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Field
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of these positions will be electrochemical modeling of high-energy cells. The successful applicant will develop detailed physics- and chemistry-based transient mathematical models for cell charge and discharge, based
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individually. 2. In principle, all examination matters must be notified by e-mail or mobile phone, so the correct contact information must be entered. 3. When applying, the applicant is responsible for any
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. The project titles are: Fast-Charging, Wide-Temperature, Low-Cost, Durable Batteries Enabled by Cobalt- and Nickel-Free Cathodes and Cell Engineering. Fast-Charge, High-Energy-Density, Solid-State Battery. ARPA
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Position Overview School / Campus / College: College of Arts and Sciences Organization: Biology Title: Postdoctoral Position in Cell Biophysics in the MATSU Lab Position Details Position Description
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focus on neutron spectroscopy as main analysis technique, supported by complementary experimental techniques or theoretical simulations Hands-on participation in experiments at large scale facilities as
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characterisation systems, vacuum beamlines, high-pressure gas cells, and optical diagnostics. Our numerical simulations rely on our own open-source code, Luna.jl (https://github.com/LupoLab/Luna.jl ). More details
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neuroscience – questions such as, "How do neural stem cells choose between self-renewal and differentiation?" "What mechanisms generate the large diversity of neurons within the brain?" "How do these neurons
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samples for single-cell seq or next-gene sequencing • Follow QA/QC protocols and design SOPs that comply with Standard Methods • Use LIMS for documentation of QA/QC/Standards/Research/Other samples • Direct
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University of North Carolina at Chapel Hill | Chapel Hill, North Carolina | United States | 3 days ago
service. Position Summary A postdoctoral research position is available immediately to investigate the utility of in vitro models (e.g., hepatic organoid 3D cell models, sandwich-cultured hepatocytes, HuH-7
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/electrolyte interfacial structure-property relationships to gain deeper insights into material behavior. Develop innovative approaches to minimize cell polarization by precisely controlling electrolyte