37 density-functional-theory-molecular-dynamics Postdoctoral positions in Switzerland
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, Switzerland) is offering a 3-year postdoctoral position. Main duties and responsibilities This position is part of the Swiss National Science Foundation "Shuffle algebra techniques in representation theory
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University of Basel, Condensed Matter Theory and Quantum Computing Position ID: University of Basel -Condensed Matter Theory and Quantum Computing -POSTDOC [#21540] Position Title: Position Type
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means of CMOS-based high density microelectrode arrays (HD-MEAs). The overall goal of this project is to combine advanced optical methods for light-stimulus shaping with high-spatiotemporal-resolution
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Your profile Candidates should have an exceptional academic record and a robust mathematical foundation. They should have published works at the main conferences in the field of machine learning, such as ICML, NeurIPS, ICLR, etc. Excellent communication skills and fluency in English (spoken and...
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The Department of Biomedicine at the University of Basel is home to over 70 different research groups and offers an internationally stimulating, dynamic and friendly atmosphere in an attractive
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of health and disease. As a postdoctoral researcher, you will become part of a young team investigating cancer stem cells and the molecular mechanisms of their regulation, a promising and dynamic field
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• Being part of a committed and motivated team with short information and decision paths • A state-of-the-art workplace in our new headquarters on the dynamic BaseLink site in Allschwil • Inspiring
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immunoengineering. This position is part of our newly funded ERC Advanced Grant, which aims to develop genetically engineered feedback control circuits in human T cells to tackle challenging diseases. The successful
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. Mastering German and/or French are helpful but not mandatory. Our offer Empa offers a dynamic and inspiring research environment at its Thun campus, located near Bern. You will work on a scientifically and
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. Utilizing a combination of experimental and computational approaches, we develop and characterize novel functional materials and devices driven by robust nanoscale quantum effects. We are currently seeking a