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following research directions. 1. Polymer-based artificial cells, biointeractive materials, and metabolic coupling We will develop soft polymer capsules and microgel artificial-cell platforms with tunable
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disturbance experiments at Trinity College Dublin and on modelling resilience and RD at University of Zürich are planned. Research Project DC3 DC3 will use empirical plankton ecology to analyze both
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part of the SynthImmune Cluster of Excellence, which brings together leading groups in virology, cancer, immunology, and bioengineering to understand and harness the principles of immune control
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develop advanced models, algorithms, and control solutions for simulating, optimizing, and operating future integrated energy systems. We address the challenges arising from the increasing integration
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develop integrated energy-material scenarios up to the global level and the necessary models. On this basis, potential resource bottlenecks can be identified at an early stage and model-based strategies
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, stromal biology, and tumor immunology in pancreatic cancer. The position is based primarily at UMCG in Groningen, with regular presence in Oldenburg — flexibility and enthusiasm for cross-border work
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tweezers, (iv) quantitative image processing, data analysis and modeling. The project is funded by the MARIE SKŁODOWSKA CURIE ACTIONS (MSCA) Doctoral Network (DN) MOtorized NAnomachines: fundamentaLs
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for more than 3,500 treatment courses, aligned with the OMOP Common Data Model and robust data-quality rules Develop and evaluate agent-based AI functions for therapy-sequence support, clinical-trial matching and
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dynamics of present logistic processes and networks. By exploiting new technologies, business models and strategies, new dynamic planning and control processes will be researched and developed. The objective
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first, before applying to our programme. 2) “Sandwich” study model: This option is especially suitable for all candidates who plan to work on a project based in their home country or at another location