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robust inference even when data are scarce or uncertain. The project will also explore surrogate modeling approaches for the rapid approximation of solutions to complex differential problems. These models
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the electromagnetic and circuit levels, the use of experimental setups for frequency- and time-domain characterization, and the development of acquisition software and realistic models for the analysis of experimental
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and parametric methodologies and models for the assessment and optimization of building performance, as well as for the design of envelope solutions oriented towards comfort, health, and sustainability
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25 Sep 2025 Job Information Organisation/Company Politecnico di Milano Research Field Engineering Researcher Profile Recognised Researcher (R2) Leading Researcher (R4) First Stage Researcher (R1) Established Researcher (R3) Country Italy Application Deadline 23 Oct 2025 - 12:00 (UTC) Type of...
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design/verification guidelines, and demonstrate their effectiveness through nonlinear modeling, testing, and case studies. Activities foresees in the project will include: (i) nonlinear numerical modeling
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of multi-physics and mixed-dimensional PDEs. The goal of the research is the development and analysis of computational methods combined with model order reduction methods, including data-driven ones
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of models and metrics for the cislunar environment, aimed at accurately representing the main perturbations and defining uncertainty thresholds consistent with the maintenance of a reliable orbital catalogue
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for Physics-Informed Statistical Learning for applications to real data problems of sustainable development. Regression models capable to integrate the available data with the a-priori knowledge derived from
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contexts, including the use of surrogate models. Where to apply Website https://aunicalogin.polimi.it/aunicalogin/getservizio.xml?id_servizio=1079 Requirements Additional Information Eligibility criteria
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, with particular attention to the upper airways. The activity involves designing and testing in vitro a physical model of the respiratory system, including the upper airways. In addition to the design and