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and precision printing. Digital twin-driven methods for online process monitoring, process validation, and prediction using modern AI tools. 3D Printing process planning, optimization, and control
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on: Synthesis and characterization of catalyst pattern with 3D porosity by electrodeposition methods Synthesis and process optimization of high aspect ratio microstructured gratings by metal assisted chemical
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100%, Zurich, fixed-term The Frazzoli group at the Institute for Dynamic Systems and Control (IDSC), Department of Mechanical and Process Engineering (D-MAVT) is looking for a Ph.D. student in the
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. Your tasks The PhD research will be entailing an international recurrence case study and focuses on applying and optimizing 3D X-ray virtual histology methods by micro-CT for recurring thyroid tumors
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nanometer scales. MSRL develops tools and processes for fabricating and assembling microscopic robots and nanometer-scale robotic components used in diverse applications, including biological exploration
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the area of large-scale additive manufacturing for architecture. Project background You will work on the “Digital Process Chain for Hollow Core Extrusion” project in collaboration with the Computational
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Your tasks The PhD research will be entailing an international recurrence case study and focuses on applying and optimizing 3D X-ray virtual histology methods by micro-CT for recurring thyroid tumors
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the following areas : the theory of automorphic forms, applications of automorphic forms to harmonic analysis and differential equations, optimal configurations of points in geometric spaces with focus on packing
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communication and ranging algorithms. Contribute to system-level performance optimization and experimental validation. Implement basic feedback control for robotics tasks. Profile Your background should be in