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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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, https://www.phenogenomics.cz/ ), a large research infrastructure at the Institute of Molecular Genetics of the Czech Academy of Sciences and an active member of the IMPC and INFRAFRONTIER research
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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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expected to demonstrate documented laboratory experience, including work with both 2D and 3D cell cultures, and possess an advanced command of English, both written and spoken. REQUIREMENTS: The candidate
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Inria, the French national research institute for the digital sciences | Rennes, Bretagne | France | 2 months ago
ocean modelling within the ERC Stuod (Stochastic transport in ocean dynamics). Odyssey (for Ocean DYnamicS obSErvation analYsis) is a recently created team involving researchers from Inria (Rennes, France
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Inria, the French national research institute for the digital sciences | Rennes, Bretagne | France | 2 months ago
position on ocean modelling within the ERC Stuod (Stochastic transport in ocean dynamics). Odyssey (for Ocean DYnamicS obSErvation analYsis) is a recently created team involving researchers from Inria
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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
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integration, actuator integration, enclosures, structural supports and precision mechanisms. Create and maintain 3D CAD models, assemblies, 2D manufacturing drawings, bills of materials and technical
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of resistance to targeting therapies (antibodies, and antibody-drug conjugates) integrating clinical data, 3D cancer cell models, high-throughput approaches and co-culture systems. The successful candidate will
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photolithography, 3D printing and multiphoton lithography, together with innovative biomaterials. These models will be used to investigate, through advanced microscopy and quantitative image analysis, how