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We invite applications for a fully funded joint PhD studentship between the University of Birmingham (UK) and BAM (Germany), starting in September/October 2025. The project will address critical
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materials modelling, with the goal of uncovering the fundamental structure–property relationships that govern material performance. You will be based 50% at the University of Birmingham in the Materials
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embedded in our University of Birmingham group of Meteorology and Climatology (https://www.birmingham.ac.uk/research/activity/environmental-health/areas/meteorology-climate ). The University of Birmingham is
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performance, reduce size and cost, and increase the resilience of laser subsystems in real-world operational conditions. Research Environment and Collaboration The project will be based in the School
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health, and intelligent operations. It is particularly suited to candidates with academic backgrounds in Industrial Engineering, Aerospace Engineering, Management Science, Operations Research, Transport
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by 2050, creating a significant environmental challenge. This research aims to develop a sustainable engineering solution for reusing decommissioned blade in structural engineering. Structural
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: The successful candidate will have access to a unique ESD-STM equipment to perform world-leading research. They will learn how to operate state-of-the-art sophisticated experimental setups working closely with
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of indoor spaces and work with real-life scenarios. This Studentship will bring a holistic framework to assess mental health impact on built spaces that will influence future blueprints for building design
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the UK Health Security Agency (UKHSA). This studentship is funded by the NIHR as part of EPR-HPRU between the University of Birmingham and UKHSA. In addition to the extensive training offered to all PhD
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, or intervention using electronic, mechanical, or smart material systems. This particular PhD studentship, based at the School of Engineering, University of Birmingham, focuses on developing a microfabricated