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, with a start date in September 2026. Doctoral thesis topics: Modelling of phase diagrams and thermodynamic properties of the systems for high temperature applications (supervisor: RNDr. Viera Homolová
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transmission electron microscopy characterization of metallic materials, high temperature mechanical testing, and metals processing. Desired Experience: Background and experience in physical and mechanical
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to strengthening this modern research area with a long-term perspective, e.g. via the investigation of bulk materials at low temperatures and in high magnetic fields by means of transport measurements or local
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Postdoctoral Researcher (Experimentalist), Melwani Daswani Lab, Earth-Life Science Institute (ELSI),
. Samples will include meteoritic materials, synthetically altered organic analogs, and natural geological samples. A key objective is generating high-quality thermodynamic datasets (heat capacity functions
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particular focus on Small Modular Reactors and spent nuclear fuel management. The research will examine radiation- and high-temperature-resistant high-entropy alloys using ab initio, many-body, and Monte Carlo
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materials, including thermal, mechanical, and optical properties. Investigate structure–property–function relationships to enable adaptive heat transfer through radiative, conductive, and evaporative
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calculations will be. The mathematical model will be defined based on the shape of the heat source and the heat flow density. At the same time, it is essential to consider the thermophysical and mechanical
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. Repair heat exchangers for heating, domestic and industrial hot water. Repair, maintain autoclaves, cage washers, dishwashers, warm rooms, cold rooms, constant temperature rooms, growth chambers
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electron microscopy (TEM/STEM) techniques for material characterisation, including high resolution imaging, spectroscopy (e.g., EDX) and diffraction. Demonstrated ability to analyse and interpret complex