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methods from physics, chemistry, and mathematical modelling. The long-term goal is to derive design principles for constructing smart, adaptive microsystems, potentially useful for targeted drug delivery
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principles for constructing smart, adaptive microsystems, potentially useful for targeted drug delivery, cargo transport, biosensing, microfluidic mixing, or self-healing materials. The successful candidate
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performance and other relevant materials properties. The research will take place in the Electronic Components, Technology and Materials section of the Microelectronics Department. Within the consortium, also
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technologies. The institute places particular emphasis on micro- and nanotechnologies, including nanostructures and nanoelectronics, microelectronics, microwave engineering, and microsystems. PhLAM is a Joint
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section of the Microelectronics Department. Within the consortium, also other academic, research and industrial partners are present with whom there can be opportunities to collaborate. Job requirements You
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. degree in Chemistry, Material Science, Microelectronics, or other relevant disciplines. The appointee shall have strong background in the field of organic optoelectronics and OLED technology. They should
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opportunities. Prepare and defend the Ph.D. thesis, which summarizes the results of the research. The Microwave Sensing, Signals and Systems (MS3) group is part of the Department of Microelectronics, within
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visits abroad. Examples of courses include: “Clinic, Diagnostic and Therapy of Peripheral and Central Hearing Disorders”, “Introduction to Biomaterials, Laser Spectroscopy and Microelectronics” and
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Electronics and Devices Institute of Automation Institute for Microsensors, -Actuators and -Systems Institute of Electrodynamics and Microelectronics Institute for Telecommunications and High-Frequency