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Field
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by focusing on thermal sciences and physics for advanced energy related applications, design and fabricate novel material architectures, integrate them into functional prototypes, and explore
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the computer science research conferences. Qualifications: PhD in computer science with file systems, GPU architecture experience. Proven ability to articulate research work and findings in peer-reviewed proceedings
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, including the study of side-channel attacks and the development of effective countermeasures. LabSoC also designs solutions to secure communications, external memory, and microelectronic architectures. In
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of Strasbourg with complementary expertise (“Synthesis and Functions of Molecular Architectures” (SFAM), UMR 7140 – CMC; “Energy and Fuels for a Sustainable Environment” (ECED), UMR 7515 – ICPEES
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demonstrate possibilities for the future through development in processing strategies and/or realization of specific function-driven material combinations and coating architectures. Role Description/Work Duties
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faculty from around the world. Our research and education covers a wide area including natural sciences and all branches of engineering, as well as architecture, industrial management, urban planning
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into district heating networks (DHN), and to study the architecture, sizing, and control strategies for its optimal integration into such networks. Currently, sensible heat storage remains the most widely used
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applications. The selected candidate will contribute to the design, prototyping, and testing of photonic devices and circuits aimed at enabling next-generation computing architectures, such as optical in-memory
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: Developing physics-informed neural networks (PINNs) for complex dynamical systems modeling and observer design Creating and validating digital twin architectures that incorporate physical laws and constraints
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emerging spectrum (FR3, MMW, sub-THz/THz) Extreme massive MIMO communications Analog, digital and hybrid beamforming architectures Reconfigurable intelligent surfaces Machine learning for wireless