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Applications are invited for a Postdoctoral Research Associate position in cellular biophysics in the group of Prof. Ewa Paluch. The Paluch lab studies cellular morphogenesis combining cell and
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engineering research. mentoring from other investigators and experienced postdoctoral researchers. exceptional career development opportunities with strong institutional support of early career researchers
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A position exists for a postdoctoral Research Assistant/Associate to work on the development of novel semiconductor optoelectronic and sensing devices using high-throughput fabrication and
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, complexity, and verification needs. By mapping each component to the most appropriate FM tool based on cost-efficiency and expected reliability gains, we aim to construct validation portfolios: automated
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collection design and method. Remote Working: Is this project suitable for remote working? Yes Remote working details: This project could be done remotely but the fieldwork component would need to be
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thermal-catalytic system and nonthermal plasma system will also be investigated. The project will involve the preparation and modification of porous materials (e.g., zeolite, MOFs, metal oxide) and
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from end-of-life recycled aluminium to reduce embedded carbon level to below 2 tonnes CO2e/tonne of aluminium as a supplied component and eventually to Net Zero carbon. This project is concerned with
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. Generating gastruloids from induced pluripotent stem cells (iPSCs) to create in vitro models for studying critical steps of gastrulation and early development. Creating iPSC lines with mutations in elements
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, including SuperMagdrive, operates using metallic propellant, offering density, integration, and safety advantages compared to conventional launcher propellants such as hydrazine. However, metal propellants
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oxides. However, limitations in performance and stability have confined silicon and organic-based devices to niche applications. In contrast, recent advances in ceramic thin film technologies offer