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Field
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stress resilience under consideration of the mycorrhiza symbiosis and a root/shoot temperature gradient. The research will focus to unraveling the plant physiological and molecular mechanisms governed by
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emerged as important predictors of response to immunotherapy. However, the molecular and spatial cues guiding their development remain poorly understood. Your work will include: • Performing spatial
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fixed-term basis at the Chair of Animal Physiology and Molecular Biomedicine, Department of Animal Physiology at the Faculty of Biology and Chemistry with the opportunity for own academic qualification
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mechanics (QM / MM) molecular dynamics simulations using a Quantum Centric Supercomputing (QSC) approach [1,2] for the QM problem. This will be integrated within the in-house MiMiC framework [3] and applied
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experience in cell culture and biochemical/molecular biology techniques. The ideal candidate is a collaborative team player with a strong interest in toxicology and endocrine research. We offer a dynamic
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progression, with the ultimate aim to develop innovative nucleic acid therapeutics against cancer. We make use of advanced molecular and cellular technologies to identify novel targets and get insight
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conditions chemical analysis of plant secondary metabolites using HPLC-MS and GC-MS protein isolation and characterization using LC-MS plant physiological measurements molecular biological investigations (e.g
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necessity. The research group in Algorithmic Cheminformatics at the Department of Mathematics and Computer Science at SDU offers a dynamic research environment, comprising two full professors, one associate
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research on microbial mechanisms, microbiome dynamics in various ecosystems, and translational applications in clinical and biotech fields. DCs will benefit from expertise across molecular biology
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conditions chemical analysis of plant secondary metabolites using HPLC-MS and GC-MS protein isolation and characterization using LC-MS plant physiological measurements molecular biological investigations (e.g