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. Specific tasks in the project will be: Draft a suitable work- and time plan. Examination of vaccine-induced immune response by gene expression analysis of samples from earlier animal experiments. Optimize
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complex materials simulations. These agents will assist with setting up, executing, and optimizing electronic structure workflows, from standard ground-state Density Functional Theory (DFT) calculations
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and partial safety factors. Establish a risk-based structural integrity management framework offering optimal inspection and maintenance decision support. Explore additively manufactured structural
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engineering, or similar. Solid mathematical and analytical skills, including signal processing and optimization. Knowledge about classical and/or quantum data communication, including for instance error
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. Responsibilities Design and execute LC-MS/MS-based proteomics experiments (primarily in negative ion mode) Independently operate and optimize chromatographic and mass spectrometric instrumentation Investigate how
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scalable, cost-effective processes for bulk chemical production of cycloalkanones PhD enrolment: Delft University of Technology DC9: Process development and optimization of dioxygenase catalysed
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-on experimentation with advanced digital fabrication, numerical modelling, material testing, and process optimization. You will work on the fabrication and mechanical characterization of composite specimens with
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than undesired routes. Solvent and additive effects will further be explored based on mechanistic insights. Your work thus will strengthen the detection and optimization of sustainable chemistry
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the shift from the robust architecture of radio-TV transmitters and receivers to the far more complex and fragile structure of ‘over-the-top’ (IP-based) media delivery. The project will model optimal
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framework offering optimal inspection and maintenance decision support. Explore additively manufactured structural concepts, including performance trade-offs for lightweight, fatigue- and corrosion-resistant