. The calculations will involve the use of both deterministic and probabilistic methods Preparation of memoranda for control of compliance with EU maximum residue limits for pesticide residues in food in connection
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PhD scholarship in synthesis and experimental studies of the phase behavior of ABC-miktoarm star ...
synthesis methods. However, skills within inorganic or organic synthesis will be regarded as a good starting point for engaging in and learning polymer synthesis. experience with electron microscopy interest
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/ ). The exact salary will be confirmed upon appointment and is dependent on the country correction factor (to allow for the difference in cost of living in different EU Member States). The salary includes a
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of advanced language models and derived use cases by focusing on one or more of the following topics in their PhD project: Training and inference of ML models on GPU clusters. Method development for scalable
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DTU Tenure Track Researcher on Nanoreactors for Operando Visualizations of Nanoparticle Catalysis...
ultrasensitive and quantitative methods for investigating gas-surface interactions on nanoparticles in nanoliter reaction volumes. Relating the three-dimensional surface structure, dynamics and catalytic functions