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Concrete Sustainability Hub and lead experimental research to identify drivers of performance, durability, and scalability in LCC mixtures and alternative binders, producing high-quality data
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thus offers high research efficiency and an excellent research environment. The LIT is looking for a highly motivated postdoctoral researcher to take on a dual role in technical operation of the state
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thin films and photovoltaic devices; execute a staged fabrication pipeline spanning candidate selection, thin-film deposition, high-throughput device fabrication, and high-performance device fabrication
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to early pilot-scale operation, with a strong emphasis on: High-cell-density and fed-batch cultivation Media and feeding strategy optimisation Process robustness and reproducibility Scale-down and early
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significant optical losses at interfaces between materials or components. These constraints hinder the deployment of compact, high‑performance, and industrially competitive photonic systems. In this context
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relevant to high-field and high-temperature dielectric performance to inform the digital discovery of new polymers. Characterize materials, interfaces, and film morphology using microscopy and materials
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materials. Create a new flame-retardant electrolyte for sodium-ion (Na-ion) batteries. The ultimate objective is to produce a high-performance hard carbon-based sodium-ion battery system, contributing
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that houses advanced 3T human and 9.4T preclinical MRI scanners, both equipped with ultra-high-performance gradient systems. MINIMUM REQUIREMENTS Education: Applicants must hold a doctoral degree, preferably a
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–property–processing relationships relevant to high-field and high-temperature dielectric performance to inform the digital discovery of new polymers. Characterize materials, interfaces, and film morphology
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Programming Systems R&D: Contribute to DOE goals of enabling performance‑portable high‑productivity languages (Python/Julia/Rust) and evaluate the emerging role these languages and frameworks within scientific