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. The successful candidate will work directly with the project’s principal investigator, Assoc. Prof. Robin Kaarsgaard , an internationally recognised expert in the areas of quantum programming languages
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covered by the Section for Algebra & Geometry and the Copenhagen Centre for Geometry & Topology (GeoTop) . Functional analysis, operator algebras, geometric group theory, descriptive set theory, harmonic
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of the creator economy, develop a new theory of organising and platform power, and provide policy recommendations for platforms and regulators. The PAY4PLAY team includes the principal investigator
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). The selected candidates will contribute to the research project D-CORE The Dark Side of Corporate Responsibility: Content Moderation as Emotional Dirty Work in the Digital Age The position is hosted at the new
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physics and condensed matter theories to address the problem of fracture in complex materials. You will be working with experimental model systems and numerical simulations of materials that exhibit
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physics and condensed matter theories to address the problem of fracture in complex materials. You will be working with experimental model systems and numerical simulations of materials that exhibit
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modelling Your specific work will involve modelling and validation of the static and dynamic response of complex wind turbine structures (e.g. wind turbine blades). As part of your work, you will be modelling
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wide-bandgap materials, based on the ultrafast spectroscopy and comparison to theoretical expectations. Your work will be carried out together with a team of researchers. Your profile Applicants should
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-assisted control of large wind turbines. You will collaborate closely with both academic and industrial partners in Denmark and abroad, ensuring that your research has impact in practice as well as in theory
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wide-bandgap materials, based on the ultrafast spectroscopy and comparison to theoretical expectations. Your work will be carried out together with a team of researchers. Your profile Applicants should