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use digital twin environments and validation tests to ensure correctness and reproducibility of deployments Integrate research outcomes into proof-of-concept demonstrators and perform performance
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, and energy-intensive production processes make them less sustainable for stationary use. In this role, you will contribute to the synthesis of high-performance cathode materials, binders for zinc-ion
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of deployments Integrate research outcomes into proof-of-concept demonstrators and perform performance assessments in representative environments Collaborate with team members and external researchers from
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varied, ranging from theory and computer simulations to experimental investigations. The theoretical subatomic physics group performs research on nuclear, elementary particle, and astroparticle physics by
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amplifier performance. By combining advanced device measurements, empirical modeling, and power amplifier design, this project will generate new insights into the material, process, and design factors
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, or equivalent solvers to simulate skull fracture mechanics during impact scenarios Perform parametric studies for population-level analysis Develop protocols for various fall scenarios and demographic parameters
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battery performance. The project combines expertise in materials science, electrochemistry, and physics, and offers a collaborative environment with access to well-equipped labs and technical support. About
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us The Division of Subatomic, High-Energy and Plasma Physics performs research on theoretical and experimental subatomic physics, mathematical and high-energy physics, plasma and fusion physics, as
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Optimal Control Theory Strong programming skills in C++/Python/MATLAB Familiarity with parallelization and high performance computing (CPU and GPU friendly code) Experience with Machine Learning, generative
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on radionuclide sorption onto cement phases Performing spectroscopic studies with XPS to determine metal oxidation states Participating in DFT calculations on metal sorption onto tobermorite The work will be