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maintenance, including primary responsibility for diagnosing and trouble-shooting problems and arranging repairs, and participating in the scientific analysis, interpretation, and dissemination of data and
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programming skills (C++ or Python) and experience with numerical modeling (for instance, Finite Element Analysis or Computational Fluid Dynamics); A strong interest in—and willingness to learn and perform
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, and Strategic Plan . At UC Berkeley, we believe that learning is a fundamental part of working, and provide space for supportive colleague communities via numerous employee resource groups (staff
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aero-elasticity, numerical flow computation and experimental work. You will work with nearby colleagues and international collaborators and be an active contributor to the ongoing project formation and
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with expertise in black hole perturbation theory, gravitational-wave data analysis for extreme mass-ratio inspirals, numerical relativity, and post-Newtonian theory, although we are open to all
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diffraction techniques. While candidates with experience in structure analysis based on powder diffraction, neutron diffraction, or scattering data will also be considered, preference will be given to those
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workflow for the analysis of single-crystal diffuse scattering. In this project, you will have the opportunity to contribute towards reaching this challenging aim. Your tasks include: Deducing numerous
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of the envisioned underwater use case scenarios. The post-doctoral researcher will be responsible for the analysis and design of reconfigurable optical metasurfaces making use of optimization methodologies and
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the working group focus is the analysis of nonlinear wave and dispersive equations. Our ideal candidate already has experience with methods of PDEs, in particular Harmonic Analysis, and is able to actively
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composite fibres into 3D-shaped component parts. High quality numerical analysis is a crucial part of the process of understanding and predicting high quality manufacture of composite structures. However