17 postdoc-power-electronics Postdoctoral positions at Oak Ridge National Laboratory in postdoctoral
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for Computational Sciences. They will collaborate with leading computer and computational scientists at ORNL and external collaborators in the development and application of new computational techniques specifically
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. Familiarity with nuclear nonproliferation goals, concepts, and approaches (e.g., international safeguards, domestic material control and accounting). Motivated self-starter with the ability to work
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journals Ability to hold and maintain a DOE Q security clearance is required, which requires U.S. citizenship Preferred Qualifications: Experience with actinide materials Familiarity with the nuclear fuel
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publication in relevant areas such as computer architecture, HPC, quantum computing, compilers/runtime systems, or heterogeneous computing. Special Requirements: Postdocs: Applicants cannot have received
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of computational scientists, applied mathematicians, and computer scientists to link models and algorithms with high-performance computing. Author peer reviewed papers for internal and external release as
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magnets, batteries, and semiconductors from mined resources and electronic waste, as well as separations for bioenergy applications. Develop new research directions and contribute to proposals for external
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the ability to work independently and to participate creatively in collaborative teams across the laboratory. Ability to function well in a fast-paced research environment, set priorities to accomplish multiple
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) advanced cooling solutions for energy systems; (3) thermal management for electronics and data centers; and (4) separation processes for building environments. Develop experimental setup, problem-solving
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correlated electron systems Proficiency with scripting or programmatic languages, such as Python, c, and matlab Excellent written and oral communication skills. Motivated self-starter with the ability to work
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computing), EMT simulations, and power electronics control. Major Duties/Responsibilities: Develop electromagnetic transient (EMT) models for transmission or distribution grids, synchronous generators, large