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arrays of semiconductor-superconductor Josephson junctions formed in a variety of lattices. The project aims to explore novel states and dynamics of emergent quantum states, including topological matter
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research and teaching. It hosts several research groups in pure and applied mathematics and offers a dynamic and collegial academic atmosphere. More information about the department can be found at https
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. The PhD student is expected to develop and apply methods for causal inference will be part of the SMARTbiomed Pioneer centre https://SMARTbiomed.dk/about-SMARTbiomed. Project Description The PhD project
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Do you enjoy finding solutions to integrate and analyse large data sets of biodiversity dynamics and their drivers? Are you creative and able to couple various data flows and integrated modelling
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a dynamic and collegial academic atmosphere. More information about the department can be found at https://math.au.dk . Place of work and area of employment The place of work is the Department
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Danfoss, you will combine thermofluid modelling, reduced-order multiphysics methods, and nonlinear rotor dynamics analysis to develop predictive modelling tools that support the industrial design of
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. The Center comprises modern laboratories and excellent facilities within neuroscience. Information on the department can be found at: https://ctn.ku.dk/ . Your job You will join a multi-disciplinary research
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multimodal sensors, wireless connectivity, edge intelligence, and robotic actuation. This platform will enable system-level validation of new approaches in dynamic physical environments and provide a basis for
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biology, -omics, and clinical data to understand the dual role of ion channels in cardiac and metabolic physiology. We are also setting up a small clinical trial. We are a dynamic and international team
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optimization) — from short-term power, thermal, and flow management to longer-term production scheduling and energy-system operation — connecting fast system dynamics with slower operational decisions. Develop