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properties of the electrodes will enhance interaction with bacteria and facilitate electron transfer. Here, we will focus on design and fabrication of 3D carbon electrodes, which can provide excellent
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experiments and analysing data. Design and perform cultivation in bioreactors. Writing peer-reviewed scientific publications. Actively interacting and collaborating with other partners involved in the project
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functions of single nanoparticles as well of ensembles with varying number of nanoparticles. Advancing the understanding of corporative interactions in nanoparticle catalysis, including ensemble-averaging
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database experts to access and interpret datasets. Conduct statistical modeling of fish distribution and habitat interactions. Interpreting results in the context of fish ecology, marine conservation and
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sustainability within society. A key element is the role of technology and its interaction with industry and individuals. The department is divided into four divisions: Technology & Business Studies, Management
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-small silicon nanocavities [Babar2023, Rosiek2023] with extreme light-matter interactions. We aim to combine fundamental theory, device design, and our unrivalled capabilities in high-resolution silicon
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interaction with the other PhDs/Postdocs and more senior scientists within the MicroAM project. Responsibilities and qualifications If you are interested in numerical simulations of advanced manufacturing
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related to your PhD project. You will also disseminate the results of your project at national and international conferences and interact with research groups at the forefront of international persistence
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Digital Twins for Wind-Offshore and GREAT: GRid Enhancement for Ancillaries in Tomorrow’s power systems, where you will interact with researchers and experts from TotalEnergies and many other research
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respect and academic freedom tempered by responsibility. The project will be supervised by Assoc. Prof. Thomas Christensen. As part of the project, the PhD student is expected to interact with and visit