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transformations. Combining automated reaction discovery simulations, microkinetic modelling, machine learning, and global optimization, this project will develop a new and exciting route to addressing one
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or hybrid microrobotic systems. Fabrication and micro-/nano-structuring of functional materials relevant to microrobotic actuation. Conducting experiments to characterize robot locomotion, propulsion
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. The central goal of this project is to explore the fundamentals of the electronic structure of nitride systems — including their band structure, Fermi surface, electron–electron and electron–phonon interactions
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of modular floating structures. Optimize designs for dynamic environmental conditions (e.g., waves, tides, currents). Finite Element and Structural Modeling: Develop and implement finite element models
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for Addiction Research Apply for this job See advertisement About the position We invite applications for a PhD Research Fellow position in Computational Structural Biology is available
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of Singapore (NUS) Department of the Built Environment (DBE) invites applications for a full-time Research Fellow to drive R&D in carbon management and optimization within the built environment. The successful
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for optimizing the structures. The outcome from the models will be tested in experimental setups requiring deep understanding of protein chemistry and molecular biology. The main purpose of a postdoctoral
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execute experiments that advance the frontier of self-optimizing microscopy, including automated alignment, adaptive focusing, drift correction, and AI-assisted atomic structure recognition. The role
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addresses a key gap in current industrial practice, namely the lack of formal system models that integrate structural specifications with spatial and temporal behavior. Building on the Information Modeling
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Nanolab and at UiT), including process optimization and structural characterization. Characterization of the fabricated chip with an optical set-up Integrate the chip in a system and adapt the system