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. The postdoctoral fellow will conduct research on Algorithmic Verification of Concurrent Systems within the Programming Languages, Logic, and Software Security Research Group at Aarhus University. The focus
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, collaboration and professional development. The Faculty of Medicine is committed to preparing PhD graduates for diverse career paths. Throughout your PhD, you will develop advanced research competencies alongside
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interface, and all the way to quantum algorithms and applications. The long-term mission of the programme is to develop fault-tolerant quantum computing hardware and quantum algorithms that solve life
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in e.g. qubit measurements and quantum error correction algorithms. The core responsibilities include modeling, simulating and designing components and chips for photonic and neutral atom quantum
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at a high-quality level contributing to the key aims and obligations of the IPA project. See the project description here . use the IPA project as a basis for developing a broader research agenda within
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Assistant Professor Position in Transient Electromagnetic Signal Processing, Modelling and Inversion
: * Development of advanced signal processing methodologies for transient electromagnetic data * Development of transient electromagnetic forward modelling and inversion algorithms. * Development of processing
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intelligent control and aerial robotics for navigation in uncertain environment. You will be mainly responsible: for implementation of machine-learning algorithms for unmanned aerial vehicles; validation
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vehicles for offshore inspection, surveillance and exploration. The project focuses on the development of high-speed USV technologies that can operate reliably in challenging marine environments and support
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of these experiments. As part of this, we have developed new algorithms and a completely new web-based platform – EasyNMR - for performing such modelling/simulations. With this position, we seek to strengthen
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sensing technologies (camera, Electromagnetic tracking system, FBG sensing) with continuum robotic systems and development of associated sensing and estimation algorithms 3D environment reconstruction based