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of communication, sensing, control, and decision-making mechanisms to enable efficient, reliable, and intelligent robotic operations in dynamic and uncertain environments. Depending on the candidate’s
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, including unmanned aerial vehicles (UAVs). The research will explore the joint design of communication, sensing, control, and decision-making mechanisms to enable efficient, reliable, and intelligent robotic
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specific focus on water–soil interfaces, water retention, fertilizer/nutrient-controlled release, and soil hydration using multi-source biomass feedstocks. Job duties The successful candidate is expected
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-controlled release, and soil hydration using multi-source biomass feedstocks. Job duties The successful candidate is expected to: Design, formulate, and characterize biobased materials such as hydrogels
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carriers incorporating biochar for controlled nutrient release. Perform comprehensive physicochemical characterization using FTIR, SEM/TEM/AFM, BET surface area and porosity analysis, XRD, TGA/DSC, and zeta
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control, and competing-species effects in highly acidic and complex matrices. Comprehensive use of characterization and quantification tools, including XRD, FTIR, and ICP for phase identification and major
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SUSMAT - Post-Doctoral Fellow Positions in Development of Multifunctional Hydrogels for Agricultural
, physical and chemical conversion strategies and engineering processes (b) understanding and controlling their underlying specific functionalities and the structure-properties relationship acting over
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) understanding and controlling their underlying specific functionalities and the structure-properties relationship acting over multiple length scales from the molecular, nano to the macro level and their cross
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process modeling, simulation, and systems analysis Experience with experimental work in chemical or process engineering (desirable) Knowledge of process optimization, parameter estimation, or control
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controlling their underlying specific functionalities and the structure-properties relationship acting over multiple length scales from the molecular, nano to the macro level and their cross-interactions and (c