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? Do you like studying physical systems with wide impact in society? Then, this PhD position is ideal for you! Information This PhD project aims to develop advanced fluid models for low-temperature
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Semiconductors are key enablers of virtually every aspect of modern society from smart phones and computers to energy generation, communications, AI, defence, transport and healthcare. Without
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Project Abstract: This PhD project addresses strategic UK priorities in advanced power semiconductor technologies supporting net zero, electrification, and grid resilience. The research will focus
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team as a PhD candidate to work on beyond the state-of-the-art model distillation and robustness methods, enabling efficient, reliable inference for challenging real-world problems in the semiconductor
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you to apply. In this call, we are particularly recruiting PhD candidates for the following research topics: Project A: Epitaxy and nanofabrication of III-V semiconductor emitters in nanocavities
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About the project: Multi-scale modelling of Thin Film Deposition with Flowable CVD for Next-gen Semiconductors Supervisor: Dr Bora Karasulu, University of Warwick This project, co-funded by Merck
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Funded PhD studentship in AI-assisted materials discovery at the UK National Epitaxy Facility School of Electrical and Electronic Engineering PhD Research Project Competition Funded UK Students
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(R1) Positions PhD Positions Application Deadline 30 Apr 2026 - 23:59 (Europe/Bratislava) Country Slovakia Type of Contract Temporary Job Status Full-time Hours Per Week 37.5 Offer Starting Date 1 Sep
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(R1) Positions PhD Positions Application Deadline 30 Apr 2026 - 23:59 (Europe/Bratislava) Country Slovakia Type of Contract Temporary Job Status Full-time Hours Per Week 37.5 Offer Starting Date 1 Sep
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@plymouth.ac.uk) 3rd Supervisor: Prof. Shangming Zhou (shangming.zhou@plymouth.ac.uk ) Industrial Partner: This project is partly funded by Advanced Micro Devices (AMD) . AMD is a leading global semiconductor