55 algorithm-development-"Multiple"-"Simons-Foundation" Fellowship positions at UNIVERSITY OF SOUTHAMPTON in United Kingdom
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. Working as part of a multi-partner Innovate UK funded project we are seeking highly motivated individuals to join us in the development of digital engineering technologies to accelerate the design of
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challenges across electronic textile-based sensing, wireless, electrochemical and design technologies with a focus on sustainable developments towards practical user-centric e-textile systems. In these roles
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the development of new anchoring technologies for floating offshore wind turbines. Your role will focus primarily on the development of simplified computational models, and you will contribute
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valued member of our team, you will play a key role in developing and producing advanced optoelectronic devices for applications such as quantum technologies, integrated optical sensors, and laser optics
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into the real world. A strong background in the fibre optics, advanced characterization techniques, and optical signal processing is highly desirable, along with an aptitude for developing new experimental
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The Senior Research Fellow will lead the development of structural and computational approaches to engineer antibody-modifying and antibody-degrading enzymes for applications in biology and
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of Southampton, on a fixed-term contract of up to 18 months. The Research Fellow will support the development of new anchoring technologies for floating offshore wind turbines. Your role will focus primarily
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-funded project. The primary objective of this project is to develop novel optical fibres and fibre materials suitable for power scaling of fibre lasers in the two-micron wavelength region. The project will
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position within a Research Infrastructure? No Offer Description The Senior Research Fellow will lead the development of structural and computational approaches to engineer antibody-modifying and antibody
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We are seeking a highly motivated Postdoctoral Research Associate in the field of Theoretical and Computational Chemistry to develop accurate models of time-resolved X-ray photoelectron spectroscopy