56 density-functional-theory Postdoctoral positions at Technical University of Denmark
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/or demonstrated scientific achievements. We also expect you to have a strong ability to conceive new ideas, construct high-performance experimental setups, take initiative and leadership, and secure
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genomic data from extinct and extant species, and machine learning, you will help develop a foundational tool for predicting extinction risk and advancing the use of genomics in conservation science. Job
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of these models into simulations of injection risks and storage performance. The recruited postdoc will focus primarily on thermodynamic modeling, working closely with colleagues engaged in experimental and
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potential for exploiting temperature gradients for producing electricity and predict their long-term performance under real operating conditions. The project also includes modeling of heat transfer and
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Institute, you will play a vital role in advancing bioinformatics tools and pipelines to help prevent and control foodborne diseases. Food- and waterborne diseases continue to pose major public health
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our team at DTU Compute, offering a fully funded position within a dynamic and interdisciplinary research environment. The positions are part of the research project “AI-driven materials optimization
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Job Description Are you driven by the potential of AI in enzyme engineering? Do you want to design novel enzymes from scratch using cutting-edge generative models and validate their function in
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modeling of highly renewable energy systems and carbon management in such systems. You will work with nearby colleagues, and with both academic and industrial partners in Denmark as well as abroad. Your
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ultrasound imaging, silicon CMUT probes, animal experiments, and clinical investigations, and the main purpose is to translate the SURE method from a research idea to the clinic. The main task is to optimize
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of single indistinguishable photons for photonic quantum information technology. Single-photon sources play an important role in photonic quantum information applications, which generally require near-unity