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. It employs approximately 330 people, including 190 permanent staff members (researchers, lecturers, engineers) and approximately 140 doctoral students, postdoctoral fellows, and staff members on fixed
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candidate will perform experimental work related to the PUI FITInnovE project “PEPTAFLU.” This postdoctoral project aims to characterize inhibitory peptides developed through engineering using phage display
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including 13 permanent staff, 6 doctoral students, and 3 postdoctoral fellows, in addition to fixed-term contracts and visiting staff. Its activities focus on cutting-edge research in accelerators. The team's
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and sustainable technologies for the responsible exploitation of underground mineral resources. Main tasks • Design and develop new hydrophilic and lipophilic DES for selective metal extraction and
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our dependence on fossil fuels. Energy Geostructures (EGs) represent an effective means to meet the world request of less dependence on unsustainable resources by being designed as dual-purpose elements
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elements targeting geothermal heat exchange and structural support for buildings. Yet, their wider use has been hindered by the lack of (i) sustainable expertise pipeline in the field of energy geotechnology
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being transported in ducts and pipes. There is significant pressure to reduce transport-related emissions, of which friction drag is a major constituent. On the other hand, enhancing the turbulent fluxes
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path planning in three-dimensional space is needed to ensure seamless transitions between materials and structural elements. Addressing these challenges is crucial for advancing 3D/4D printing
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communications. The team specializes in multi-sensor methods, tensor decompositions and component analysis for the joint processing of multimodal data, notably in the context of invasive (intracardiac electrograms
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critical roles in extracellular matrix assembly and growth factor activation (1). It is involved in several physiological processes such as development, growth and skin wound healing. The dysregulation