-
-property relationships governing electrical conductivity, dielectric breakdown strength, thermal transport, and mechanical performance. Characterize composite materials using advanced analytical techniques
-
, synthesize, and characterize new recyclable polymer systems, while evaluating their thermomechanical properties. The position also offers the opportunity to investigate catalytic reaction mechanisms through
-
emphasize processing–microstructure–property-performance relationships under temperature, irradiation, corrosion, mechanical stress conditions. The successful candidate will integrate additive manufacturing
-
techniques, which would be advantageous for specific research objectives. Proficiency in optical characterization of diamond surfaces and other NV-decoherence mechanisms, offering additional insights
-
). Position Requirements Ph.D. in electrical engineering, mechanical engineering, physics, or a related field completed within the past five years or soon-to-be completed Experience in X-ray scattering is
-
solid electrolytes. We are seeking candidates who will be able to design experiments and develop methodologies to design material compositions, ink rheological properties, and coating and drying process
-
Qualifications: Background in fracture mechanics-based reliability modeling. Familiarity with the basic structure-property relations for metallic and ceramic materials. Experience in engineering design
-
characterization, and electrochemical evaluation of sulfur cathodes in both coin-cell and pouch-cell formats. This role includes establishing correlations between the physical and chemical properties of sulfur
-
campaigns using advanced synchrotron X-ray techniques to generate quantitative, AI-ready datasets that reveal defect-mediated mechanisms governing the stability, adhesion, and transport behavior of thin films