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- MOHAMMED VI POLYTECHNIC UNIVERSITY
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closely related field. Experience with molecular simulation, machine learning, or related computational methods for molecular or materials systems. Background in polymer science, soft materials, complex
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closely related field. Experience with molecular simulation, machine learning, or related computational methods for molecular or materials systems. Background in polymer science, soft materials, complex
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University of North Carolina at Chapel Hill | Chapel Hill, North Carolina | United States | about 1 month ago
knowledge of the molecular dynamics simulations, polymer physical chemistry, and data analysis, Linux operating systems, programming skills and scripting, all of which could be obtained during
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materials engineering, plastics and metals present complementary strengths and challenges. Metals offer strength, conductivity, and wear resistance while polymers enable complex geometries and lightweight
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Sciences, focused on innovative research in designing microfluidics chips for studying lipid and polymer-based nanoparticles under flow using nuetron and X-ray scattering techniques. About us The Department
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. PROFIL : PhD in polymer science, materials science, chemistry, chemical engineering, fertilizer science, or a closely related field. Strong expertise in the design, functionalization, and processing
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, and CAD tools including Autodesk AutoCAD, Inventor, and Creo, enabling large-scale simulation and modeling of nonlinear and stochastic dynamic systems. Penn State Behrend Penn State Behrend is an
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SUSMAT-RC - Postdoc Position in Computer-Aided Design and Discovery of Sustainable Polymer Materials
candidate will work on an exciting project focused on extracting and analyzing experimental and computational data to develop predictive models for polymer-based materials. This project aims to leverage
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Czech Technical University in Prague, Faculty of Nuclear Sciences and Physical Engineering | Czech | 3 months ago
(DMA) and flow-through bioreactors, determining the barriers that affect in vitro–in vivo correlation (IVIVC) factors, comparison of static and dynamic loading of implants in simulated body fluids
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and in vivo testing, mechanical design, machining, assembly, and polymer fabrication. The Division collaborates closely with surgeons, cardiologists, veterinarians, and commercial partners, and focuses