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department. The project aims to advance predictive modeling frameworks for structural architected materials that exhibit complex instability and bifurcation phenomena. The research will involve close
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-structured data. The ability to translate abstract mathematical concepts into intuitive frameworks and analogies, creating interpretable models and clearly explaining complex results to an interdisciplinary
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Foundation (www.biologicalpurpose.org/). Note: this is one of two postdoctoral positions associated with the project. CASP extends and develops innovative research structures and activities in support of
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the structure-guided enzymology and drug discovery of proteins, and protein complexes, implicated in human immune signaling pathways. For more information about projects and recent publications, please see the
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project on the bacterial phosphate uptake system. Protein biochemistry, enzymology, protein design, computational biology and structural biology will be key to these experiments. Translating some of these
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pathways in the complex tumor microenvironment with an intent to improve the therapeutic outcomes. We are looking to recruit a highly motivated scientist as a Post-Doctoral Associate to work on projects
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complex decision-making, and specifically in governing the balance between flexible and rigid decision styles. Tools to be employed (and on which we can train you) include: •Novel high density probes