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of Materials Design and Innovation Posting Number R260134 Posting Link https://www.ubjobs.buffalo.edu/postings/64174 Employer Research Foundation Position Type RF Professional Job Type Full-Time Appointment Term
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Materials Science section at TU Delft is actively engaged in developing fundamental understanding for next-generation circular steelmaking. Using advanced atomistic modelling techniques, you will unravel
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generation, targeted atomistic simulations, structural descriptor extraction, and predictive models. The work will aim to establish links between local pore geometry, structural disorder, sodium adsorption
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the preponderance of surface and finite size effects. This project aims to dynamically track temperature-induced phase transitions at the nanoscale through atomistic simulations. Focusing on metallic alloys and
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University of North Carolina at Chapel Hill | Chapel Hill, North Carolina | United States | 16 days ago
the School’s Strategic Plan (https://pharmacy.unc.edu/about/oe/strategic-plan/). Our Vision is to be the global leader in pharmacy and pharmaceutical sciences. Our Mission is to prepare leaders and innovators
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, including their microstructure and their in-plane and out-of-plane texture. He/she will also be responsible for coordinating exchanges with the University of Helsinki. The candidate will implement atomistic
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-supervised by Prof. Jenny Nelson (Imperial College London), and Dr. Riccardo Rurali (ICMAB-CSIC). Main tasks: • Develop atomistic and coarse-grained models of the structure and dynamics of molecular
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: 285938884 Postdoctoral Research Associate Location: Princeton, NJ Salary Range or Pay Grade: $65,000.00 Description The Graves Research Group at Princeton University (https://graves.princeton.edu/ ) is
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on various aspects along the battery value chain, ranging from synthesis, cell assembly, characterization, modeling to scaled-up manufacturing. The 2-year postdoc project Atomistic modelling and synthesis
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Overview Molecular spins combine the coherence, optical readout, and room-temperature operation of solid-state spin qubits with the atomistic tunability and nanoscale modularity of synthetic