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Application deadline: 30.09.26 Research theme: Applied Mathematics, Thermal-Fluid-Dynamics, Multi-Physics How to apply: https://uom.link/pgr-apply-2425 UK only This 4 year PhD project is fully
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phenomena (computational fluid dynamics) with a focus on symmetries and conservation laws. The project team consists of three PhD students working complementarily on quantum real-time simulations, as
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microswimmers/microrobots that can move and interact autonomously in 3D environments, mimicking the complex dynamics of microorganisms in fluids. Living systems such as bacteria or algae exhibit remarkable
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building design and processes, building construction and safety, building energy and services, solid mechanics, fluid mechanics, materials technology, manufacturing engineering, engineering design and
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company METzero Technologies . Research Objectives 1. Process Intensification & Scale-Up Design and evaluate scalable MEC configurations Apply computational fluid dynamics and transport modelling to resolve
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the Eustachian tube; (2) access the olfactory clefts for mucosal biopsy; (3) access the skull cavity through the nose and the cribble plate for cerebrospinal fluid biopsy. This specific PhD proposal on light
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relation to the research group Fluid Power and the PhD Student will be positioned to the section for Mechatronics. Your competencies The ideal candidate for this PhD position should have a strong academic
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(focusing on polar and alpine environments) and geophysical fluid dynamics. We collaborate with several colleagues from the Physics Laboratory, who are experts in hydrodynamics/climate research (about 15 PIs
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, FCVD creates a liquid-like layer that fills narrow trenches on substrates before solidifying into films. We will model this across multiple scales, from atoms to fluid flow, using quantum chemistry
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. The project combines advanced computational mechanics, nonlinear finite element analysis and fluid–structure interaction to address critical challenges in civil protection and societal resilience. About the