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complemented with bulk and single cell RNAseq data from relevant tissues to investigate T2D pathogenesis and its early life programming. Read more about the research here (https://portal.research.lu.se/en
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– structures that regulate the selective entry of metal species into nanocompartments; and (4) inert surfaces – outer assemblies that remain stable in supersaturated solutions. Performing high-throughput
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) interfaces – templates and catalytic motifs that direct the controlled formation of target semiconductor materials within confined spaces; (3) pores – structures that regulate the selective entry of metal
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– such as taking statutory leave – then these may be taken into consideration. We are looking for someone with very strong knowledge of DFT-based electronic structure and lattice dynamics methods (DFPT and/or
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very strong knowledge of DFT-based electronic structure and lattice dynamics methods (DFPT and/or AIMD-derived phonons), as well as experience in scientific programming and HPC environments. You are
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seeks an ambitious, motivated, structured, and collaborative postdoc to join the nuclear fuel materials team to study the thermal stability and pellet-cladding mechanical and chemical interaction
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the fundamental links between molecular-level structure and dynamics and the macroscopic properties of materials. Our research focuses on energy-related materials for next-generation batteries, with special
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), structural biology, biophysics, or chemistry. Teaching experience is meritorious but not required * The date shown in your doctoral degree certificate is the date we use, as this is the date you have met all
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mode in that a p-n junction doping structure forms in situ during the initial device operation. The selected post-doc will collaborate with a larger team, with the shared goal of developing fully printed
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are expected to conduct data collection with faith-based refugee relief organisations across Europe, combining semi-structured interviews with participant observation. They contribute to the development