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with experimental and computational partners in Germany and the United States. The goal is to fabricate candidate coatings and assess their performance under ion irradiation and high heat-flux / thermal loading
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development of post-AM heat treatment. Supervise master’s and/or PhD students to a certain extent Possibility to engage in teaching at undergraduate/master’s level The position is meritorious for future roles
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To strengthen our team in the division 5.2 “Metallic High-Temperature Materials” in Berlin-Steglitz, starting 01.04.2026, we are looking for a PostDoc (m/f/d) Characterization of creep behavior
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thermodynamics, kinetics, electrochemistry, and high-temperature chemical processes. Problem-solving skills, including the ability to identify technical challenges, develop innovative solutions, and implement
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studies of new layered magnetic materials and heterostructures of layered materials, under extreme conditions of low temperature, high magnetic field, and high hydrostatic pressure. Magneto-optical studies
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for the conversion of biogas into high-value-added molecules. This position requires expertise in the synthesis of materials with controlled porosity and mixed oxides. The work will involve process optimization, and
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University of North Carolina at Charlotte | Charlotte, North Carolina | United States | about 16 hours ago
Position Information General Information Position Number POST40 Working Title Post-Doctoral Fellow-Experimental Heat Transfer & Multiphase Flows Division Academic Affairs Department College
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cover will be constrained using Raman spectroscopy of carbonaceous material (RSCM method), complemented by bottom-hole temperatures (BHT) and heat flow data to define present-day thermal gradients
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Postdoctoral position (M/F) on impedance and dielectric study of solid/solid interfaces in batteries
out BDS tests at electrode level and EIS experiments at cell level and test the overall dielectric/impedance properties at different temperatures. Lithium-ion batteries (LIB) are the primary energy
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optical materials with high kh2 coefficients of particular interest as it will enable fabrication of quantum transducers. These are devices that enable controlled conversion of signal or excitation from one