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Field
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develop your research. You will have access to well-equipped facilities, including: The hydraulic circuit . You will work in an open and collaborative environment where interdisciplinary teamwork, curiosity
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, genetically encoded biosensors and electrophysiology, providing the opportunity to investigate synaptic function from cellular and molecular mechanisms to neuronal circuits. The position is particularly suited
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We are working on creating a new type of Radio-Frequency Integrated Circuit technology based on optically induced plasmas in silicon to create photo-conductive switches. This combines low-cost
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particular emphasis on printed circuit boards (PCBs) or life consumption monitoring and DPPs. The roles will involve designing product architectures that enable efficient disassembly, testing, and reuse
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) to investigate the properties of human circuits using surgical brain tissue samples. The selected candidate will apply either advanced imaging or patch-clamp electrophysiology techniques directly to surgically
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improvements are required at multiple levels, including system architecture, photonic integrated circuits (PICs), electronic integrated circuits (EICs), and advanced packaging technologies. The co-design and
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links. To fully realize the potential of integrated optical systems, continuous improvements are required at multiple levels, including system architecture, photonic integrated circuits (PICs), electronic
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in addressing how gravity and quantum mechanics can be combined. In the project, you will design, fabricate, and measure nanomechanical resonators coupled to superconducting quantum circuits with
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test circuits, interfaces or PCBs. Experience characterising nonlinear, threshold, pulsed or transient behaviour in electronic or microfabricated devices. Optical microscopy, profilometry or related
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-sample guarantees. Quantum statistical modeling: use of quantum relative entropy, Fisher information, and variational quantum circuits for practical implementations. Causal and information-theoretic