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work at ultimately low-noise and energy efficient amplifiers to interface photonic spectral sensors for measuring at the same time Temperature and Pressure using optical fibers. The two steps are nicely
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designers of their workplace rather than passive recipients of noise measurements. The research will follow an iterative research and development process characterized by deep, on-site engagement with NPICU
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., vibration, current, voltage), analog and digital signal processing circuits, microcontrollers or SoCs, and power management systems. The board will be optimized for industrial environments, addressing
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of defect physics and provide fresh insights into the hotly debated topic of 2D material defect passivation, leveraging advanced vibration spectroscopies, time-resolved optical spectroscopy and microscopy