682 web-development-"https:" "https:" "https:" "Newcastle University" positions in Netherlands
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of the observation receiver used to measure the transmitter output and extract distortion information. This position is part of the ERC Synergy DISRUPT project, which aims to develop new architectures for observing
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for expensive new dispatchable generation capacity, enable deeper renewable energy penetration, mitigate grid congestion, and reducing CO₂ emissions at national scale. In this PhD project, you will develop
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contribute to developing this theoretical framework, with a strong focus on analytical modeling, computational methods, and the interpretation of learning signals embedded in physical structures. Recent
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developments in the field and either push the boundaries of SLT on the mathematical foundational theory side, extend SLT to new learning frameworks (e.g. variational inference or reinforcement learning, etc
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business opportunities in built environment transitions over the next 5–10 years? As a PhD candidate within the NWO-funded FUTURED programme, you will develop short-term, evidence-based scenarios
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this gap by developing a machine learning-based downscaling framework that links coarse resolution (0.25°-1°) reanalysis and climate model outputs to fine-scale (∼100 m) estimates of surface melt and
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presses or a demonstrable capacity to develop such a record; a strong cooperative attitude and willingness to engage in collaborative research. This is what else we offer you The Postdoc researcher will be
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on the sustainable use of the marine environment through ecosystem-based management and marine spatial planning. Developing ways to make this advice climate-proof and identify climate-ready solutions. Contributing
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of academic skills through teaching courses and supervising master/bachelor theses within the department. Where to apply Website https://www.academictransfer.com/en/jobs/358940/phd-candidate-in-mathematical-o
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: Postdoc in the field of biomolecular condensates What you will do The postdoctoral researcher will develop innovative biophysical assays to study the formation of biomolecular condensates and to monitor