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university preferably in the subject areas of computer vision, computer graphics, computer science, media informatics or creative technologies Good programming skills in C++, C# for support in algorithm
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- please indicate in your application what you are particularly interested in: MEMS (micro-electromechanical systems) relevant layout generation Design and 2D / 3D geometry generation Simulation of MEMS
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data-driven insights. By developing a user-friendly graphical interface for data entry, we aim to streamline this critical aspect of coating operations, empowering our team to make informed decisions and
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flow within cerebral aneurysms. Arterial geometries are derived from medical scans (e.g., CT) of real patients, which are suitably meshed and processed for numerical treatment using Lattice-Boltzmann
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languages used: C++ 2014, CUDA, Lua Desirable: - interest in high-performance computing with graphics processors (GPUs) and simulation methods - fluent knowledge of modern C++ and a scripting language
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manufacturing process Laser Powder Bed Fusion (PBF-LB/M ). With PBF-LB/M, metallic components with almost any complex geometry can be additively manufactured using a layer-by-layer structure. The versatile range
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manufacturing process Laser Powder Bed Fusion (PBF-LB/M). With PBF-LB/M, metallic components with almost any complex geometry can be additively manufactured using a layer-by-layer structure. The versatile range
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manufacturing process Laser Powder Bed Fusion (PBF-LB/M ). With PBF-LB/M, metallic components with almost any complex geometry can be additively manufactured using a layer-by-layer structure. The versatile range
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diverse range of these “active parcours” by e. g. varying the microgels’ chemical composition, size or pattern geometry. The research tasks of the PhD candidate will include synthesis of stimuli-responsive
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Center • Support grant applications (e.g. DFG, Horizon), including proposal writing, budgeting, and preparation of graphical material • Support management of ongoing and future scientific projects