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across HHMI. The Foundational Microscopy Image Analysis (MIA) project sits at the heart of AI@HHMI. Our ambition is big: to create one of the world’s most comprehensive, multimodal 3D/4D microscopy
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aims to use state of the art 3D MINFLUX tracking established in the Jakobs group to follow single labeled sparse cargo proteins in living cells and study their transport to and import through the TOM
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Skip to Main Content Press Control+M to start dragging object ptnbsid=qgixaBYmhalpobOdQtSJ82YK1lk%3d Back Accessibility Enable Screen Reader Mode Keyboard Shortcuts Accessibility Help Job
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colleagues to identify emerging risks and apply creative but practical safety solutions in diverse environments such as 3D printing, robotics, drones, autonomous systems, field research, and specialized shops
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Responsibilities EE/CSE Makerspace: Assist students with their design projects (PCB design and milling, 3D modeling and printing, soldering, CNC mills, laser cutting). EE Labs: Trains students in effective use
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activities and student project work associated with digital fabrication, including 3D printing, laser cutting, 3D scanning, and electronics. You will work as part of a collaborative technical team, helping
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microfluidic chips (CAD Design). • Master microfabrication techniques: SLA 3D printing, PDMS molding, and cleanroom work. • Iterate on designs to optimize fluid circulation, mixing, and analyte incubation. B
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, workstation capacity for geophysical and remote sensing data interpretation and GIS; 2D multi-scale petrographical imaging and 3D-4D X-ray CT imaging facilities and a wide range of world leading experimental
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researcher will work at the interface of root developmental biology, 3D modeling, network and graph theory, and data analysis, in close interaction with biologists, modelers, and computer scientists (INRAE
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of the following: 3D Printing, Computer-Aided Design, Organic Modeling, Device Development, Software Development, Immersive Technologies (VR, AR), Device Manufacturing. An advanced degree may