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Introduction Flower bouquet design has its roots in artisanal production driven by aesthetic qualities. However, a wider range of factors are beginning to influence bouquet design including deep
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in catalytically relevant systems. The insights obtained will guide the design of new catalysts that demonstrate truly orthogonal selectivity compared to conventional alternatives. The project will
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efficiently dissipate harmful UV energy. Using advanced approaches including ultrafast spectroscopy, and formulation science, you will generate molecular-level insight to guide the design of next-generation
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to be exploited by design. Working with reactions where catalyst choice leads to fundamentally different products, and where mixed solvent systems produce synergistic effects that are not fully explained
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Join us in the University of Exeter’s Centre for Metamaterials Research & Innovation – the heart of the UK Metamaterials community. You’ll be part of the £20 million EPSRC MetaHUB – the UK’s largest
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engineering, structural, aerodynamic & manufacturing process modelling and optimisation techniques that will transform current design & development practices. Together we will make technological advances
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the University College London (UCL) invites applications for a fully funded 4-year PhD program in Process Systems Engineering. The project will focus on the development of an AI-enhanced design framework for novel
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Number of Positions: 1 Eligibility: UK Only Funding: School of Chemistry Studentship in collaboration with the Schools of Mechanical Engineering and Chemical & Process Engineering, in support of the Research Grant: Industrialising UK Bio-based Solvents for Global Medicine Manufacturing,...
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Supervisor: Dr Rebecca Ford Secondary Supervisor: Dr Paul Tennent (Nottingham), Dr Laura Wilkinson and Dr Alex Jones (Swansea), Halak Parikh (Pladis) Subject Area: Consumer-Centric Innovation
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distributions and ensure fuel operates within design limits. The aim of this project is to establish a robust, validated framework for neutronics and thermal analysis of prismatic HTGR cores, integrating Monte