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and research programs can be found at: https://astronomy.utexas.edu . UT Austin is a major founding partner in the consortium for the next-generation 25-m Giant Magellan Telescope (GMT: http
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for screening the subsurface to select areas with H2 -potential source rocks; - acquire and process new MT and controlled-source electromagnetic (CSEM) field data in targeted areas; - perform integrated 3D
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and analysis of soil and vegetation characteristics Participate in drone surveys and process and analyze 3D data Collect and analyze dust samples (MWAC samplers) Maintain automated erosion and
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with inducible or optogenetic systems for spatiotemporal control of protein function and gene expression (e.g. Cre/loxP, CRISPR/Cas9, allosteric protein switches) – Experience with 3D tissue clearing
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the branchial cavity as an important region of the fish immune system. https://www.science.org/doi/10.1126/sciadv.adj0101 https://www.frontiersin.org/journals/immunology/articles/10.3389/fimmu.2021.769901/full
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, under the following conditions: Work Plan: The main objective of the proposed work is to implement and validate a computational methodology for the 3D geological modelling of complex mineralized systems
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fabrication/printing, photography/video, video games and 3D modeling, virtual/augmented reality, art+science, social and environmental practice, public arts, media archeology and theory, creative coding
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, and other genetic approaches to establish mechanistic causality. • Perform 2D and 3D cell-culture, spheroid, organoid, and tumor–immune co-culture experiments. • Perform T-cell functional studies
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and is associated with the management of the Institute's own 500 m² clean room facilities (https://www.igm.uni-stuttgart.de/en/research/clean_room_lab/ ). We are looking for an individual with
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safety, combining simulation, laboratory testing, and in-orbit validation. The candidate will create dynamical and photorealistic 3D models of the tether and spacecraft to support both engineering analysis