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array for more complete characterization. 4. Feasibility Study: Explore advanced 3D sound reproduction techniques – Wave Field Synthesis (WFS), Higher-Order Ambisonics (HOA), and beamforming – as
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Anschutz campus. More information can be found on the Fantauzzo laboratory website (http://www.fantauzzolab.org). Key Responsibilities: · Read and incorporate findings from relevant scientific
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and 3D printers as well as monitoring safe use of equipment and materials. Students will also have the opportunity to assist with the creation of training documentation and videos for students and lab
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measurements, drawing revisions, simple fixture design, 3D-print preparation, and approved fabrication activities. Maintain project bills of materials, component and inventory lists, purchasing records, assembly
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, 3D printing, electronics tools, or similar) Knowledge of laboratory safety practices, OSHA standards, and compliance procedures Ability to troubleshoot equipment issues and implement effective
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-resolution 3D electron microscopy and expansion microscopy experiments to map the synaptic connections various model organisms. You will be responsible for tissue preparation, imaging, and data acquisition
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of London, University College London, University of Cambridge, University of Glasgow, Heriot-Watt University, and Imperial College London and aims to deliver transformative advancements in 3D nanoscale
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3D X-ray inspection techniques for industrial quality control. The project is foundational in nature, while at the same time exploring applications in collaboration with industry partners. The main
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relevant to the use of mechanical equipment. 3. Assist students and faculty with fabrication or 3D printing of components, test specimens and parts and ensure students follow safe practices and receive
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-invasive, and molecularly informative imaging of complex 3D samples such as organoids or tissue slices.In this Ph.D., the focus is set on developing a correlative imaging platform that combines fluorescence