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] * Background of the recruitment and description of the project Umeda Lab is a new laboratory starting from August 2026. The lab focuses on the further development of high-speed atomic force microscopy (HS-AFM
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of the project NanoMuscles funded by the FNRS. The NanoChemistry & Molecular System group employs single-molecule techniques, AFM and optical tweezers, to study the operation of small synthetic molecules and
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techniques. The successful candidate will leverage Atomic Force Microscopy (AFM) and/or Optical Tweezers to probe protein mechanics at the single-molecule level, contributing to fundamental discoveries in
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? Horizon Europe – COFUND Marie Curie Grant Agreement Number 101261856 Is the Job related to staff position within a Research Infrastructure? No Offer Description BioMedical AFM technology is revolutionizing
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for high-aspect-ratio vertical interconnects characterise the results (SEM, AFM, XCT, optical microscopy) for geometric accuracy, durability and interfacial strength -validate scalability and
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interconnects characterise the results (SEM, AFM, XCT, optical microscopy) for geometric accuracy, durability and interfacial strength -validate scalability and sustainability: less material waste, better energy
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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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as well as MSc and PhD programmes. Further information may be found at: http://www.kcl.ac.uk/physics About the role: We are seeking a highly motivated and experienced researcher, holding a PhD in
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fabricated devices using techniques such as SEM, AFM and other metrology tools Collaborate with multidisciplinary teams on device development, fabrication workflows, and process integration Contribute
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electronic transport directly with structural and nanoscale characterization, including TEM, AFM and nanoARPES. The project combines hands-on device fabrication with advanced measurements and close