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expertise in one or more relevant areas, including MEMS/NEMS devices and systems, piezoelectric or ferroelectric materials and devices such as HZO and AlScN, device-level computing architectures, in-memory
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and physical modelling. The goal of this position is to develop data-driven approaches to AI-based analysis of complex interaction systems and suitable hybrid architectures for this purpose
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Contributing to GenAI4Earth infrastructure architecture – core federated services, compute, AI-ready datasets, testing and validation Publication of research papers in relevant academic journals and
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National Energy Technology Laboratory (NETL) | Morgantown, West Virginia | United States | 20 days ago
architecture. You will collaborate with other researchers and interface with NETL's Research & Innovation Center (RIC) scientists. The overall objectives of this project are: 1. Investigate the feasibility
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architectures. 4. Leadership & Dissemination Prepare high-quality manuscripts for submission to peer-reviewed high-impact journals and present findings at major optics conferences (e.g., CLEO, SPIE). Assist Dr
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on future U.S. energy pathways. Core Responsibilities: Lead the development, maintenance, and extension of the Temoa modeling framework, including its core architecture and documentation. Maintenance
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on future U.S. energy pathways. Core Responsibilities: Lead the development, maintenance, and extension of the Temoa modeling framework, including its core architecture and documentation. Maintenance
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to quantify the impacts of new component technologies, control algorithms and powertrain architectures with focus on advanced technologies. The candidate will assist on projects to benchmark next generation
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. Experience with time-series modeling. Experience with transformers, autoencoders, dynamical systems models, or related approaches for sequential or neural data. Interest in alternative architectures and
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ferroelectrics, plasmonics, semiconductors—into photonic and THz architectures. This is an outstanding opportunity for candidates with a strong background in nanofabrication to contribute to cutting-edge quantum