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Academia Sinica, Institute of Atomic and Molecular Sciences Position ID: AS-Institute of Atomic and Molecular Sciences-APO [#30057] Position Title: Position Location: Taipei, Taipei 106319, Taiwan
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The research goal of PCF is to understand and to control liquids and their interfaces from molecular to macroscopic scales. Our research connects fundamental phenomena in static and dynamic wetting, nanofluidics
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analyses, isotope-based approaches (CSIA), and molecular biology tools to investigate: • contaminant fluxes and bioavailable fractions in urban aquatic systems, • transformation processes and interactions
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epigenetics, RNA dynamics, and stress responses to senescence states, including pathways such as the ZMAT3–p53 axis. This work bridges molecular mechanisms with clinically relevant phenotypes, enabling
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at the Sir William Dunn School of Pathology, University of Oxford. The project aims to elucidate the molecular mechanisms of dynein-2 transport in cilia using cutting-edge structural and biochemical approaches
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University of North Carolina at Chapel Hill | Chapel Hill, North Carolina | United States | 3 days ago
analyzing molecular dynamics (MD) simulations to understand water and solute transport through highly crosslinked polyamide systems. The postdoctoral researcher will study polymer chemistry, crosslinking
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cell biology, biomedical engineering, cellular/molecular biology, bioinformatics, physiology, and similar fields. The work will be conducted within a vibrant and collaborative environment, with access
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the aim of understanding the molecular basis of nutrition-dependent diseases, and of developing new strategies for treatment and prevention. The Department of Experimental Diabetology(DIAB) invites
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identified around: theorists in quantum chemistry and molecular and reaction dynamics, organic synthesis chemists, physico-chemical experimenters (spectroscopy, photochemistry, molecular recognition and
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project aims to elucidate the molecular mechanisms governing the tumor ecosystem’s response to anticancer therapies, with the goal of identifying resistance pathways that can serve as biomarkers