16 coding-"https:"-"Prof"-"FEMTO-ST" "https:" "https:" "https:" "https:" "https:" "https:" "P" "Dr" positions at ICN2
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well as regional efforts such as the Quantum Catalan Academy (https://cataloniaquantum.eu/ ) and the Master in Quantum Science and Technology (https://quantummasterbarcelona.eu/ ). These initiatives contribute to a
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at the 'Group of Smart Nanoengineered Materials, Nanomechanics and Nanomagnetism -Gnm3' (https://jsort-icrea.uab.cat/) of the Universitat Autònoma de Barcelona (UAB). The position is in the framework
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(Led by Dr Andrés Henao) and the Inorganic Nanoparticles Group at ICN2 (Led by Dr. Neus G. Bastús). focuses on the rational design and synthesis of advanced inorganic nanomaterials through wet-chemistry
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Research Engineer - Tools developer for LSQUANT platform (Theoretical and Computational Nanoscience)
the group's ongoing code development. Address and resolve security issues between the front end and back end. Create a user database for the Bespokematerial project. Develop a tool that allows users to select a
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neuromorphic, stochastic, reservoir and probabilistic computing, and on the physical realization of probabilistic p-bits, laying the groundwork for future quantum-inspired computing concepts. Frontier research
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-corruption guide, supporting the curation of the ICN2 Ethics Code, coordinating and managing the signing of documentation, collaborating in obtaining data and preparing reports and providing the Generalitat de
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Process in the Interviews phase Project Title: Data-Driven Optimization of PtAg Hollow Nanocrystals Synthesis - Master's degree internship Group:Inorganic Nanoparticles Group, ICN2 Supervisor: Dr
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of strategic initiatives that embed artificial intelligence into ICN2's core activities. The platform promotes good coding practices and open‑source software principles, aiming to become a central and
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areas of nanoscience and nanotechnology. Job title: Doctoral Student Research area or group: Inorganic Nanoparticles Description of Group/Project: The Inorganic Nanoparticles Group at ICN2, led by Dr
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properties of high-entropy alloy (HEA) nanoparticles. The SIESTA code will be used to compute key descriptors such as formation energies, mixing enthalpies, adsorption energies, d-band centers, and work