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Predicting reservoir and wellbore scaling in geothermal developments through integrated subsurface interpretation and modelling Award Summary 100% home fees covered, and a minimum tax-free annual
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Investigating how water-rock interactions influence geothermal reservoir sustainability using experiments and geochemical modelling Award Summary 100% home fees covered, and a minimum tax-free
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Optimization group at the Institute of Climate and Energy systems (ICE-3) at Forschungszentrum Jülich and the group working on Methods for Model-based Development at RWTH Aachen. The PhD candidate will be based
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Optimization group at the Institute of Climate and Energy systems (ICE-3) at Forschungszentrum Jülich and the group working on Methods for Model-based Development at RWTH Aachen. The PhD candidate will be based
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emphasis on FEA and reduced order analytical modelling. They will contribute to the EPSRC project Mechanics and Design of Kirigami-Based Energy Dissipating Devices led by Dr Martin Walker. In particular
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species such as dogs, cats, horses, cattle and pigs ● Experience with animal models of pain ● MS or PhD in Biology, Biochemistry, Chemistry or a related field Pay Band 3 Overtime Status Non-Exempt: Eligible
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undertake postgraduate teaching and student supervision. You will have a PhD (for the Grade 7 Research Associate role) or postgraduate qualification (for the Grade 6 Research Assistant role) in a related
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microenvironment interactions. Responsibilities include the design and execution of experiments using human and mouse breast cancer organoid cultures, established breast cancer cell lines, and mouse models of breast
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, sustainability assessments, etc. Research areas include: Advance data science, predictive modelling, and intelligent systems for the Agro-Food domain. Adopt theoretical research results (algorithmic developments
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, documentation, and simulations, sustainability assessments, etc. Research areas include: • Advance data science, predictive modelling, and intelligent systems for the Agro-Food domain. • Adopt theoretical