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project ECOFUNC, which strives to develop sustainable construction materials and circular end-of-life solutions. This role will support research aimed at creating an environmentally benign recycling pathway
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role will contribute to on-going research focused on examining soil–structure interface behaviour. The work will explore fundamental interface behaviour, with particular relevance to granular mechanics
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of durability of construction, to integrate Nature based Solutions into grey infrastructure to strengthen resilience in Mediterranean climate hot spots. LJMU supports the design of structures by quantifying
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the mentorship of leading experts in one of the following priority research areas: Research area 1: Intelligent Structural Optimization using Physics-Informed Reinforcement Learning Research area 2: AI-Enhanced
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part of the research team to establish and understand the structuration of algae/soybean/mung bean proteins for high quality alternative protein foods including through high moisture extrusion. Key
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. You will lead and apply best practices in materials science and engineering. Key responsibilities include analysing material structures at the atomic level, conducting failure analysis, selecting
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datasets spanning electrochemical testing, embedded sensors, environmental logging, spectroscopy and advanced imaging. They will create and curate structured, FAIR-compliant datasets suitable
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materials, with microwave metamaterial and device designs, to help develop a new class of reconfigurable electromagnetic structures. This will involve using various simulation programmes, both for mechanical
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engagement with policy actors and community organisations, ethical practice. Competence in graphic and mapping production (e.g., QGIS/ArcGIS; Adobe Illustrator/InDesign) to create accurate, well-structured
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at Seagate Technology (Springtown), you will lead microfabrication and metrology to realise device structures from pre-deposited magnetic wafers, including design and patterning of pillars and Hall bars