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programme and research growth in this area. Ideal candidates will demonstrate a track record of impactful research contributions in one or more of the following key areas: Metallurgy, Ceramics, Polymer
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to fundamental Chemistry and Materials Science. Key areas of interest include Polymer, Biomaterials, Energy, Semiconductor, and Nanomaterials, as well as Materials Simulation. We welcome applicants utilizing
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. The research will employ numerical simulation to optimise heat flow within thermal batteries and to design compact heat-exchanger structures that enhance thermal conductivity and temperature uniformity
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Overview We are looking for a postdoctoral research associate, to work on a project titled “Understanding the Role of Self-Poisoning in Polymer Crystallisation” funded by Leverhulme Trust. Recent
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Chemistry and Materials Science. Key areas of interest include Polymer, Biomaterials, Energy, Semiconductor, and Nanomaterials, as well as Materials Simulation. We welcome applicants utilizing either
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due to start in April 2026 . WORK PLAN: The candidate must complete a PhD in accordance with the following plan: Computational simulation of additive manufacturing of polymers Digital twin of additive
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simulations to study ion transport mechanisms, interfacial chemistry, and membrane stability. The researcher will develop structure–property relationships and work closely with experimental partners to validate