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assays, supervising critical in-life study phases, and preparing all relevant documentation, including experimental protocols, study reports and publications. Your role As a junior scientist / postdoctoral
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experimental workflows using two-dimensional liquid chromatography (2D-LC) and Raman spectroscopic (RS) techniques, this Postdoc position focuses on developing the advanced computational tools required
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of the English language, demonstrated through published first author papers in respected and relevant conference proceedings or journals; Experience with programming in Python, or otherwise in R and/or C++; Able to work
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, and you work in a structured and focused way; experience in (plant) molecular biology approaches; experience with experimental research on seeds is an advantage; enthusiasm for working in a team and
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resonance (NMR), and X-ray/Neutron scattering techniques. We are particularly interested in candidates with prior experience in preferably all of the following areas: Hands-on experience in the synthesis
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engineering, operations research, supply chain management, or a related field. Experience with system modeling or scenario analysis (e.g., system dynamics, agent-based modeling, MCDA, causal mapping
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validation of developed architectures Therefore, experience in numerical concrete modelling with commercial (e.g., Abaqus) and/or self-developed tools is essential. Experimental experience is a plus. Currently
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test prototypes. With the consortium, we investigate assembly, disassembly, repairability, and user experience in an operational environment. Building on this case, we develop the methodologies enabling
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assays to assess nuclease activity, stability, and specificity; maintain plasmid libraries, strain collections, and detailed experimental records; collaborate with researchers across WUR and contribute
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engineering or similar field Experience in microfluidics, specifically segmented slug flow Programming proficiency, preferred in python and LabView Interest in the field of metabolomics, programming, and NMR is