385 structures-"https:"-"https:"-"https:"-"https:"-"https:"-"Brunel-University-London" Fellowship positions
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the doctoral degree within the timeframe ability to work both independently and collaboratively, while demonstrating creativity, innovation and strong problem-soliving skills a structured approach to work
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conducts more than $500 million in research annually. Testing of Structural Wood for Use in Crates The Department of Sustainable Biomaterials has over a decade of history in the testing and design of pallets
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materials Able to examine the textural and structural changes of porous materials by using a panoply of characterization techniques such as XRD, N2 adsorption, FESEM, TEM, XAS, XPS, dissolution-NMR, IR
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; 5-7 pages, where you show your capability to structure a 3-years research study with clear motivation, objectives, research questions, methodologies, expected results and dissemination plan
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excellent experimental skills. Knowledge and hands-on experience in active-doped silica-based fibre fabrication, spectroscopic characterisation of doped fibres, and the construction and testing of fibre
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scientist to work in the field of structural characterization of quantum materials using x-ray scattering techniques and structure modeling. Required Qualifications PhD in Physics, Chemistry, or Materials
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thinking Able to work independently and collaboratively Structured and able to manage complex projects Strong in analytical thinking and problem solving Communicative and able to work across disciplines
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the construction and testing of fibre lasers and amplifiers would be beneficial for this position. You must have proven skills in the critical evaluation and interpretation of data and of working as
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or hybrid microrobotic systems. Fabrication and micro-/nano-structuring of functional materials relevant to microrobotic actuation. Conducting experiments to characterize robot locomotion, propulsion
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conceptualisation, modelling, and prototyping of flexible joint mechanisms, wheel assemblies, and repair/re-lining modules. Conduct structural, dynamic, and kinematic analyses to optimise robustness