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Field
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resistance and voids; maintain cleanroom/tool best practices. Characterize materials and interfaces using optical/profilometry, SEM/TEM, surface chemistry, and electrical IV; translate data into process
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corrosion, SCC, HE, and allied fields and microstructural characterization techniques such as SEM, TEM, EBSD, nanoindentation. Demonstrated expertise in high level research through a good scientific
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corrosion, SCC, HE, and allied fields and microstructural characterization techniques such as SEM, TEM, EBSD, nanoindentation. Demonstrated expertise in high level research through a good scientific
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techniques such as XRD, SEM, optical spectroscopy, I–V/C–V measurements, time-resolved techniques). Coordinate with system engineers for system-level integration and testing: optical coupling or charge readout
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engineering, green technologies, agricultural practices Proficiency in hands-on and characterization techniques such as TEM, EDX, SEM, FTIR, TGA, XRD, XPS, CHNS, ICP preferred Software skills relevant
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. This candidate will be expected to work in a team consisting of chemist, biologists and material scientists. Key Responsibilities: Conduct advanced characterization on porous particles including SEM/BET/etc
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characterization (SEM, EDS, TEM), and analytical methods (IC, ICP etc.) Applicants should have an excellent academic record and thrive in collaborative multidisciplinary research environment. The candidate should
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statistical techniques (e.g., multilevel modeling, SEM) or qualitative analysis (e.g., grounded theory, thematic analysis). Experience with grant writing or collaborative team science. Physical Requirements
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Network Analysis/ Structural Equation Modelling (SEM)/Multilevel Modelling (MLM) • Willingness to conduct fieldwork in rural or low-resource settings (required travel for up to 1 week 2-3 times a year
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testing, or microstructural characterisation (SEM, XRD, Raman, TGA, DSC, etc.) is highly advantageous. Good written and oral communication skills Ability to work independently while contributing