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. Our lab works in the areas of ultrafast science, nanoscale thermal transport, and microelectronics, for applications in energy-efficient computing, thermal management, and energy conversion. We seek
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. There is growing interest in microsystems that can replicate the local physiology of tumors, providing a platform to identify and optimize therapeutic candidates. Our group specializes in developing
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types showing resistance to standard treatments, posing significant challenges for healthcare and research. There is growing interest in microsystems that can replicate the local physiology of tumors
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their applications. Experience in handling cells (mammalian cells, microorganisms) in microsystems. Experience in performing original research and publishing high-quality research papers. Experience in
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devices and microsensors, heterogeneous integration/3D packaging, and other broad areas of semiconductor/microelectronics. Responsibilities: Nanofabrication in the cleanroom and characterization/measurement
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platform, in collaboration with researchers of the Spanish National Centre of Microelectronics (IMB-CNM, CSIC), which will be applied to detection and monitoring of respiratory infections. Work will include
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of radiofrequency (MHz–GHz) nanoscale phenomena in systems relevant to microelectronics and quantum information science. Opportunities also exist for cross-platform studies integrating ultrafast TEM with ultrafast x
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for Microelectronics” —a physics-informed AI framework that links composition, structure, and operating conditions to defect evolution and functional performance. The successful candidates will lead experimental
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23 Jan 2026 Job Information Organisation/Company Nalecz Institute of Biocybernetics and Biomedical Engineering Department Laboratory of Biosensors and Analytical Microsystems Research Field
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Princeton Materials Institute at Princeton University invites applications for postdoctoral positions. Our lab works in the areas of ultrafast science, nanoscale thermal transport, and microelectronics, for