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Renewable Energy) project. Power export cables for floating offshore wind turbines, termed ‘Dynamic Cables’ are required to move with the floating device. They are continuously subjected to a variety of
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The Thermal Fluids and Energy research group at the University of Dublin, Trinity College, is seeking to recruit a postdoctoral researcher to develop hierarchical porous capillary wicking structures
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degeneration, loss of tissue functionality drives local inflammation, which reduces cell anabolic activity and promotes adoption of pathological catabolic and senescent cell phenotypes. This inflammatory
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(Innovation in Dynamic Cables for Offshore Renewable Energy) project. Power export cables for floating offshore wind turbines, termed ‘Dynamic Cables’ are required to move with the floating device
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-transfer.pdf Post Summary The Thermal Fluids and Energy research group at the University of Dublin, Trinity College, is seeking to recruit a postdoctoral researcher to develop hierarchical porous capillary
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biomechanical cues in a living and multicellular 3D environment to replicate the mechanobiological function of bone. A unique multidisciplinary approach, combining cell and molecular biology with biomechanical
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the development of novel therapies. You will have extensive knowledge of complex in vitro cell models of cancer as you will be responsible for developing 3D bone marrow niche models to support expansion of patient
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cybersecurity across a broad range of domains including materials and environmental sciences, engineering, healthcare, agriculture, energy, astrophysics, applied mathematics, financial services, ICT and others