50 automatic-control-"https:" Postdoctoral positions at Pennsylvania State University
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mechanisms that control RNA polymerase pausing and termination, regulation of gene expression by transcription attenuation and translational control mechanisms, structural studies of RNA polymerase using cryo
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, mathematics, and the physical sciences. AI for Quantum Systems: Apply machine learning and artificial intelligence techniques to improve the characterization, control, calibration, error mitigation, and overall
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and metabolic stress signaling in cancer metastasis. Our goal is to reveal how the mitochondrial metabolism and nutrient stress controls metastatic progression through epigenetic remodeling
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SPECIFICS Penn State’s Earth and Environmental Systems Institute (EESI, https://eesi.psu.edu ) invites applications for multiple Postdoctoral Scholar positions in quantitative climate research. Successful
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methods, risk and reliability, stochastic control processes, dynamic programing, deep reinforcement learning. Strong track record in scientific contributions supported by peer-reviewed publications. Strong
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, protein-RNA interaction, protein-protein interaction, and/or bioinformatics analysis of transcriptomics data is required. The successful candidate will explore fundamental mechanisms that control RNA
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SPECIFICS The College of Information Sciences and Technology (IST), https://ist.psu.edu/ , at Penn State invites applications for the position of its inaugural Quantum Frontiers Postdoctoral Scholar
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signaling and metabolic vulnerability in metastatic cancer. Our goal is to reveal how the mitochondrial metabolism and nutrient stress controls metastatic progression through metabolic reprogramming
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and disease (https://sites.psu.edu/nighot/ ). The lab is especially interested in the role of defective intestinal tight junction (TJ) barrier in inflammatory bowel disease (IBD), including Crohn’s
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molecular biology, functional genomics, and drug-discovery approaches to identify pathways that control keratinocyte stress responses and to evaluate potential therapeutic modifiers of epithelial dysfunction