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novel methods. You will contribute to the better physical understanding of these phenomena and their cosmological implications. The position is with Giorgos Leloudas, in the research group of compact
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process. An integral part of the project will be the development of enhanced data-driven physics methods to achieve reliable prediction of material removal rate and material removal distribution
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the closed-loop system on new molecular scaffolds. Contributing to cross-disciplinary education by providing case studies on computational and empirical method integration. Qualifications You must have a two
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demonstrating high-performance devices: Numerical simulations, device fabrication in the cleanroom (relying on international partners), and device characterization (relying on the facilities in the CIE lab
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range of advanced functional genomics methods, particularly single-cell technologies, in pre-clinical model systems such as cell lines and patient-derived tumor organoids as well as patient samples
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close collaborations with clinical departments. We work with numerous national and international partners, and our team is multidisciplinary, consisting of molecular biologists, engineers, biomedicine
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refine bulk and advanced analytical methods for the detailed chemical characterization of bio-oil feeds and upgraded products. The analysis will focus on GC-based characterisation available at Topsøe but
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, theory, and methods of the PhD project is up to the candidate. It is highly recommended that interested candidates contact one of the project leads to discuss their PhD proposal prior to application
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-border challenges in STEM education. Qualitative Methods: Semi-structured Interviews: Engage educators, policymakers, and researchers to identify goals, misalignments, and opportunities for alignment
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. The project State-of-the-art quantum devices will need state-of-the-art fabrication tools. In this project we will combine methods of quantum optics to enhance tomorrow's fabrication tools. This challenging and