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University of Wisconsin-Madison, Department of Bacteriology | Madison, Wisconsin | United States | 2 months ago
research programs aimed at predictive modeling and engineering of biological networks, mechanisms of adaptation and stress response, or multiscale interactions in complex biological systems. Teaching loads
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; Defect nucleation; Density functional theory; Embedded atom method; Finite element modeling; Molecular dynamics; Multiscale modeling; Nanoindentation; Nanomechanics; Eligibility citizenship Open to U.S
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force fields and probabilistic multiscale/multiphysics surrogate modeling. Preferred areas of application include structure and microstructure of metallic alloys and relationships between defects and
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environmental conditions. In addition to molecular-level modelling, the PhD candidate will contribute to multiscale computational frameworks that link microbial interactions and metabolic exchange with emergent
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properties in nanocomposites; (4) Modeling of interfacial environments around carbon nanotubes and similar colloidal nanoparticles with application to separations; (5) Multiscale modeling of surfactant
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experimental work will rely on the state-of-the-art facilities of TU/e’s A3M Lab (Advanced, Additive and Adaptive Manufacturing Lab) and Multiscale Lab. The simulation work will have access to specialized
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, Characterization and Production of Nanomaterials (V. K. Tewary and Z. Yong, eds.), Elsevier, Amsterdam, 2023, p. 89-124. 2. V. K. Tewary and E.. J. Garboczi, "Lattice Green’s Function for Multiscale Modeling
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controlling electrochemical interfaces across scales. Computational PhD position: You will develop an AI-enhanced multiscale modelling framework combining density functional theory, ab initio molecular dynamics
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, reliability, multi-physics and multiscale simulation. Demonstrated publication record in high-quality international journals and conferences. Experience working in multidisciplinary and international research
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between multiscale flows involving ocean surface waves, submesoscale current, turbulence, and wind actions. The research aims to derive a highly accurate and efficient theoretical models by extending newly