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Field
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Magnetics; Micro and Nano Structures; Sustainable Energy Systems, Power Electronics and Drives; Systems and Controls. To learn more about the Department of Electrical and Computer Engineering at
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following neuroimaging methods and modalities: functional connectivity, representational similarity analysis, decoding techniques; structural connectivity, magnetic resonance spectroscopy; quantitative MRI
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analysis, decoding techniques; structural connectivity, magnetic resonance spectroscopy; quantitative MRI Ability to work independently as well as collaboratively in an interdisciplinary research environment
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-Resolved Non-Uniform Sampling (TR-NUS) Nuclear Magnetic Resonance (NMR) and Time-Resolved Laplace (TR-L) NMR[1] using a low-field spectrometer. The main goal of the project is to develop and adapt
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under Section 5 below. 2.3 — The compulsory application minute, to be completely filled out, dated, and signed, is available at https://www.ua.pt/file/78384 . 2.4 — Submission of the application: 2.4.1
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correlated electron systems, quantum magnetism, and emergent non-equilibrium phases of matter, quantum information and related fields are encouraged to apply. The successful applicant will join the research
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neurostimulatory techniques (ultrasound neurostimulation and/or transcranial magnetic stimulation) to test the causal role of targeted circuits in cognitive processes. You will design and conduct research into human
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of large and multidimensional datasets High Performance Computing (HPC) Low temperature physics High magnetic field physics Synchrotron and neutron facilities X-ray scattering Compensation and Additional
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force microscopy, magnetic and dielectric characterization, oxide thin-film growth, and close collaboration with leading theoretical groups. We pursue fundamental experimental research while maintaining a
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Plan / Goals to be achieved: The grantee will carry out a set of activities that will support the implementation of the project. These activities include acquiring and analysing magnetic resonance