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Field
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element simulations, blast loading models, propagation of pressure waves in the ground and soil–structure interaction analyses to establish methods for assessing the protective capacity of existing
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shaping techniques becomes challenging for mm waves, as all the circuit elements must scaled down to a comparable size or smaller. Our approach is to instead use so-called Huygen’s metasurfaces to shape
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Join us in the University of Exeter’s Centre for Metamaterials Research & Innovation – the heart of the UK Metamaterials community. You’ll be part of the £20 million EPSRC MetaHUB – the UK’s largest investment yet in the vibrant and strategically important field of Metamaterials...
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. Theory and modelling of EIT and four-wave mixing will guide the experiments, alongside group work on nanophotonic design. The student will work across device fabrication, cryogenic QD optics and atomic
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I am interested in the most catastrophic and explosive collisions in the Universe, such as the mergers of neutron stars and black holes. I study these using both gravitational waves and
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BAM Bundesanstalt für Materialforschung und -prüfung | Berlin, Berlin | Germany | about 2 months ago
on the Scaled Boundary Finite Element Method (SBFEM) – for modelling the propagation of guided ultrasonic waves in pipelines The task includes the refinement of existing SBFEM implementations and their extension
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Frequency Lattices and RF-Controlled Comb Dynamics Our group investigates new ways of controlling and confining electromagnetic waves through time as an active design dimension. Rather than engineering wave
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I supervise a wide range of projects in gravitational-wave astronomy. This work is carried out within the Centre of Excellence for Gravitational-wave Discovery: OzGrav. As a member of my team, you
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reduce wave energy and flood risk while also supporting biodiversity and carbon storage. However, there is limited understanding of how effectively restored saltmarshes provide coastal protection compared
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dataset for the neural networks. A PINN model is developed for the potential flow model to obtain up to second-order nonlinear solutions for water wave interactions with marine structures. The developed