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-based instruments for applications across a wide range of disciplines including adaptive optics, spectroscopy, biophysics, remote sensing, laser communications, and fusion diagnostics. We host the ESA
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to identify the conditions under which peatlands recover, change state or approach ecological tipping points. The project brings together palaeoecology, environmental archaeology, analytical chemistry, remote
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-based instruments for applications across a wide range of disciplines including adaptive optics, spectroscopy, biophysics, remote sensing, laser communications, and fusion diagnostics. We host the ESA
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-based instruments for applications across a wide range of disciplines including adaptive optics, spectroscopy, biophysics, remote sensing, laser communications, and fusion diagnostics. We host the ESA
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Digital Twins You will apply Artificial Neural Networks (ANNs) to develop efficient digital twin representations of shoreline systems. By training ANN models on diverse datasets—including remote sensing
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monitoring, remote sensing, and hydrological simulations to provide precise assessments of vulnerability hotspots, soil degradation, and agricultural impacts. ● Your outputs will directly inform
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geospatial datasets using appropriate methods (e.g. GIS, remote sensing, drone-based survey where appropriate). Contribute to the co-development of Minimum Valuable Prototypes (MVPs), ensuring scientific
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results. This is a full time post (35 hours per week), and you will be offered an fixed term contract of 9 months. Remote working arrangements can be found. Research staff at King’s are entitled to at least
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-based instruments for applications across a wide range of disciplines including adaptive optics, spectroscopy, biophysics, remote sensing, laser communications, and fusion diagnostics. We host the ESA
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-based instruments for applications across a wide range of disciplines including adaptive optics, spectroscopy, biophysics, remote sensing, laser communications, and fusion diagnostics. We host the ESA