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semiconductors, including conjugated polymers. • Perform molecular dynamics simulations to investigate structural organization and molecular connectivity. • Carry out electronic-structure calculations
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integrated circuits (PICs) tailored to quantum applications. Quantum technologies, including neutral atom quantum computing and simulation, rely heavily on photonics for encoding, processing, and detecting
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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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Description Mission: Manage and execute tasks related to morphodynamic modeling and data analysis. Functions to be developed: Design and execute advanced numerical simulations with the Q2Dmorfo model. Manage
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line focused on Negative Triangularity Leadership role: control and data acquisition systems for the SMART tokamak Develop and apply numerical simulations, with emphasis on: o Plasma equilibrium o
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and implement experiential and data-informed learning methodologies, including simulations, venture creation frameworks, and multi-agent learning environments involving entrepreneurs, investors, and
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of tumour targeting. Specialist in Nanoparticles and Microfluidics Focus: Developing NPs for preferential macrophage capture and validation in microfluidic systems simulating liver sinusoids. Requirements
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(Evidence of this must be provided with the application). Where to apply Website https://www.idival.org/empleo/ Requirements Research FieldMedical sciences » Health sciencesEducation LevelPhD or equivalent
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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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performance through iterative design-test-feedback cycles. Participate in the design and simulation of photonic devices and integrated circuits using state-of-the-art modeling tools. Support the development