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in nanoparticles and the physicochemical analysis of these nanoparticles. You have experience with the design and in vitro production of synthetic mRNA. You have experience with immunological analysis
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the design and implementation of high-quality solutions that solve significant problems Prior experience in publishing high-quality and high-impact research (including publications in top-tier journals and
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academia and practice regarding the cost-effectiveness analysis of safety instrumented systems. You will conduct cost-effectiveness analyses by designing cost models to highlight trade-offs in
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, your tasks will include: •Designing, executing, and analyzing model-based workflows to study the molecular response of cartilage under mechanical load. •Integrating advanced imaging techniques, including
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instrumented systems. You will conduct cost-effectiveness analyses by designing cost models to highlight trade-offs in the implementation of safety instrumented systems. You will evaluate how system design
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evaluation of FAPI-based radioligands, focusing on their imaging and therapeutic potential. Key tasks include: Designing, planning, and executing preclinical experiments in cell and animal models of cancer
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, focusing on their imaging and therapeutic potential. Key tasks include: Designing, planning, and executing preclinical experiments in cell and animal models of cancer. Conducting biodistribution, dosimetry
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have experience in design and cleanroom fabrication of electronic or photonic chips. You have experience in working in a cleanroom environment and you have experience in operating equipment
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' responses, the project will combine qualitative focus groups, cross-sectional surveys, and survey experiments. This integrated design allows for a comprehensive analysis of both top-down (elite-driven) and
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driving context-specific expression. You will work very closely together with your wet-lab colleagues for the design and follow-up of experimental validations. PhD (or MSc with research experience) in AI