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implement front-end tools or user interfaces to facilitate data accessibility for researchers and practitioners. - Leverage data analysis to unify underlying structural data used to develop design
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the documents as stated in "How to apply". Excellent written and oral proficiency in English Applicants with backgrounds in computational mathematics, numerical analysis, applied and computational algebra
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systems for use in breaking waves, both in the field and in the lab Contribute to analysis of images, and development of the open-source analysis software PyOPIA (https://github.com/SINTEF/pyopia
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theoretical analysis and numerical simulations, drawing on tools from quantum parameter estimation and quantum information, to analyse quantum-enhanced temporal measurement protocols, quantify the precision
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engineered constructs. Learn more about the innovative work led by Dr. Chris Chen here: https://bdc.bu.edu/bdc-team/. What you’ll do: Independently conduct research on liver cell proliferation, expansion, and
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acoustic metamaterial solutions, including porous materials (porous concrete); - support in testing tools and numerical models for predicting the performance of acoustic metamaterials; - development
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soft materials. Be directly involved in integrating experiments and theoretical prediction. Develop a new understanding of the fundamental flow physics through theoretical and/or numerical work. Develop
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) . The section engages in theoretical, experimental and numerical fluid mechanics. This includes technology for the green transition, marine hydrodynamics, hydrodynamic waves, and continuum mechanics. This project
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theoretical prediction. Develop a new understanding of the fundamental flow physics through theoretical and/or numerical work. Develop independence and be self-driven to advance with their research project
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; Additional qualifications (required at time of start) • Experience in numerical fluid dynamics or ocean model application, validation and analysis; • Ability to collaborate effectively in a team environment