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Your Job: Digital methods for inverse materials design are essential to efficiently create new, sustainable and recycling-adapted structural metals. Alloys with a reduced number of elements, so
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26 Feb 2026 Job Information Organisation/Company Niccolò Cusano University Department Engineering Research Field Engineering » Materials engineering Researcher Profile First Stage Researcher (R1
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Wetsus - European centre of excellence for sustainable water technology | Netherlands | about 1 month ago
, frequency, volumetric flow) voltage waveform, electrode number, shape and material gas phase composition (air, N2, Ar, or mixtures) water chemistry (pH, conductivity, BOD/COD) specific pharmaceutical residues
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graphene, graphene oxide (GO), reduced graphene oxide (RGO), and related composites. Develop catalytic nanomaterials for pollutant degradation and environmental applications. Integrate graphene-based
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characterize new alloys and composites fabricated via laser powder bed fusion additive manufacturing. This work is closely woven into materials science, additive manufacturing, and machine learning realm, with
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to elucidate these phenomena. This PhD project aims to develop a computational growth and remodeling (G&R) framework to investigate how cartilage microtissue growth dynamics, matrix composition, and (anisotropic
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for sensible, infrastructure-aware policy development in the UK, EU and internationally. Working closely with academic experts and InSinkErator UK (Whirlpool), the student will analyse food waste compositions
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Institute of Low Temperature and Structure Research Polish Academy of Sciences | Poland | about 1 month ago
thermal overexposures are a frequent yet often overlooked cause of material degradation, structural damage, and critical system failures. Thermal history phosphors offer a powerful solution by permanently
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-term stability are not yet fully understood. Unravelling those features is key to designing engineered carbon materials capable of removing and storing carbon on the geological timescales required
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potentials and automated reaction discovery, we will reveal how nanoparticle composition, geometry and electronic structure govern electrochemical reaction rates, helping design efficient, low-cost materials