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Field
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Technology. Additional Actions : Composite Materials, Finite Element Modelling (FEM), Impact Engineering, High-Rate Experimental Mechanics, AI Assisted Surrogate Modelling
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, using e.g. DFT or the finite element method (FEM) calculate the quantum dynamics of an emitter coupled to phonons with an open-quantum-system approach and using state-of-the-art numerical techniques
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/simulation/optimization) Build prototypes and research software (clean, reproducible, well-documented) Work with simulation pipelines (e.g., FEM/CFD/physics engines) and industrial data Collaborate with
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obtained in experiments, Be part of change Theoretical calculations of the effect of centrifugal forces on the clamping Simulate clamping conditions using the Finite Element Method (FEM) with Ansys
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analytical methods for electromagnetic characterization of lines and cables (characteristic matrices, FEM, MoM-SO, frequency-dependent earth properties, eigen-/modal analysis, wideband line models, etc
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, natural language processing (NLP) and machine learning Connected and autonomous vehicles Disaster and natural Hazard assessment and management Discrete element method (DEM) and finite element methods (FEM
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laboratories Gain experience in a range of computational modeling and data analysis techniques, including FEM/FVM and reduced order modeling using software packages that are relevant to the field Develop
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, preferably involving fluid mechanics and/or microstructure related simulations. Experience with numerical simulations based on the finite element method (FEM) or the finite volume method (FVM). Experience with
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approaches, where nonlinear FEM, rule-based design, parametric design etc and general model-based systems engineering approaches are a plus. Experience applying artificial intelligence and machine learning
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hosted by the Faculty of Mechanical Engineering of the State University of Campinas (FEM-UNICAMP). This opportunity is open to candidates of any nationality. The selected candidate will receive a FAPESP