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Field
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development of special phase field and phase field crystal models coupling newly developed approaches with established approaches for simulating e.g. mechanical properties and the flow of fluids implementation
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and policy approaches to reduce these disparities. The PhD project will employ a mixed-methods approach, in two distinct phases that logically progress from quantifying the problem to understanding
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specific exploration of devices. During this project, you will work with the data from the joint and fusion registries to examine outcomes with the two approaches, as well as undertaking implant-specific
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environments, as well as chemically and biologically active phases. The goal of the project is to gain fundamental insight into how the structure of these complex materials evolves under working conditions. To
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; EPSRC Centre for Doctoral Training in Green Industrial Futures | Edinburgh, Scotland | United Kingdom | about 2 months ago
deployment of Carbon Capture Utilisation and Storage (CCUS) is critical for achieving the UK's net-zero target set by the Climate Change Act (2008). With commercial agreements in place for two Track-1 clusters
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Science, Mechanical and Manufacturing Engineering, is open for appointment from 01/02/2026 or soon thereafter. The position is available for a period of 3 years. Your work tasks The PhD project will be part
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programmes: any time Application deadline The first-round application deadline of 1 December 2024 is for - Phase I applicants requiring admission with a scholarship and - Phase II applicants who want to start
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production environments, enabling predictive maintenance and data-driven optimization through centralized data platform architectures. Your research will focus on addressing current bottlenecks in data and
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list (if applicable) and the names and contact details of two potential references (no letters of recommendation are required at this stage), (3) a brief (and original/innovative) research project idea
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Solid State Physics group at KU Leuven are looking for a full-time (100%) doctoral scholarship holder in the field of novel CO2 reduction photocatalysts based on ultra-small gas-phase bi- and multi