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Willow Chip project (https://www.bbc.co.uk/news/articles/cd7pwezyze1o) for which we require quick delivery. The goal of this recruitment is to appoint one postdoctoral researcher who will deliver
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-dimensional quantities by developing new linear and nonlinear shrinkage approaches. In particular, new estimators of optimal portfolio weights will be derived, leading to considerably more stable and less
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videography techniques in field and studio situations; nonlinear editing; and video compression, basic equipment troubleshooting and equipment maintenance; Expertise in the operation of professional studio
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instabilities, we combine fluid mechanics, acoustics, and combustion with methods from control engineering, nonlinear dynamics, and data-driven modeling (machine learning). We collaborate closely with
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equivalent subject. Good knowledge of computer-aided engineering approaches, where nonlinear FEM, rule-based design, parametric design etc and general model-based systems engineering approaches are a
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successful candidate - we will mutually ensure the work aligns with your goals and aspirations. For more details see https://binyshlab.com/positions/ What will you do? Conventional robotic bodies rely on
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successful candidate - we will mutually ensure the work aligns with your goals and aspirations. For more details see https://binyshlab.com/positions/ What will you do? Conventional robotic bodies rely on
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AUSTRALIAN NATIONAL UNIVERSITY (ANU) | Canberra, Australian Capital Territory | Australia | about 19 hours ago
, applied and computational mathematics. Current research areas include algebraic geometry, representation theory, number theory, algebraic and geometric topology, nonlinear partial differential
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focus on acoustic techniques, including ultrasonics, nonlinear acoustics, acoustic emission and vibro-acoustics, while remaining open to multimodal inspection strategies whenever scientifically relevant
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strongly coupled with their surrounding environment through complex aerodynamic or hydrodynamic interactions. These interactions are highly nonlinear and depend on the robot geometry, local flow