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instrumentation and apply these in advancing nGI for material science research through novel instrumentation and computational methods. Then you will be applying nGI in addressing critical scientific questions in
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. Extensive experience in the development and application of finite element method (FEM) or comparable methods for AM applications. Preferred Qualifications: Demonstrated expertise in multi-physics simulations
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. Major Duties/Responsibilities: Perform research and development on advanced dry head end processing methods and post-processing separations related to the nuclear fuel cycle and energy-critical element
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at better understanding of ligand binding in solution and molten salts chemistry. Computational methods will primarily involve density functional theory calculations for molecular and periodic systems
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methods, and econometric models; and 3) contributions to reports, presentations, and peer-reviewed journal articles. The successful candidate will have the opportunity to collaborate with ORNL scientists
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front-end introduction systems (e.g., laser ablation and single particle) for direct measurement by ICP-MS or ICP-OES. Conceive, design, and implement innovative analytical methods chemical analyses using
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battery setup, including characterizations of ion transport and thermal and mechanical properties; Development of electrochemical methods to evaluate failure modes in these systems. This position is
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industry. You will have the opportunity to interface directly with program sponsors and lead proposal development teams. Major Duties/Responsibilities: Developing advanced modeling and optimization methods