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Field
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- or nanoengineering, material science, mechanical engineering or similar. Experience with cleanroom fabrication processes or additive manufacturing is highly beneficial. You are expected to have a keen interest in
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materials,[ 3 - 11] non-Cu metals and alloys,[ 12 - 16] and molecular catalysts such as cobalt phthalocyanines.[ 17 - 20] Despite these scientific breakthroughs, most current electrolysis systems rely
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characteristics. Advanced characterization of materials and electrocatalysts’ evaluation of the reaction mechanisms. Preparation of scientific articles and conference communications. Teaching activities (10
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£20,780 per year, and includes a 3-month fusion engineering CDT training programme as part of the 2025 Cohort. This project is co-supervised by Dr Chris Hardie from UKAEA. The UoB Materials for eXtremes
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required new IEC standards relevant to the performance and lifetime of printed solar technology through developing a detailed understanding of printed solar degradation mechanisms and interactions with
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courses, mentoring, career support and conference opportunities. Qualification: The candidate must have at least an equivalent of a UK MEng 2.1 class degree in materials/mechanical/ manufacturing/chemistry
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/Computer/Mechanical/Materials/Nuclear Engineering or related discipline. • Excellent foundation in materials processing • Hands-on experience with device and system characterization. • Experience in
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degree in mechanical, chemical, or energy engineering or similar and experience in some of the following areas: Experience in Multiphysics and CFD modeling involving fluid dynamics, and electrochemical
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on mechanical and physical separation methods for efficient recovery of active materials and components from spent LFP cells as well as development of hydrothermal relithiation processes to restore
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class degree in materials/mechanical/ manufacturing/chemistry or any related discipline with at least 70 % in the project element. This is an experimental research project based at the University