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nanoelectronics, microelectronics, semiconductor devices and VLSI technology. You should hold or be nearing completion of a PhD and have strong ability in either electrical and electronic engineering, physics
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. Background in semiconductor sensor physics or microelectronics. Applicants cannot have received their Ph.D. more than five years prior to the date of application and must complete all degree requirements
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Inria, the French national research institute for the digital sciences | Paris 15, le de France | France | 4 days ago
(voltage, current, reference circuits, amplifiers, oscillators, noise, power, design tradeoffs, electricity & magnetism, microelectronic design, etc.) Some understanding of computing systems, such as
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Expected skills: • Microelectronic technologies (lithography, etching, material deposition, etc.) • Deposition of sensitive materials (superconductors, metal-insulator transitions, oxides, etc.) • Experience
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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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versatile structures with numerous applications in microelectronics, MEMS (Microelectromechanical Systems), and nanotechnology. These membranes are produced by selectively etching the top silicon layer of SOI
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kinetics) for bone and gum regeneration. The main activities of the candidate will consist in (i) designing a microelectronic device adapted to the needs of the project, based on an analysis platform
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- Strong experience in electrical and thermal measurement set-up; - microelectronic technologies (lithography, etching, materials deposition etc.); - manipulations and measurement in temperature regulated
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scientists, roboticists. The project will focus on developing an integrated autonomous lab system for strucutre-property characterization of novel materials heterostructures for quantum and microelectronics
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University invites applications for postdoctoral positions. Our lab works in the areas of ultrafast science, nanoscale thermal transport, and microelectronics, for applications in energy-efficient computing