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. Conduct microstructural, chemical, mechanical, and electromechanical characterization, including electrical and reliability evaluation under bending, stretching, and cyclic deformation. Collaborate with
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additive manufactured (e.g. DIW 3D-printed) structures. (5) Conduct research in microstructure engineering for thermally conductive microwave absorber (6) Collaborate with collaborators to deliver
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, and interlayer/interface designs for reliable soft interconnection and device integration. Conduct microstructural, chemical, mechanical, and electromechanical characterization, including electrical and
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microstructural sameness. By comparing reference and generic formulations, the research aims to understand how these structural differences impact critical factors like drug dissolution, dose uniformity, and abuse
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. For all posts, applicants should have strong background in materials science and engineering, such as laser processing and additive manufacturing, materials’ properties testing, microstructure
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project deliverables which involves preparing 2D materials and porous materials for nanochannel fabrication. Comprehensive analysis of materials including density measurement, microstructure analysis and
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, and optimize multimaterial LPBF processes, integrating in-situ monitoring, process parameters, material combinations, and resulting microstructural and structural outcomes. Design and optimize
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quantitative textural or microstructural analysis of igneous rocks. Substantial experience in EBSD sample preparation, data acquisition, processing and interpretation is essential. The role may involve
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understand how materials perform in extreme environments. Characterize materials using optical and electron microscopy to examine microstructure and material properties. Contribute to ongoing research projects
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packaging and device integration. Conduct microstructural, chemical, and mechanical characterization using appropriate analytical techniques. Collaborate with interdisciplinary researchers to integrate