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Field
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(Toronto) designed to drive forward the technology, applications and analysis of MEG data collected using novel quantum sensor arrays, optically-pumped magnetometers (OPMs), particularly in studies
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The department Multi Device Integration (MDI) focuses on the development of innovative MEMS sensors and actuators and their integration into application-oriented systems. The aim of application
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with the device. Various hardware constellations will be tested in order to analyse their influence on recognition quality, system latency and other parameters. What you bring to the table You are
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determined by rank and/or step at appointment. See the following table for the salary scale for this position: Salary Scale Represented and Salary Scale Non-Represented Application Window Open date: January
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and characterisation of photonic component subsystems and active optical instruments, such as detectors and lasers operating in the UV to FIR wavelength ranges, fibre-optic sensors, lidars, optical
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-sensors or quantum-computers. The prerequisite for this is a layer sequence of nitrogen-doped and intrinsic diamond layers with thicknesses in the nm range in order to introduce color centers
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3D integration and flexible electronics. These nano and microtechnologies form the foundation of our diverse fields of expertise, which include sensor technology, circuit design, system solutions with
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round Details Partial Differential Equations (PDEs) govern a vast array of real-world phenomena, from the stability of fusion reactors and the dynamics of oil drill strings to the behaviour of quantum
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the planned path. Current approaches lead to blockages or a queue of recovery behaviours. The goal is to derive a more robust solution. Therefore, you will also examinate the usage of additional sensor input
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applications, from coating and repair to additive manufacturing. Consequently, the topics for theses and project work are equally diverse. Currently, we have openings in programming, process optimization, sensor