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function recovery for materials design” This project uses high performance X-ray sources, such as SPring-8, SACLA, and NanoTerasu, to reveal structural changes in thermoelectric and photo-functional
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on either uncertainty quantification or how uncertainty should be expressed to users. https://unit.aist.go.jp/deihrd07/keiyaku_koubo/2025-airc_0043.html [Work content and job description] ・Develop uncertainty
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-order biological phenomena such as neural networks in the brain and the construction and function of multicellular systems [Work content and job description] The successful candidate will lead
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to research and education in accordance with his/her proposed research. https://www.hiroshima-u.ac.jp/en/employment/kyoinkobo [Work content and job description] Field of specialization Science and Engineering
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intelligence, etc.), Physics I (particle, nuclear, astrophysics, etc.), Physics II (condensed matter etc.), Chemistry, Biology (cell biology, developmental biology, plant biology, structural biology
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Position in the Graduate School of Engineering, Osaka University https://www.eng.osaka-u.ac.jp/en/topics/offering/27721/ [Work content and job description] “Nanomaterials Area” pioneers novel materials by
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these ionomers. By evaluating their power-generation performance, material properties, and structural characteristics, we aim to clarify the relationship between structure and function and to establish design
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information translation and control 2. Characterizing brain states (conscious, unconscious, etc.) from the perspectives of stochastic thermodynamics and control theory 3. Comparing qualia structures (relational
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] * Background of the recruitment and description of the project Our research team focuses on theoretical studies of emergent physical phenomena based on topological structures in condensed matter systems
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interested in biological interfaces, e.g. the cuticle, that evolved many adaptative traits to external biotic and abiotic factors. We study the relation structure-function of these interfaces, combining