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carrier dynamics in luminescent materials. The model will incorporate a user-defined lattice structure with discrete electron- and hole-trapping sites based on defect distributions. Each site will be
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to innovate at the leading edge of science, working on groundbreaking projects focused on both the structural and electronic characterization of quantum materials. At DTU energy, our research focuses
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chromatin structure, and improve nucleosome maps. The positions are part of the project: “Development and application of generative AI models for ctDNA detection and characterization,” supported by the Novo
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proteomics. The goal is to generate structural and functional models of protein complexes as a guide to understand disease-causing mutations. The project is supported by the Independent Research Fund Denmark
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(EM) forward modeling, inversion, and applied EM studies. Within this team, the candidate will be responsible for the numerical development of inversion codes for both frequency-domain (FEM) and