Sort by
Refine Your Search
-
computational chemistry techniques and data-driven approaches to optimize the properties of novel polymer-based materials. The ideal candidate should have a strong background in artificial intelligence and
-
an innovative project focused on the design, production, and characterization of recombinant proteins. Under the supervision of the project leader, your responsibilities will include: Establishing and optimizing
-
to develop predictive models for polymer-based materials. This project aims to leverage computational chemistry techniques and data-driven approaches to optimize the properties of novel polymer-based materials
-
of morphing drone prototypes by combining structural optimization, lightweight design, and experimental testing. The research assistant will: Participate in CAD/CAE modeling and structural optimization of UAV
-
. The postdoctoral researcher will investigate the valorization of each material separately through physicochemical and biological approaches, with the objective of identifying optimal pathways for resource recovery
-
to: Design, formulate, and characterize biobased materials such as hydrogels, polymers, and composites for agricultural applications. Develop and optimize protocols for the encapsulation and controlled release
-
to develop innovative and sustainable fertilizer technologies. Key Responsibilities Develop and optimize bio-activated organo-mineral fertilizer formulations integrating beneficial microorganisms with mineral
-
experimentation. By integrating advanced robotics, intelligent workflows, and multidisciplinary expertise, HTMR enables researchers to rapidly design, synthesize, and optimize materials and processes across fields
-
multidisciplinary expertise, HTMR enables researchers to rapidly design, synthesize, and optimize materials and processes across fields such as energy, metallurgy, smart materials, chemical engineering, and
-
Responsibilities Develop and formulate new simple and complex fertilizer products Contribute to the optimization of fertilizer formulations to improve nutrient stability, homogeneity, physical quality, and agronomic