61 computer-security "https:" "https:" "https:" "https:" "https:" "https:" "Dr" "Keele University" research jobs at Oak Ridge National Laboratory in United States
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timely manner Maintain strong commitment to the implementation and perpetuation of ORNL core values and ethics Basic Qualifications: A PhD related to computational or theoretical physics, chemistry
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Document This is a temporary assignment of 24 months with potential for extension. For questions about this position, please contact Dr. Alexander Zhukov at zhukovap@ornl.gov . Security, Credentialing, and
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(ORNL). As a postdoctoral fellow, you will produce publishable results at a steady pace and work at the interface of neutron imaging, computational modeling, and workflow automation. Applicants with
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transformative solutions to compelling problems in energy and security. We are seeking a Postdoctoral Research Associate who will focus on theoretical studies of nonequilibrium dynamics in many-body systems
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scientific papers in key journals and present at key meetings. Ensure compliance with environment, safety, health, and quality program requirements. Maintain a strong commitment to the implementation and
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research results and publish scientific results in peer-reviewed journals in a timely manner. Ensure compliance with environment, safety, health, and quality program requirements. Maintain strong commitment
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multiple types of sensing modalities, where this expertise is applied to solve critical national problems in energy and security. Demonstrated knowledge of emerging AI and machine learning techniques as
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the Grid Communications and Security (GCS) Group in the Energy Sensing, Analytics, and Communications (ESAC) Section, Electrification and Energy Infrastructure Division (EEID) at Oak Ridge National
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to obtain and maintain a security clearance from the Department of Energy, which requires US Citizenship. Preferred Qualifications: Advanced computational proficiency with extensive modeling and simulation
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a particular emphasis on error-corrected methods for future fault-tolerant quantum computing. The algorithms will be designed to address key models of quantum materials, such as the Hubbard model