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Field
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with 3D organoid, assembloid, or microfluidic/organ-on-a-chip modeling. • Experience with whole-cell patch-clamp electrophysiology or multi-electrode arrays. • Familiarity with computational biology
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cancer progression, metastasis, organ development, and tumor-microenvironment interactions. Establish and maintain 2D and 3D cultures, including multicellular co-cultures, organoids, and matrix-embedded
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and machine learning with density functional theory, or other similarly relevant computational methods, to advance understanding of materials design predictions for 2D and 3D systems with electronic and
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: Familiarity with principles of 3D Science. Experience as a secondary science teacher. Experience with qualitative educational research. Excellent verbal and written skills. Presentation skills. Analytical
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, and transcytosis in the context of malaria immunology. Develop and optimize 2D and 3D endothelial-based assays to evaluate molecular modifiers of IgG handling and to investigate mechanisms
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studies focus on the interaction between tumor-intrinsic signaling and the immune microenvironment during adenoma-to-carcinoma progression. A major translational component of the program evaluates
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protein expression and purification, biochemical screening assay development, computational structural modeling, cell-based antiviral validation studies, and exposure to preclinical small-animal research
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, therapeutic resistance, and tumor–immune interactions. This position offers opportunities to work with cutting-edge cancer models, 3D culture systems, and translational human samples. This position offers
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located at 1100 South Marietta Parkway, Marietta, GA 30060. Department Information DEPARTMENT SPECIFIC TASKS AND RESPONSIBILITIES: 1. Design and develop full-stack software solutions for 3D modeling and
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on WSU’s high-performance computing system. The work directly supports federal, state, tribal, and local air quality managers in the Pacific Northwest and contributes to protecting public health across