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formulation. These models will enable rapid scenario testing, predictive analysis, and early decision-making, thereby reducing experimental workload and accelerating development timelines. Life cycle assessment
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and a construction and testing capability up to 5MW Vision This project aims to leverage the electric propulsion hardware developed in the EU-funded €40M NEWBORN – “NExt generation high poWer fuel cells
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) to improve the forming process and optimise process variables. Experimental methods for testing mechanical behaviours of thin foils in vacuum and inert environments will be explored. Based on the results, a
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control algorithms for whole system efficiency optimisation. Design and simulate power management circuits using tools like SPICE or MATLAB/Simulink. Prototype and test circuits with real energy harvesters
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approximately 2500m2 of research space and a construction and testing capability up to 5MW Vision This project aims to leverage the electric propulsion hardware developed in the EU-funded €40M NEWBORN – “NExt
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base associated with this consumer product through the design and implementation of relevant biomechanical testing and wearer input. Candidates: Candidates should have a high 2.1 or 1st class
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Rolls-Royce the project will focus on the development and testing of novel ultrasonic methods to measure intake massflow for aero-engines. This technology has the potential to improve the methods
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of HCC on fatty liver, the project will investigate how radiotherapy impacts tumour growth and liver fibrosis and test antifibrotic therapies to reduce RILF and improve treatment outcomes. Objective 1
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effective Umami additives to avoid the synthesis and human testing of ineffective compounds. Key to the Umami taste are the protein receptors T1R1/T1R3 to which a compound must bind to elicit a response
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test at the aggregate level. However, costs and benefits are unevenly distributed, and implementation requires continuous popular buy-in. Furthermore, policy decisions are made through the political