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insulators or 2D-materials and their heterostructures). • Quantum sensing, including low-temperature scanning NV magnetometry. • Strong correlation and many-body phenomena in 2D-quantum materials. • Advanced
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Bannert) will focus on measures and support of selfregulated learning in the simulation; the second open position is located at the Department of Psychology, Chair of Education and Educational Psychology
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. The positions focus on motion planning and control of 1D and 2D deformable objects (e.g., cables, cloth) through bimanual and adaptive robotic strategies. The work will involve the integration of: Advanced motion
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chemical functionalities. The prospects of porphyrin-based 1D, 2D, and 3D materials for device development will be assessed in collaboration with research partners from industry and academia. A key concept
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for probing chemistry at surfaces and interfaces [1]. We want to strengthen this research direction by i) developing a second generation of NV-based NMR spectrometer and ii) applying it to material/energy
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or robots as well as (maybe) on board of a satellite. Good knowledge of programming (C++ and Python) and interest in modern didactics (4CID model) is required. The second position is located in the area of