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and prevents the activation of neurorepair mechanisms involving neural stem cells (NSCs). Strategies to improve cerebral vascular repair have the potential to promote successful neuro-regeneration and
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This PhD project will focus on developing, evaluating, and demonstrating an intelligent solution of diagnosis and prognosis for rotating machinery to enhance safety, reliability, maintainability and
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://doi.org/10.1172/jci99169 ). However, a host of interconnected metabolic and immune pathways likely regulate tumour progression. Identification of these novel mechanisms will provide new targeted therapeutic
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(HTPB) and isocyanates for optimization of formulation (pot life) and product mechanical properties for application in solid rocket propellants. Due to the confidential and commercially sensitive nature
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The project: We invite applications for a fully funded PhD studentship in the Solid Mechanics Group at the University of Bristol to work on the predictive modeling of hydrogen-induced damage in
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“Multi-modal proteomics to understand and overcome niche-related adaptive drug-resistance mechanisms in FLT3-mutated AML“ we are looking for a PhD student. The project is is part of the SFB/CRC 1709
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sits at the cutting edge of materials science and solid mechanics, using real-world microstructure data to simulate thermo-mechanical behaviour at the grain scale. Your work will form a key part of a
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Applications are invited for a 3-year PhD fellowship within the general field of coastal engineering at the Technical University of Denmark (DTU), Department of Civil and Mechanical Engineering
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-Si-Mg-based alloys that are resistant to natural ageing, tolerant of slower quenching rates, and capable of offering high productivity and moderate mechanical properties for automotive applications
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power generation companies—to develop robust methodologies for investigating failure mechanisms in CFRP sleeves. Your contribution will help prevent catastrophic magnet detachment and significantly