53 density-functional-theory Postdoctoral positions at Technical University of Denmark
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the opportunity to take a central role in developing next-generation continuous-variable quantum communication systems, including high-bandwidth squeezed-light sources, ultralow-noise detection, and advanced DSP
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postdoctoral position of three-year duration in atmospheric characterization of terrestrial, super-Earth, and sub-Neptune type exoplanets. The postdoc will work with data from the James Webb Space Telescope
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Job Description We are inviting applications for a part-time 2-year postdoctoral researcher to join a dynamic and interdisciplinary team and work at the intersection of behavior modelling, machine
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motivated to move the area of enzyme engineering to the next level, while having a positive impact on our world. When joining our team, you get the opportunity to use the latest algorithms in machine learning
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expertise in dependability, performance, and sustainability will drive us towards a smarter, greener future. By joining us, you stand to gain extensive support unlocking your career potential. You'll have
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postdoctoral position of three-year duration in extreme-precision radial velocity research. The postdoc will work on projects related to the Second Earth Spectrograph (2ES, www.2es.dk ), a next-generation
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migrants and disadvantaged learners through an inclusive digital transformation. You will become part of a diverse and interdisciplinary environment that bridges computer science, pedagogy, and modern
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the metabolism of gas fermenting microorganisms, with a focus on C1 metabolism. You will work independently on the development of high impact research projects. You will use state of the art equipment
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. The open positions are attached to three different collaborative projects with related but distinct goals, all making use of our expertise in squeezing-based entangled states of light: ClusterQ (ERC): A
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dichroism at room temperature. Your role will center on developing a novel meta-crystal composed of individually stacked monolayers for room-temperature spin-polarized valleytronics. The objective is to