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farms. This research will build upon a multi-scale and multi-physics numerical modeling framework, with the goal of enabling rapid and robust probabilistic assessments for design, optimization, and
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silicon waveguides with a nanometric core. This work will include the development and optimization of simulation tools for the design of these waveguides, combining numerical results with simplified models
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applications for faculty positions in Mathematics. Faculty whose research lies in Mathematical Analysis (including Numerical Analysis), Algebra and Algebraic Geometry, Applied Mathematics (PDEs, Operations
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quantitative connections between the continuum parameters and the underlying microscopic mechanics. Numerical study. Implement the models in computational codes to design and optimize morphing strategies. During
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Mission: Carry out tasks of the H-HOPE research project assigned to the IFLUIDS research group. Functions to be developed: Analyze pilot data and numerical simulation of the systems developed with
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Responsibilities: Build and analyze dynamical system models (multiscale, QSP, PBPK, PK-PD). Apply numerical methods, optimization, and parameter estimation to calibrate models to experimental/clinical data. Perform
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under the FIRST TEAM FENG project, No. FENG.02.02-IP.05-0039/23, entitled: „GenProSyn – an innovative generative approach to enumeration of easy-to-synthesize ligands with optimized properties”. Project
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Arts et Métiers Institute of Technology (ENSAM) | Paris 15, le de France | France | about 1 month ago
pressurization) and waves propagation within them is not well understood. Secondly, optimized transducers networks need to be designed given MCs specificities by combining promising technologies such as Flexible
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University of North Carolina at Chapel Hill | Chapel Hill, North Carolina | United States | 1 day ago
range of professional training opportunities for career growth, skill development and lifelong learning and enjoy exclusive perks that include numerous retail and restaurant discounts, savings on local
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quantum effects can be harnessed to process information with improved energetic efficiency (see, e.g., arXiv:2408:06418 ). Optimization of thermodynamic protocols: Design thermal machines that exploit