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Date 07/22/2026 Requisition Number PRN45696B Job Title Post Doc Res Assoc Working Title Postdoctoral Researcher for SLA/DLP 3D Printing Career Progression Track A00 Track Level FLSA Code Administrative
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of research. We propose a novel approach: to design solid cellular materials (3D-printed), whose shape and mechanical properties evolve in a controlled manner in response to internal depressurisation; using
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during organoid growth. In the case of shell actuator this also requires a good engineering mindset as additional components will need to be designed and constructed, e.g., using 3D printing, and
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background in polymer chemistry and technology or 3D printing of smart materials. He/she will be registered within International Doctoral School coordinated by Laboratorio Europeo Di Spettroscopie Non Lineari
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photolithography, 3D printing and multiphoton lithography, together with innovative biomaterials. These models will be used to investigate, through advanced microscopy and quantitative image analysis, how
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modification of cellulose paper to create highly selective solid-phase extraction devices to enrich targeted contaminants (plant toxins and cyanobacterial toxins). Moreover, 3D-printing and rapid prototyping
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systems programming and real-time control (e.g., LabVIEW, Simulink Real-Time, ROS, C/C++, STM32); analog and digital PCB design; machine design and prototyping (e.g., CAD modelling, 3D printing, machining
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purposes, followed by an experimental demonstration for dry methane reforming. For volume heating, T.EN with TUD and TU/e will design integrated 3D-printed structures that combine heating functionality with
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the technology of 3D Additive Manufacturing in terms of spatial resolution, speed, scalability, and multi-material printing. The joint advances of Research Areas A and B will create a “technology push”. Building