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highly porous ZnOx and CuOy electrodes, as well as ZnOx/CuOy hybrid materials, respectively. This will allow optimizing their structural and electronic properties for enhanced catalytic performance. Photo
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morphological, structural, thermal, mechanical and surface properties (e.g., SEM, DSC, contact angle, FTIR and XRD), as well as in the evaluation of their response to ionizing radiation (X-rays). d) Preferential
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during the grant is the design and implementation of a SQL-to-eBPF compiler that allows querying and correlating information about the state of the operating system. The work also aims at the optimization
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– Femtosecond Laser-Written NV Center Defects and Entanglement: This project aims to understand and optimize the femtosecond laser writing process of nitrogen-vacancy (NV) center defects in diamond for scalable
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structures.; • Design and optimize, through full-wave electromagnetic simulations, a transparent unit cell operating in the FR3 frequency band.; • Investigate the integration of memristive switching devices
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for this research fellowship type (whichever occurs first), scheduled to start in 2026-08. . WORK PLAN: Development and optimization of biocompatible and biodegradable electrospinning membranes reinforced with
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Instituto de Investigação e Inovação em Saúde da Universidade do Porto (i3S) | Portugal | 3 months ago
that enable personalized obesity treatment, optimize surgical outcomes, and reveal new therapeutic targets. The cohort size for this project is 60 operated patients. The main objective of the work to be carried
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anisotropy for rotating magnetocaloric effect. The aim is to optimize the magnetocrystalline anisotropy on magnetocaloric single crystal-based particles composites to maximize the rotating magnetocaloric