64 postdoctoral-soil-structure-interaction-fem-dynamics Postdoctoral positions at Technical University of Denmark
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research assistants, postdoctoral researchers, and academic staff to develop cutting-edge methodologies. The research is cross-disciplinary, combining advanced quantitative analysis, simulation, and systems
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statistical and machine learning techniques for dynamic energy system modelling Develop advanced optimization algorithms for building energy management and control (e.g., MPC, RL) Develop and evaluate digital
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Analytics Research Team The Multi-omics Network Analytics research lab (MoNA - https://multiomics-analytics-group.github.io/ ) is an international, dynamic, and creative team dedicated to getting a holistic
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a postdoctoral position in a dynamic environment of colour centre quantum physics, with collaborators from photo- and plant-biology and -genetics. Responsibilities and qualifications Your main duties
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DTU Wind and Energy Systems, you will break new ground at the absolute forefront of what is possible using computer vision technology for wind energy applications. At DTU Wind Energy and Systems, we
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funded 16-month postdoctoral position offers you the chance to contribute to cutting-edge research, collaborate with leading experts, and develop innovative deception-based security strategies. As part of
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Technology at the Technical University of Denmark invites applicants for a 2-year postdoctoral position on the automated fabrication of metal-organic framework (MOF) thin films funded by The Energy Technology
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(e.g., network calculus or similar timing-analysis methods) and/or dynamic reconfiguration (e.g., using Q-search, reinforcement learning, or metaheuristics). You may also contribute to developing
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capability to model complicated magnetic systems for two reasons. First, all magnetic sources in a simulation interact, leading to computational resources scaling with the number of sources squared – which is
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this postdoc position, along with an additional postdoc and one PhD position, we will tackle this grand challenge by fabricating and studying electrocatalysts with three-dimensional active site structures. With