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PostDoc - Advanced STEM imaging and spectroscopy in Nanoscience and Nanotechnology (RIANA Project)- ICN2 & ALBA Synchrotron Research area or group: Advanced Electron Nanoscopy Description of Group/Project
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optogenetics and calcium imaging in ex vivo slices of the mouse anterolateral frontal cortex. Share this opening! Use the following URL: https://jobs.icfo.eu/?detail=970
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epigenetic events, such as enhancer activation and 3D chromatin interactions, that can influence the downstream effects related to the observed changes. Further information can be found at: https://www.crg.eu
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facilities, which currently comprise a room temperature AFM (MFP-3D) and a cryogenic AFM (Attocube). The lab also has a nanoindenter to characterize nanomechanical properties, and familiarity with
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microscope that allows one to perform single-atom and single-site resolved fluorescence images of strontium Hubbard systems for the first time. Furthermore, we have very recently been able to push our setup
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mutations disrupt a lead enhancer controlling a developmental enhancer cluster (Dev Cell, 2022). Human pancreatic islet 3D chromatin architecture provides insights into the genetics of type 2 diabetes (Nat
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areas:Miniaturized optically pumped atomic magnetometers (OPMs) for ultra-low-field nuclear magnetic resonance (ZULF NMR) and magnetic resonance imaging (MRI); NMR MRI with a focus on MRI of microfluidic
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for information and communication technologies, in particular displays, image sensors and secure communications. The main drive of the group is to carry out applied research which bridges academia and industry, by
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to develop highly performant, CMOS compatible, thermal sensor and microbolometer technology. The project aims to revolutionize thermal imaging technologies for automotive, safety and surveillance by developing
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quantum dot films engineered at the atomic as well as at the supra-nanocrystalline level to address applications related to safety and security, remote sensing, environmental monitoring, thermal imaging etc