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fps. We are also developing three-dimensional force-mapping techniques to measure the nanomechanical properties of biomolecules at the submolecular level. Recent publications: https://researchmap.jp
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of decarbonization processes in industry Technology development related to the carbon cycle (including carbon capture and utilization) https://www.kankyo.tohoku.ac.jp/en/faculty/skk21.html [Work content and job
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, combining plasma proteomics with artificial intelligence may enable the minimally invasive assessment of organ-specific biological age and functional decline. This project aims to develop organ-age and organ
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Design-Build-Test-Learn (DBTL) cycle that rapidly iterates the design, synthesis, and evaluation of molecular-robot components. https://molbot-ex.org/index.html [Work content and job description] The E01
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between ocean circulation and biogeochemical cycling in modulating marine ecosystem responses to global warming. The work will provide an opportunity to develop model simulations, contribute to both
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of the recruitment and description of the project Development of novel electronic devices through the integration of diamond and two-dimensional materials. https://www.nims.go.jp/personal/yamaguchi-takahide/en
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to conduct research for the QUP experimental projects with the Principal Investigators. An overview of the QUP research, including the relationship between the projects, can be found at: https://www2.kek.jp
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between ocean circulation and biogeochemical cycling in modulating marine ecosystem responses to global warming. The work will provide an opportunity to develop model simulations, contribute to both
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increasing investment and development activity. A key focus is on understanding and reversing aging at the molecular and cellular levels, particularly through the lens of the epigenome. This includes not only