25 finite-element-analysis positions at NTNU Norwegian University of Science and Technology in Norway
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universities in the Nordic region. Both departments have strategic initiatives in sustainable metallurgy and applying material science and chemical engineering to extract and recycle valuable elements from
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metagenomic libraries.' The PhD project will focus on: Developing synthetic expression elements (promoters, 5'-UTRs, and regulatory modules) to expand host compatibility. Engineering alternative microbial hosts
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, this concerns the methods, analysis and models that form the basis for the implementation and verification of digital systems. Required selection criteria You must have the following qualifications required
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distribution. Developing and applying high-throughput data analysis methods for TEM experiments. Investigating corrosion initiation and propagation mechanisms and linking them to alloy composition and processing
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generation. AI-based performance assessment in early design, integrating rapid analysis tools, multi-criteria performance estimation, and surrogate modeling. Human–AI collaboration in design, including agent
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orbitronics. Such models can assist in developing new concepts in quantum transport where the key component is the orbital angular momentum of electrons rather than their charge or spin. The system will be
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is important that you are able to: Work independently and take initiative Plan and carry out work systematically Tackle research questions with curiosity and self-motivation Engage in critical analysis
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activities in urban planning, with a particular focus on Geographic Information Systems (GIS), land use analysis, and digital decision support systems. The role addresses the increasing demand for advanced
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an Integrated PhD study plan[1] You must have some relevant skills and competencies in systems analysis, optimization and/or operations research You must have a strong academic performance from your previous
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other commercially valuable elements from brines and recycled batteries. However, current extraction processes face challenges related to ion selectivity and transport efficiency, limiting the performance