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include: fluid mechanics, biomechanics, statistics and data science, computational mathematics, combinatorics, partial differential equations, stochastics and risk, algebra, geometry, topology, operator
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the partnership, the Associate will develop the ability to: (i) model and predict fluid flow and system performance for large-scale systems; (ii) assess how different types of fouling may affect the membranes and
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the project: 1. Computational Fluid Dynamics (CFD) Simulations: • Develop and implement CFD models to simulate the effects of mangroves, seagrass, and coral on wave attenuation. • Conduct parametric studies
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crisis through transformative innovation in the built environment. This pioneering effort brings together Harvard scholars and practitioners across chemistry, materials science, fluid mechanics, AI
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leading to AD, 2) to improve early detection and longitudinal monitoring by combining neuroimaging (i.e., MRI, PET and MEG) and fluid (i.e., CSF and plasma) biomarkers and 3) to analyze genomic data
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of the nucleus, the structure and assembly of spindles, the positioning and transport of cellular organelles, and fluid-structure problems in biology. To address these, often in close collaboration with
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and their communities. Examples of software project applications of CCA researchers include fluid dynamics and plasma simulations, radiative transfer, N-Body & dynamical simulations, GPU & other high
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shelf. Development strategies should be proposed and tested, accounting for determinant conditions such as low permeability and the interplay with rock-fluid properties and chemistry. Competence required
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on a candidate's track record of applying fluid and solid mechanics via CFD/FSI modeling. This is a crucial aspect of the role and will significantly contribute to our research projects. Excellent
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Glaucoma Research-funded scientist Samuel Herberg, PhD, is using a 3D model of the fluid drainage tissue that could improve our ability to understand and treat glaucoma. Learn More Standing Together to