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supplies Purchase equipment Purchase printmaking supplies for West Crib Organization of supplies Maintain and repair equipment and classroom supplies. Etching, lithography, screen, and Vandercook presses Hot
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: Design, fabricate, and test micro- and nano-structures at MiNaLab using lithography to create customized platforms (e.g. patterns, (confined) channels, mazes) for studying cancer cell dynamic, with a
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atomic force microscopy - Magneto-optical microscopy - X-ray spectroscopy - Optical lithography - PIC measurements - Data analysis and modeling - Writing of scientific reports and papers The project will
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• Participation in micro- and nanofabrication processes using CRHEA's state-of-the-art cleanroom facilities (advanced lithography and etching techniques) • Optical and structural characterization of fabricated
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the exfoliation and stacking of 2D materials into van der Waals heterostructures, the nanofabrication of devices (thin film deposition, electron-beam lithography, etching), and magnetotransport measurements (under
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Investigação da Fundação para a Ciência e a Tecnologia, I.P. MONTLY RENUMERATION The value, 1 309,64 €, of the grant is defined by the Fundação para a Ciencia e Tecnologia, in https://www.fct.pt/wp-content
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Entitlement: 33 days annual leave, plus 9 buildings closed days for all full time staff. Use our total rewards calculator: https://www.hw.ac.uk/about/work/total-rewards-calculator.htm to see the value
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the nanofabrication of microdevices (using techniques such as thin film deposition, electron-beam lithography and etching), and their electrical transport characterization. A major objective is to explore
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on artificial 2D heterostructures. It will also involve the nanofabrication of microdevices (using techniques such as thin film deposition, electron-beam lithography and etching), and their electrical
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experiments to understand and improve tool performance, and – most importantly – by summarizing findings in white papers and application notes. A full job description can be found here: https://mitnano.mit.edu