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Field
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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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. MINDnet aims at addressing the challenge through a holistic optimization - from individual computing devices to the overall architecture, including a focus on applications, and training methods - across
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and its supporting infrastructure • realize on-chip pulsed DNP • design microwave pulse sequences for on-chip DNP using spin physics, numerical simulation tools, and quantum optimal control
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-responsive polymeric particles and emulsions stabilized by them. Establishment and further development of advanced measurement techniques based on atomic force microscopy. Development and optimization
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includes system operation, continued development, and performance optimization. The successful candidate will collaborate closely with the quantum metrology group at the University of Bonn and the geodetic
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instruction at BAGSS is English. You can write and defend your thesis in English or in German. Excellent Conditions Our aim is to create an optimal research environment for doctoral researchers and to provide
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electron diffraction, imaging and spectroscopy, in collaboration with colleagues performing material syntheis and complementary measurements at partner locations in France and Germany. Optimizing electron
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for autonomous optimization and design of materials, structures and processes Multimodal scientific AI – integrating language, images, sensor data and simulations Alignment for scientific AI – scalable oversight
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full translational pipeline — from developing and optimizing cell enrichment and molecular profiling workflows, through single-cell characterization of circulating tumor-associated cell populations
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of electron-transparent TEM lamellae and specimens Operation and optimization of ultrafast laser systems (fs–ps range) and optical setups Characterization of electrostatic potentials and excited carrier