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Field
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-synchronized stimulation system (rSynES), developed by Dr. Isabelle Vivodtzev, targets accessory respiratory muscles and has shown promising results in improving respiratory function. Suggesting that it may
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energy sector. However, significant technological and cultural barriers are limiting its effectiveness. Overcoming these barriers is a key target of this CDT. The CDT’s research projects will focus on how
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effectiveness. Overcoming these barriers is a key target of this CDT. The CDT’s research projects will focus on how RAS can be used for the inspection, maintenance and repair of new infrastructure in renewables
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aromatics and specialty chemicals. In this project, you will design and study catalytic processes that upgrade complex phenolic mixtures into targeted products using advanced bifunctional catalysts. By
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will advance our understanding of real-world pathogen encounters and the establishment and plasticity of innate immune memory. Identified molecular targets will be validated via genetic and
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membrane contact site dynamics, autophagy, and cholesterol homeostasis in Alzheimer's disease. The work may uncover novel therapeutic targets for restoring cellular lipid balance in neurodegeneration. Where
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-process quality control for the multi-material integrated FFF/FGF/DIW-based process. Targeted applications include geometrically complex and structurally efficient components with embedded SHM sensors and
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optimization engines for memory-aware deployment, compiler and runtime systems capable of supporting dynamic neural network topologies, energy-efficient embedded AI frameworks targeting RISC-V multicore and
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Mediterranean farmland: Setting conservation thresholds and targets using keystone small mammals (COMPETE2030-FEDER-00730000), funded by the ERDF through the COMPETE 2030 Program. Where to apply Website https
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. The project will focus on the design, synthesis, and optimisation of novel materials capable of efficient proton or oxygen-ion conduction, depending on the targeted device architecture. Candidate materials may