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Apply: https://mgician.eu/research/doctoral-candidate-projects/dc2/ DC3: Microstructure, Defect, and Interface Engineering of Magnesium-Based Thermoelectric Materials Host: Max Planck Institute
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the microstructure of these semi-crystalline polymers, alongside in-depth characterization to elucidate their structure-property relationships and enhance their performance in various energy-related applications
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on gas-metal interactions and phase transformations as well as materials microstructure characterization. Your activities are related to externally financed research projects with academic and industrial
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high-temperature furnaces, vacuum and inert-atmosphere systems, gloveboxes, etc. It includes the use of standard characterization methodologies including magnetic, microstructural, phase, chemical, mechanical and
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newly established research environment in nuclear technology at Kungliga tekniska högskolan (KTH) entitled “Microstructural evolution, fatigue and fracture in metals from advanced manufacturing for long
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of manufactured parts, particularly in terms of geometrical accuracy, microstructural control, and mechanical performance. This PhD project aims to develop a Multiphysics model and simulation to gain in-depth
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interaction, Mineral dissolution kinetics and Microstructural and mineralogical characterization Background knowledge in industrial by-products recycling and repurposing. Experience with phosphogypsum; a by
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Cardiac diffusion tensor imaging (cDTI) is uniquely able to investigate cardiac microstructure noninvasively. It is providing us with a new understanding of microscopic changes behind heart diseases
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microstructural descriptors (from microstructural MRI and derived features) to improve predictive performance and mechanistic interpretability. • Support imaging methodology by helping develop MRI sequences
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Join us at the Division of Microstructure Physics, Department of Physics, and help advance knowledge in structure-function relationships in bone. About us At the Division of Microstructure Physics