Sort by
Refine Your Search
-
of different P-based materials via the sol-gel and solvothermal methods with control over morphology, particle size, and composition. Material characterization using XRD, SEM, EDS, ICP, BET, TGA, FTIR, RAMAN
-
, physical and chemical conversion strategies and engineering processes (b) understanding and controlling their underlying specific functionalities and the structure-properties relationship acting over
-
formulations. Conduct laboratory and greenhouse experiments to assess fertilizer performance under controlled and relevant conditions. Evaluate plant growth responses, biomass production, root development
-
-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
-
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
-
experimental work in chemical or process engineering (desirable) Knowledge of process optimization, parameter estimation, or control methods is a plus Programming experience in MATLAB and/or Python Familiarity
-
materials thereof using biotechnological, physical and chemical conversion strategies and engineering processes (b) understanding and controlling their underlying specific functionalities and the structure
-
) 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
-
SUSMAT - Post-Doctoral Fellow Positions in Development of Multifunctional Hydrogels for Agricultural
) 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
-
process integration and mass transfer optimization under corrosive conditions. Investigating material stability, impurity control, and competing-species effects in highly acidic and complex matrices