19 evolution "https:" "https:" "https:" "https:" "https:" "https:" "ISCTE IUL" positions at Istituto Italiano di Tecnologia in Italy
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people. By embracing diversity, we believe science can achieve its fullest potential. THE ROLE During your internship you will work on a projectin the Functional neuroimaging group (https://fnimg.iit.it/it
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, we believe science can achieve its fullest potential. THE ROLE During your internship you will work on a projectin the Electron Spectroscopy and Nanoscopy (https://el-spy.iit.it/ ) group, coordinated
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, we believe science can achieve its fullest potential. THE ROLE During your internship you will work on a projectin the Plasmon Nanotechnologies (https://plasna.iit.it/ ) group coordinated by Francesco
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, we believe science can achieve its fullest potential. THE ROLE During your internship you will work on a projectin the Event-Driven Perception for Robotics(https://edpr.iit.it/ ) group, coordinated by
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people. By embracing diversity, we believe science can achieve its fullest potential. THE ROLE During your internship you will work on a projectin the Event-Driven Perception for Robotics(https
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collaborate to create novel solutions to key problems in robotics. The lab focuses on research and development of human-centered medical robotic technologies, including technologies for microsurgery, disease
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collaborate to create novel solutions to key problems in robotics. The lab focuses on research and development of human-centered medical robotic technologies, including technologies for microsurgery, disease
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starting grant. The research focuses on the development of optical microscopy systems for measuring molecular diffusion and biomechanical properties in biological systems. This includes designing custom
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, following the award of an ERC starting grant. The research focuses on the development of optical microscopy systems for measuring molecular diffusion and biomechanical properties in biological systems
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, nanofabrication, and optical characterization of nanostructured photonic systems and materials, with the goal of advancing both the fundamental understanding of nanoscale optical processes and the development