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to optimize performances. The postdoc will carry out structural and morphological characterizations (X-ray diffraction, TOF-SIMS, AFM, and microscopy) of the selected superconducting materials. In the second
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optimize protocols for chemical synthesis and electrochemical functionalization of porphyrin macrocycles Synthesize porphyrin-based materials by electropolymerization Participate in the installation of a new
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performance and continued funding. Please note, this position is not eligible for visa sponsorship including H-1B or Green Card sponsorship. This position will provide scientific and technical support for Dr
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National Aeronautics and Space Administration (NASA) | Pasadena, California | United States | 20 days ago
. The results could support targeted high-resolution regional modeling studies, inform optimal locations for deploying field instruments such as IceNode, improve estimates and parameterizations of basal melt
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understood (drawing on the same causative logic as H. pylori and gastric ulcers). The device biofilm program has a clear translational and commercialization path. All projects in the lab are designed and
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, simulation, optimization, and advanced control. The position will play a key role in a major collaborative research effort focused on improving the energy and economic performance of advanced manufacturing
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GENESIS-related AI research, including the development and validation of fast models for integrated core-edge digital twins, control-oriented simulations, and fusion-plasma scenario optimization. Prepare
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with AMD MI300A GPU+CPU. 2. Perform benchmarking studies to enhance scalability and achieve high node-level efficiency, surpassing existing AMR frameworks. 3. Contribute to communication optimizations
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for predictive modeling, high-dimensional optimization, uncertainty quantification, forward and inverse design, including the development of Digital Twin components, under the supervision of Prof. Douglas H
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polymerization techniques; 2) development and optimization of protocols for the preparation of nanoparticles; 3) evaluation of the unique properties and functionalities of the developed biomaterials. This position