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structure can be controlled to develop multifunctional surfaces for applications in photonics and related technologies. Research activities may include the development of nanostructured surfaces with tailored
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, liposomes and other vesicular systems. Proven experience in the design, fabrication and operation of microfluidic devices for the controlled production of soft materials. Strong background in polymersome self
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, simulate, and optimize integrated photonic circuits using micro-nano-structured materials for optical processing, routing, switching, and modulation functionalities. Develop and experimentally validate
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of advanced photonic integrated circuits (PICs) for optical switching and processing applications. Key Responsibilities: The selected candidate will be expected to: Design, simulate, and optimize integrated
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screening, and automated experimentation to accelerate materials discovery and optimization. The researcher will work across the groups of Prof. José Berrocal and Prof. Carla Casadevall at ICIQ and interact
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position is hereby announced for a Recognised Researcher (R2A) (Postdoctoral Researcher) to carry out the project "EMPOWER-HFpEF: Early Multimodal Program to Optimize Well-being, Functional Capacity and
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insights to help optimize device performance. Additionally, you will support collaborators by assisting with in-situ TEM measurements, facilitating cutting-edge research in sustainability and energy fields
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RNA Decay Group. Their work will address an exciting question in gene regulation: how cells dynamically control the stability of messenger RNAs by selective degradation during protein synthesis by
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valuable insights to help optimize device performance. Additionally, you will support collaborators by assisting with in-situ TEM measurements, facilitating cutting-edge research in sustainability and energy
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community. Main Tasks and responsibilities: Collaborate with theoretical and experimental partners to design and characterize optimized altermagnetic devices for information processing. Fabricate nanodevices