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TUD Dresden University of Technology, as a University of Excellence, is one of the leading and most dynamic research institutions in the country. Founded in 1828, today it is a globally oriented
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Description TUD Dresden University of Technology, as a University of Excellence, is one of the leading and most dynamic research institutions in the country. Founded in 1828, today it is a globally
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multiple scales, while Multiobjective optimization strategies ensure improvements in efficiency across various biomanufacturing scales. Expected results: 1) Development of innovative bio-based production
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industrial SBSP experts, the candidate will explore the nonlinear structural dynamics of LSSs to fully understand the complexity of their control. They will use this foundation to explore idealised and
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others of the following tasks: Investigate the links between nonlinear dynamics and computing metrics in micro-ring resonators and coupled ring-resonator architectures Evaluate the number and spatial
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between nonlinear dynamics and computing metrics in micro-ring resonators and coupled ring-resonator architectures Evaluate the number and spatial distribution of coupled cavities for photonic reservoir
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consist among others of the following tasks: Investigate the links between nonlinear dynamics and computing metrics in micro-ring resonators and coupled ring-resonator architectures Evaluate the number and
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concepts to connect detuned frequency ladders and induce phase locking across devices Studying the interplay of nonlinear dynamics, symmetry, and disorder in coupled comb arrays The first milestone is to
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nanoclusters on inert surfaces. The dependence of the organization on annealing conditions, cluster size, and the ligand type will be investigated. Through complementary nonlinear optical characterisation
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relevant in the foreseeable future. In the practice, this implies ensuring that open-source solvers, developed in the academia for both solid and fluid dynamics, are able to use as an input domain any CAD