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Field
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to motor neuron diseases. We are also pursuing studies to define the cellular composition of peripheral nerves, particularly the microglial-like cells that contribute to nerve homeostasis as well as disease
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(ChemE) invite applications for a Postdoctoral Researcher position in the labs of Dr. Meagan Mauter and Dr. William Tarpeh. This interdisciplinary position will focus on the development of process modeling
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simulated and measured results to assess quantities of interest. Interface with world-class exascale computing clusters. Work with a dynamic team of researchers, developers, experimentalists, and model
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, the postdoctoral researcher will be responsible for contributing to the development of advanced methodologies for predicting crystal structures (CSP) based solely on their chemical composition and atomistic modeling
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polymers, foams and composites. The role is highly hands‑on and creative: you will manufacture new polymer formulations, refine processing routes, and carry out mechanical, fracture, thermal and
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at the Division of Chemical Physics is at the forefront of synchrotron-based operando investigations of defined model catalyst surfaces for energy conversion, both in thermal and electro catalysis. The operando
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on simulating nanoalloy structures to create a database for materials characterization. The main tasks include running molecular dynamics and Monte Carlo simulations to model nanoalloys under various
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developments or matters resulting from work activities. Knowledgeable to provide novel solutions to electrochemical issues from multiple areas of materials research including TM-oxides, TM-phosphates, composite
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. The project involves numerical modeling to investigate the physico-chemical processing of radioactive iodine emissions as they disperse in the atmosphere. Understanding these processes, and especially
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-based operando investigations of defined model catalyst surfaces for energy conversion, both in thermal and electro catalysis. The operando synchrotron studies are carried out all over Europe (Petra III