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• Interdisciplinary applications ranging from biomechanics and geophysics to fluid and polymer models Further information can be found here: https://www.math.cit.tum.de/math/forschung/gruppen/numerical-analysis
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not limited to: Corrosion/degradation, high-temperature oxidation, coatings/interfaces, material modeling of mechanics and deformation, ceramics, polymers, structural composites, nuclear materials, and
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supervision/coordination of the grant: Maria Goreti Ferreira Sales, Ana Rita Aires Cardoso IV - Work Plan / Goals to be achieved: The work plan calls for the characterization of biomedical polymer formulations
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on the administration and oversight of the Resource Hub, Furniture Studio, Metal Shop, Spray Booth & Casting Room, Sanding & Finishing Room, and Model/Omni Wood Shop. The SOM reports to the Associate Director of Studio
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University of North Carolina at Chapel Hill | Chapel Hill, North Carolina | United States | 2 months ago
code development or open-source contributions, polymer chemistry, and mathematics, modeling, or numerical methods. An established record of research productivity is highly desired. Special Physical
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Responsibilities Plan and execute computational studies related to modeling polymer properties. Collaborate as part of an interdisciplinary team to design computational experiments and validate models. Prepare
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vibrant user community. The team at BioPACIFIC MIP is developing new ways to grow high quality protein, polymer and small molecule crystals alongside the new electron diffraction tomography methods
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of Mechanical Engineering (ME: https://me.eng.ua.edu/) and the SCOE (CoE: https://eng.ua.edu/) at The University of Alabama (UA: https://ua.edu/) invite applications for tenure-track and tenured faculty positions
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Information The Department of Mechanical Engineering (ME: https://me.eng.ua.edu/) and the SCoE (SCoE: https://eng.ua.edu/) at The University of Alabama (UA: https://ua.edu/) invite applications for tenure-track
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on understanding and controlling the formation and interactions of soft materials at the nanoscale using principles of molecular self-assembly. We harness a broad range of building blocks – including polymers