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complex geometries. Experimentally characterising photopolymer curing behaviour, including reaction kinetics, shrinkage, thermal effects, and mechanical property evolution. Developing physics-based
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23 Jan 2026 Job Information Organisation/Company University of Twente (UT) Research Field Engineering » Mechanical engineering Engineering » Thermal engineering Researcher Profile First Stage
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PCM composites the RecyWax+ project combines multi-physics modelling approaches and physical experimentation of the thermal properties of the PCM composite. Throughout, theory is validated by synthesis
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using advanced analytical techniques, including TED-GC/MS (Thermal Extraction Desorption–Gas Chromatography Mass Spectrometry) to quantify microplastic mass, SEM-EDX (Scanning Electron Microscopy with
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PCM composites the RecyWax+ project combines multi-physics modelling approaches and physical experimentation of the thermal properties of the PCM composite. Throughout, theory is validated by synthesis
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simulation frameworks combining electro-thermal-mechanical models for fast charging and robust performance. A key goal is a hierarchical design environment (cell → module → pack → vehicle) enabling flexible
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threshold voltage, a higher driving current, and lower thermal noise. The challenges lie in exploiting the advantages of cryogenic operation, such as the lower thermal noise, while circumventing device non
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variability in their composition and microstructure, which results in variability in their mechanical, thermal, and diffusion properties. Therefore, predictive modeling of the performance of these composites is
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-emitting sectors. Electrification of thermal processes, particularly through the integration of industrial heat pumps, presents a promising pathway to reduce emissions while offering flexibility services
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Website https://www.academictransfer.com/en/jobs/356735/phd-position-social-dynamics-of… Requirements Specific Requirements We are searching for a candidate: With a master’s degree in the social sciences