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Field
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) within the NCN OPUS-29 project (OSF registration no. 646959), entitled: “Advanced structural control and long-range organization of magnetic and magnetically doped nanoparticles in liquid crystal systems
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commercial (e.g. Abaqus, ANSYS, etc.) and/or open-source finite element (FE) codes (e.g., MOOSE, DAMASK, etc.) is required. Experience with microstructural modeling (e.g. crystal plasticity) applied to fatigue
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crystal growth and structure–property relationship discovery. The successful candidate will join a highly collaborative research environment that integrates robotic experimentation, advanced
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Postdoc (f/m/d) Methods Development for the Micromechanical Characterization and Modeling of the ...
., finite element simulation, crystal plasticity modeling, analytical/semi-empirical hardening models, or data-driven analysis methods, along with a demonstrated ability to independently develop new
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Helmholtz-Zentrum Dresden-Rossendorf - HZDR - Helmholtz Association | Dresden, Sachsen | Germany | about 2 months ago
-/nanoindentation and complementary imaging techniques (e.g. AFM) # Hands-on experience in the numerical modeling of mechanical material properties, e.g., finite element simulation, crystal plasticity modeling
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impact, respect, integrity, and teamwork. Keywords: P-based materials, positive electrode materials, sodium-ion batteries, synthesis, crystal structure, electrochemical properties. Laboratory: High
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materials, positive electrode materials, sodium-ion batteries, synthesis, crystal structure, electrochemical properties. Laboratory: High Throughput Multidisciplinary Research Laboratory (HTMR). Project
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team that includes condensed matter theorists, experts in neutron/X-ray scattering, and experts in thin film and single crystal materials growth and characterization. You will perform cutting-edge
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box-furnace heating, vacuum or inert-atmosphere processing, and related methods. The researcher will recover reaction products, determine phase composition and crystal structure by powder X-ray
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circuits that couple to both macroscopic magnetic crystals as magnon target mass and solid-state single-electron qubit with magnetic field compatibility. Develop superconducting hybrid circuits that couple