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Field
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performance. This postdoctoral project aims to investigate the potential of newly developed high-temperature superconducting materials — such as ZrN, HfN, and NbTiN — produced by ICPMS-CNT and CEA-LETI, as
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at low temperatures. This project is a collaboration between the Quanteca group and other research teams at Institut Néel, including the Micromagnetic and Nanomagnetic Materials groups. It is part of
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, etc.) to model materials in high temperature or high stress conditions. Experience working with high pressure systems and pressure control systems. Experience setting up data acquisition systems and
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parameters shape microstructure and cell performance. You will operate and optimise high-temperature, high-pressure synthesis; characterise materials by SEM/TEM, XRD, Raman, thermal and gas analysis; and
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responsibilities will include preparing and conducting high temperature chemical reactions to discover new ferromagnetic materials using techniques such as flux synthesis, arc melting, and powder sintering
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to the design, fabrication, and characterization of superconducting devices based on high kinetic inductance materials. This position offers a unique opportunity to help build a new research capability with
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, chemical engineering, chemistry, materials science, applied physics, or a closely related discipline. Demonstrated hands-on experience with high-enthalpy or high-temperature reacting systems, such as flame
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to innovations ranging from the QuB software suite for single-channel kinetic analysis, to submillisecond temperature-clamp electrophysiology, differential scanning calorimetry for thermal activation, and now time
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, with systematic control over ambient pressure, substrate temperature, impact velocity, and surface properties, combined with synchronized high-speed side- and bottom-view imaging. You will establish
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National Aeronautics and Space Administration (NASA) | Hampton, Virginia | United States | 14 days ago
coatings. Evolution of concepts for synthesis of new or improved materials and composites having potential for use in high-performance aerospace applications. Computational and theoretical materials modeling