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understanding of the physical processes of the wave structure interaction. The postdoc position aims at developing a state-of-the-art methodology for accurate testing of such structures in our physical wave basin
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Energy’s state-of-the-art wave tank to characterise static and dynamic behaviour under wave and current loading. The experimental evidence will be used to validate a high-fidelity coupled load–structure
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of the model will largely be built on existing datasets from large scale wave flumes. These datasets will not involve actual swash zone processes, but rather measurements of coastal profile development from
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of the model will largely be built on existing datasets from large scale wave flumes. These datasets will not involve actual swash zone processes, but rather measurements of coastal profile development from
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Norwegian Seafood Research Fund. Responsibilities and qualifications Your overall focus will be to strengthen the department’s competencies in modelling ocean waves and their interaction with floating
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on two types of phenomena: (i) Charge Density Wave (CDW) order in magnetic, lanthanide-based MOFs and (ii) electride-like, quasiatomic electron states that reside in the pores of certain MOFs. The aim
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on two types of phenomena: (i) Charge Density Wave (CDW) order in magnetic, lanthanide-based MOFs and (ii) electride-like, quasiatomic electron states that reside in the pores of certain MOFs. The aim
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successful candidates will join the Antennas, Propagation and Millimetre-Wave Systems section, contributing to research on compact, multiband, and high-gain antenna solutions for space-constrained satellite