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an international team of researchers across multiple disciplines at the University of Lincoln, UK, in collaboration with the University of Tulane, USA. Insect eggs are incredibly intricate and complex structures
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-trained tool on other image sensors and at different mountain sites presents difficulties. Specifically, generalizing a model trained on a specific site to other sites with different environmental
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these effects in different solvents with molecules of different types: organic or inorganic, structure chirality or atropoisomeria. Main activities: This project is based on Optical Raman Activity (OAR
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numerical methods for the inverse design of nanophotonic structures enabling broadband, multiparameter sensing in fiber-based systems. The project is a collaboration between AMOLF, TU Eindhoven, and
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that enable structural determination of native chromatin-associated complexes, we aim to elucidate the structural foundations of key biological events on eukaryotic chromosomes. The Arimura Lab provides a
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acquired from the degradation in the solid phase obtained by PhD2. Specifically, you will: Build molecular networks based on both chemical structures and mass spectrometric (MS) data to unravel complex
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of intermediate complexity to investigate the climate of the Paleoproterozoic interact with colleagues in the GOE-DEEP science team working on biogeochemical modelling to design and tests different scenarios
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this context that COMPEL is now recruiting several young researchers with different competencies to build a unique interdisciplinary research and education environment. This initiative is based on a strong
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advanced properties, primarily concerning circular RNAs. The postdoc project will be involved in all aspects of COL but focuses primarily on visualizing and structural characterizing catalytic RNA complexes
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of different ecological and evolutionary processes shaping complex host-microbiome systems. - Comparing theoretical predictions with data from host-microbiome systems, in particular from marine environments