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Field
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the discovery of gravitational waves (GWs), we have a new way to study these extreme objects. To make breakthroughs in understanding the properties of stellar remnants and the GWs they generate, it is crucial
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their operational reliability. The PhD student will combine mathematical models, in-house laboratory tests in a wind-wave-current flume (https://research.ncl.ac.uk/amh/ ) and numerical methodology to quantify
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. Understanding the processes behind destructive events, such as catastrophic Storm Alex in southeast France (2020) is essential. These processes include the formation of flood waves and sediment pulses, which
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to train tomorrow’s leaders in earth and environmental science. For further details about the programme please see http://nercgw4plus.ac.uk/ For eligible successful applicants, the studentships comprises
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magnetoacoustic dynamics using optical techniques MA-wave The candidate will perform experiments in magnetic devices where acoustic signals can be triggered (hybrid piezoelectric/magnetic devices). MOKE microspcopy
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of Antwerp. See also: https://remotesensing.vito.be/news/sspirit-tackling-plastic-pollution The main task of the KU Leuven PhD project will be the further development and validation of a two versatile
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shift from microwaves to mm-waves (ca. 30 – 300 GHz) or even Terahertz frequencies (ca. 0.3 – 1 THz). Current on-chip interconnect technology relies on printed circuit board (PCB), which is not suitable
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, reaction kinetics and dynamics, and theory/simulation of ultrafast time-resolved experiments. will be a part of the Physical Chemistry section at DTU Chemistry (https://www.kemi.dtu.dk/english/research
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November 2025, 16:00 GMT Application link: https://www.essex.ac.uk/Postgraduate/Research/Opportunities/future-shellfish-fisheries Background Climate change is threatening the livelihood of coastal
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, statistical mechanics, reaction kinetics and dynamics, and theory/simulation of ultrafast time-resolved experiments. You will be a part of the Physical Chemistry section at DTU Chemistry (https