12 Design-"https:"-"https:"-"https:"-"https:" positions at Forschungszentrum Jülich in Germany
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systems will be enhanced using Design of Experiment (DoE) approaches in order to efficiently explore the high-dimensional parameter space of the electrolysis processes. DoE is essential for data-efficient
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well as the time-varying behavior caused by degradation effects, represent major challenges. Based on these foundations, a state observer must be designed and tailored to meet the demanding requirements
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In this interdisciplinary Master project, you will design, model, and simulate cryogenic control electronics for scalable electron-spin qubit systems. The core challenge is enabling multi-qubit
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investigate how AI methods and workflows can be designed and adapted to handle large, heterogeneous EO tasks efficiently and reliably. You will develop and evaluate approaches that address the trade-offs
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into the following tasks: Contribute to the development and extension of the open-source market model PowerMarketSim, with a focus on integrating flexible asset representations Design and implement simulation
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experimental and testing protocols Investigating functional additives to improve anode performance and stability Developing suitable current-collector concepts for alkaline battery operation Designing and
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multiple technological platforms - photonics, electronics, biological neurons. Responsibilities and tasks This PhD project aims to (1) optimize the design of hybrid electrical–optical computing architectures
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their temporal representation learning and downstream regression performance. The goal is to design more flexible temporal modeling strategies and improved pretraining approaches that enable GeoFMs to generalize
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concepts affect system efficiency, electrical heating demand and economic performance. The developed model extensions should also support later studies on system design, applications, specific layouts and
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helium cryo-magnetizing stage. Your tasks in detail: 1. Experimental design and data acquisition Performing structural and chemical characterization of specimens using advanced TEM techniques, including