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this role, you will also contribute to material preparation and characterization using laboratory-based analytical tools, including electron microscopy and atomic force microscopy. This is an exciting
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The postdoctoral appointee will be part of a multidisciplinary team developing an innovative electrochemical rotating packed bed reactor platform for energy-efficient separation of elements from
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on the discovery and study of new quantum materials, with a primary emphasis on superconductors. The successful candidate will play a key role in the exploratory synthesis and crystal growth of novel solid-state
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centralized. The successful candidates will work at the intersection of federated learning, foundation models, multimodal biomedical AI, privacy-preserving machine learning, continuous learning, and agentic AI
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systems. In parallel, they will design and develop agentic AI and physics-aware AI models to accelerate discovery and deepen mechanistic insight in catalysis. This work will be carried out in close
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storage systems under the guidance of a supervising scientist. The successful candidate will play a leading role in the synthesis, characterization, and performance evaluation of advanced layered oxide
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. Knowledge of Aspen Plus or other chemical engineering models. Ability to work well within a team of experts in various areas of expertise. Skilled in oral and written communications with peers, colleagues
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listed below. Primary responsibilities include: Designing and simulating MEMS devices Testing and characterizing device performance Developing feedback and control strategies for precise MEMS operation
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materials from complex feedstocks to achieve the desired product quality and form. As a part of this team, you will : Apply electrochemical engineering principles to develop processes such as oxide reduction
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assess vehicle technologies to quantify energy consumption, performance and cost benefits. In this role, a successful candidate will perform vehicle modelling and simulation of advanced powertrains