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modeling tools to develop and optimize new processes and equipment designs using high-performance computing Analyze data, prepare manuscripts for submission to peer-reviewed publications, prepare technical
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electrolyzer materials and electrodes using synchrotron X-ray techniques at Argonne’s Advanced Photon Source (APS). In particular X-ray absorption spectroscopy, X-ray scattering, and nano-computed tomography
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Requirements Doctor’s degree in chemical engineering, mechanical engineering, petroleum engineering, materials engineering, or related fields. Qualified individuals should have experience in process modeling
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enhance methods and models for predicting the thermal and mechanical performance of various structural components, develop lab-scale prototypes, and verify their performance under targeted operation
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laboratories. Position Requirements Ph.D. in mechanical, industrial, chemical engineering or related fields. Demonstrable expertise in systems-level thinking that draws from several scientific disciplines
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for quantum information science, but many open questions remain regarding how to control the morphology and crystallinity of these host materials for exemplary performace as hosts for optically addressable spin
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HEP-CCE (Center for Computational Excellence) Storage Optimization. The HEP Division performs cutting-edge research facilitated through advanced detector development, high-performance supercomputing
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recyclable polymers, and evaluating the thermomechanical properties of these materials. This research program will include studies towards understanding reaction mechanisms through reaction kinetics analysis
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structural materials (both metals and ceramics), computational solid mechanics, and thermohydraulics. The successful candidate will develop automated frameworks for finite element analysis of high temperature
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chemical or mechanical engineering, or an associated field. Knowledge of chemical and thermal processes. Knowledge of electrochemical systems. Knowledge of water electrolysis including materials, durability