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modelling, the project will explore innovative structural solutions to enhance performance and ruggedness for grid-scale and high-power applications. The student will be supervised by Professor Marina
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to support the property-driven design of molecules for ultrasensitive imaging and nano-optoelectronics applications. The project is supported by a range of national and international partners and provides
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atomic and macroscopic length scales. Developing a predictive, fundamental theory linking stress to measurable magnetic signals will widen the applicability of mNDT and support the design of next
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improving the accuracy and reliability of lifetime predictions for demanding applications. The project is sponsored by the Dutch Polymer Institute (DPI), a leading international research platform that brings
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: Interested candidates should submit a full formal application. Guidance and the application form are here: click the 'Apply' link above.
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boundaries and make a difference. Additional Funding Information Awards for UK, EU, International applicants cover full University fees, give a research training budget and a tax-free stipend to cover living
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systems across a wide range of applications, including e-mobility, automotive, aerospace, rail, marine and stationary storage. For further details please refer to the Group webpage or contact Professor
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the perfect environment to push boundaries and make a difference. Funding Details Awards for UK, EU, International applicants cover full University fees, give a research training budget and a tax-free stipend
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an adhesive heavy application, and to find methods for End-of-Life disassembly. Battery pack construction uses adhesives to fix multiple cells in place, creating a block of battery modules. The adhesive has
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-scale structural characterisation. The projects will build on the expertise of the Walton group in materials for electrolysis and for the oxidation of organics. Guided by the applications and the device