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Field
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skyscrapers, enabling early detection of damage. - Renewable Energy: Rapid, optimized design of wind turbine blades and structures for greener energy. - Microstructures: Accurate, efficient analysis of devices
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Research Field Chemistry » Structural chemistry Researcher Profile First Stage Researcher (R1) Positions PhD Positions Application Deadline 29 May 2026 - 23:59 (Europe/Lisbon) Country Portugal Type
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. The composition of these colloidal particles will be adapted to optimize their ability to stabilize water-in-water emulsions, adopting a strategy based on well-defined structures through the use of synthetic block
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prediction to process optimization. The focus of this PhD project is to develop and apply machine learning methods across three interconnected tasks: 3D microstructure characterisation. The student will
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computational approaches that integrate process-induced stresses into the structural design stage. Project goals The objective of this PhD project is to develop a topology optimization framework for LPBF
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polymer synthesis, physical chemistry and analytical chemistry, Softmat designs new smart polymer architectures and assess their structure/properties relationship. This research has a wide range of
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into actively morphing and efficient structures? Applications are invited for a 3.5-year UK PhD studentship for the project "Design, Experimental Investigation, Aeroelasticity Modelling and Control of an Aircraft
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to renewable energy sources. Thermodynamic cycles (power generation cycles, refrigeration cycles, heat pumps) play a central role in this transformation, but their optimal design remains a complex scientific
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Max Planck Institute for Multidisciplinary Sciences | Gottingen, Niedersachsen | Germany | 6 days ago
16 Apr 2026 Job Information Organisation/Company Max Planck Institute for Multidisciplinary Sciences Department Department of NMR-based Structural Biology Research Field Chemistry » Biochemistry
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vertical devices, it’s crucial to ensure uniform current flow across the entire device area. Structural modifications like current spreaders, channel regrowth or optimized electrode designs help mitigate