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for optimal ones, so that potentially high-performing cathode materials can be found without the need for expensive and time-consuming synthesis of many possible materials. Your Job: Modeling cathode materials
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potentially high-performing cathode materials can be found without the need for expensive and time-consuming synthesis of many possible materials. Your Job: Modeling cathode materials with various compositions
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Fraunhofer Institute for Applied Optics and Precision Engineering IOF | Jena, Th ringen | Germany | 3 months ago
focuses on the development of quantum imaging components and systems. As a branch of quantum optics, the ultimate performance limits of optical imaging made possible by the laws of quantum mechanics
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in high-performance computing, solid-state physics/chemistry, and density-functional theory (VASP, Quantum Espresso) -Knowledge in materials thermodynamics, 2D compounds, and machine learning
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accelerated and architectures, Linux and high-performance computing (HPC) Experience with profiling and performance optimization would be welcome assets Willingness present results at international conferences
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subject Very good knowledge of numerical linear algebra algorithms Extensive experience with parallel programming and high-performance computing, in particular with MPI, OpenMP and GPU programming models
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Oncologic Imaging group led by Dr. Irina Heid and Prof. Dr. Rickmer Braren and is a part of a multicenter consortium funded by the German Federal Ministry of Education and Research (BMBF) entitled
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communication theory, as well as in quantum coding theory ▪ Interest in theoretical work with high practical relevance ▪ Interest in demonstrating research results on a hardware platform ▪ Software: Experience