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Field
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cutting-edge research on structural vibrations, contact mechanics, wave propagation, and robot mechanics, from advanced modelling and simulation to large-scale experiments. In close collaboration with
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identity and extracellular signaling, but how cell types, signaling mechanisms, and transcription factors jointly determine tissue structure is incompletely understood. The Koplev lab is recruiting
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produced in parallel postdoc projects in the initiative. The research aims to gain a deeper understanding of the structure / performance relationship of the developed electrolytes and interactions between
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principles and patterns, focusing on the internal structure and evolution of AI-enabled components, including prompting logic, data transformation flows, retraining mechanisms, and explainability scaffolding
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delves into software design concerns, focusing on the internal structure and evolution of AI-enabled components themselves, including the design of retrainable pipelines, model-wrapping services, LLM
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using solution processing and printing technologies. Characterization of structural, morphological, mechanical, electrical, electrochemical, optical, and electromechanical properties of materials and
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focuses particularly on understanding how the tumor microenvironment (TME) undergoes architectural remodeling – including changes in extracellular matrix composition, tissue mechanics, and spatial
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format. The application should be registered via Umeå University’s e-recruitment system Varbi (https://umustipendie.varbi.com/en/what:job/jobID:950146/ ) and submitted by the deadline 17th of September
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Conduct advanced cell studies to elucidate cellular uptake mechanisms of fatty acids Enable identification and quantification of common micro(nano)plastics in municipal wastewater samples Together
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engineering Engineering » Mechanical engineering Engineering » Systems engineering Engineering » Other Environmental science » Other Mathematics » Applied mathematics Mathematics » Statistics Physics » Applied