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service life, self-healing, adaptiveness, and reprocessability. The research will focus on nanoparticle surface chemistry, polymer–filler interfaces, and advanced characterisation, with the aim
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an integrated field and numerical modeling approach. Your tasks are to: - reprocess and jointly model the available regional magnetotelluric (MT), gravity and magnetic data to develop an initial model
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no biorefinery) instead of fossil raw materials, green routes for polymer synthesis and processing, as well as chemical recycling/reprocessing methods (biodegradability, depolymerization, dynamic bonds) to make
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entails biobased building blocks (but no biorefinery) instead of fossil raw materials, green routes for polymer synthesis and processing, as well as chemical recycling/reprocessing methods (biodegradability
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energy, defence, space power and waste disposal. For example, closing the nuclear fuel cycle by reprocessing spent nuclear fuel to remove plutonium reduces the volume and heat load of high-level waste. The
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fuel cycle, from fuel reprocessing to final disposal, interfaces between water and metal oxides arise at which ionizing radiation induces radiolysis of the water. The species formed, free radicals and
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2027. Project description and tasks Throughout the nuclear fuel cycle, from fuel reprocessing to final disposal, interfaces between water and metal oxides arise at which ionizing radiation induces