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and no score below 5.5 issued in the last 2 years by an approved test centre. Project Description: Accurate battery degradation modelling and estimation of electrochemical states are essential for
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ALMA MATER STUDIORUM - UNIVERSITA' DI BOLOGNA - - CENTRO RICERCA SISTEMI ELETTRONICI INGEGN.INF. E TELECOM."ERCOLE DE CASTRO" | Italy | 3 days ago
and testing of demonstrators, as well as the interaction with external service providers (e.g. pcb design and prototype construction based on ARCES designs). Where to apply Website http://www.unibo.it
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, analyzing their effects on biodiversity and ecosystem services. The project also includes field activities, with experiments on degraded coastal habitats to test the effectiveness of macroalgae reintroduction
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Correlative characterization across structural, spectroscopic, and transport techniques Stability studies, stress testing, and degradation analysis in thin films Mentoring students and contributing to shared
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testing. Thermal analysis, including DSC and TGA. Spectroscopic or microscopic characterization techniques. Ageing, degradation and durability of polymers and composites. Functional or nanocomposite
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-degrading enzymes to simultaneously adsorb and catalytically degrade PFAS, advancing beyond current separation-only technologies. The project, EnzCarb4PFAS, focuses on developing lignin-derived biocarbon
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planetary atmospheres. The Section also initiates and manages a wide range of related modelling, software and hardware R&D activities. You are encouraged to visit the ESA website: https://www.esa.int/ Field(s
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conduct research on: Repurposing end-of-first-life electric bus and IMC batteries as second-life stationary and mobile energy storage systems with focus on battery degradation and cell-to-cell variations
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the laboratory to preindustrial scale. (2 points) • Encapsulation of organic solar cells. (2 points) • Accelerated stability/degradation testing. (1 point) • Contact angle measurements. (1 point) • Basic analysis
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an electrolysis cell. In particular, stability will be assessed using accelerated degradation tests, and the structural and morphological evolution of the catalysts will be monitored via physicochemical techniques