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- University of A Coruña
- Aragon Nanoscience and Materials Institute (INMA) / CSIC-University of Zaragoza
- Centro de Investigaciones sobre Desertificación (CIDE, CSIC-UV-GVA)
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17 Sep 2026 Job Information Organisation/Company Centro de Investigaciones sobre Desertificación (CIDE, CSIC-UV-GVA) Department Ecology and Global Change: functional diversity lab Research Field
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to join a research project focused on understanding the cellular and molecular mechanisms that enable synapses to adapt to changing levels of neuronal activity. Our laboratory investigates how membrane
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: Synthesis and functionalization of nanoparticles. Modification and loading of extracellular vesicles. Analysis of data related to the cellular uptake of nanoparticles and extracellular vesicles. Where
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biotechnological approaches can no longer address effectively. Climate change, soil degradation, resource depletion, and geopolitical instability underscore the urgent need to enhance crop productivity and reinforce
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spectroscopy to reveal many-body dynamics in materials and/or molecular systems to understand what causes matter to change its phase. In practice, this means applying attosecond soft x-ray spectroscopy to study
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Aragon Nanoscience and Materials Institute (INMA) / CSIC-University of Zaragoza | Spain | 2 months ago
because little is known about how these vesicles behave in real biological environments. SEVEN aims to change this: by characterising the identity and surface topography of this biomolecular corona
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immunological assays. Analyse and interpret omics datasets to identify epigenetic changes associated with vitamin D deficiency and multiple sclerosis. Contribute to the characterisation and monitoring of murine
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deployed. The research will therefore combine qualitative fieldwork with computational modelling to develop approaches that operate under uncertainty, adapt as the landscape changes, and generalise beyond
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aging of simple OSC devices, correlating the temporal evolution of SPC parameters with morphological changes and photovoltaic characteristics using accelerated lifetime testing (Task 3.2). • Application
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evolution of SPC parameters with morphological changes and photovoltaic characteristics using accelerated lifetime testing (Task 3.2). • Application of the acquired knowledge to develop manufacturing