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PhD student at ILL on Advanced Neutron Imaging for Defect Mapping in Repaired Aero-Engine Components
underexplored. The aim of this PhD project is to develop and apply advanced neutron imaging methodologies in order to establish quantitative links between processing conditions, microstructural evolution
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heritage, materials science, and physics. Supported by 19 countries, the ESRF is an equal opportunity employer and encourages diversity. Context & Job description Thesis subject: Sub Nanosecond Imaging
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bulk antiferromagnets. Switchable antiferromagnetic multistate devices hold strong potential for enabling a paradigm shift from charge-based to spin-based microelectronics. We will investigate powder and
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experiments due to its large dynamic range. The aim of this project is to use Time Resolved Small Angle Neutron Scattering (TR-SANS) to understand the role of reorganization processes in the morphological
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PhD student at ILL: studying In situ neutron diffraction for green steel and functional metal oxides
on an atomic level by using in situ techniques in order to deepen our knowledge on industrial processes (ore smelting) and to work out synthesis strategies for reduced transition metal oxides. Target compounds
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reduction, to fully automatize the workflow at the ILL reflectometers. The integration of the ML module in the data acquisition and data processing ecosystem will enable real-time data analysis and will open
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the molecular mechanisms by which dengue virus capsid proteins (DENV-C) bind to lipid droplet (LD) surfaces, a process central to viral replication. Dengue fever infects over 400 million people annually across
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. The beamline is primarily dedicated to research on soft materials and biological specimens. Current inhouse research topics include dynamics of driven colloids, spontaneous self-assembly processes in amphiphilic
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