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Employer
- Institute of Photonic Sciences
- Autonomous University of Madrid (Universidad Autónoma de Madrid)
- European Magnetism Association EMA
- Fundació per a la Universitat Oberta de Catalunya
- ICN2
- Institute of Chemical Research of Catalonia ICIQ
- Maimonides Biomedical Research Institute of Cordoba - IMIBIC
- Universidad de Sevilla
- Universitat Politècnica de Catalunya (UPC)- BarcelonaTECH
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Field
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magnetic fields. Responsibilities Synthesis and processing of electroactive materials. Electrochemical characterization of materials. Electrocatalytic characteriszation uder magnetic fields. Writing reports
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are seeking to recruit a junior researcher for the UOC-eHealth Center - Research Center for Human and Planetary Health, in the NeuroADaS Lab research group at the UOC. The purpose of the project From Magnetic
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techniques, cryogenic systems and magnetic, electrical, thermal and structural measurements. Strong skills in scientific data analysis and programming, together with experience in superconductivity, magnetism
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or equivalent Skills/Qualifications Desired Experience in magnetic confinement systems Experience in computational plasma physics, including simulations of plasma equilibrium and / or transport phenomena Spanish
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-EIC-2025-PATHFINDEROPEN (EIC Pathfinder 2025). AMSwitch aims to pioneer a new class of logic switches based on altermagnetic materials, an emergent magnetic state characterized by zero net magnetization
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of hybrid memory concepts such as light-controlled multiferroics and voltage-driven magnetic memristors. A central objective is to enhance energy efficiency during write and read operations, while moving
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and biosensors using microscopic techniques. Measure properties with force spectroscopy. Apply magnetic force microscopy (MFM). Use Kelvin probe force microscopy (KPFM). Execute AFM assays in liquid
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-technical activities, whose main role will be the functionalisation, optimisation and characterisation of magnetic nanoparticles for the development of the research project “Integrated approach
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of strongly-correlated materials, quantum magnets, and might hold the key of high-temperature superconductivity. Investigating its low-temperature many-body phases is extremely challenging using classical
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quantum simulator. The goal is to construct a new experimental tool based on a graphene superlattice to not only measuring macroscopic observables, such as electrical resistivity and magnetization, but also