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Field
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will design and validate a cost-effective, synchronised multi-node sensing system for simultaneous time-domain measurements of voltages, currents, electric fields and magnetic fields, supported by
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. Requirements: -A master’s degree (or equivalent) in electrical engineering, electronics, materials science, nanotechnology, microelectronics, engineering physics or a related field -Experience of experimental
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engineering, electronics, materials science, nanotechnology, microelectronics, engineering physics or a related field -Experience of experimental laboratory work in micro- or nanofabrication, materials
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form of energy–e.g. electrical, magnetic, acoustic, or chemical–into mechanical motion. These swimmers are expanding the frontiers of micro-engineering and can be used in tasks such as chemical analysis
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PhD position in Experimental Physics with focus on photonics and materials science (applied aspects)
information processing and investigate how structured ultrashort light pulses can control optical and magnetic properties on femtosecond timescales. The research will focus on developing sub-10 fs protocols
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Department Telephone: +49 (0)351 2607 3215 Fraunhofer Institute for Photonic Microsystems IPMS www.ipms.fraunhofer.de Requisition Number: 85608
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, power electronics, or a related technical field; • a doctoral dissertation related to electromagnetic components, power electronics, magnetic circuits, or a related area is an advantage; • experience with
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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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Applicants should hold a degree-level qualification in a relevant discipline such as: Electrical or Electronic Engineering; RF or Microwave Engineering; Applied Physics; Microsystems or Microengineering
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, high vibration levels, and complex magnetic field behavior. This research project aims to propose design optimisations to enhance the performance of BDFMs and position BDFMs as a competitive alternative