197 developer-"https:"-"https:"-"https:"-"Newcastle-University" Postdoctoral positions at Nature Careers
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training program leverages the exceptional research infrastructure at St. Jude to train top-tier postdoctoral fellows with the necessary skills to lead independent research programs. Hematological
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immunogenicity. Over the past decade, this process has been well characterized, and robust methods have been developed to predict it with high confidence. In contrast, our understanding of the principles governing
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(e.g. RNAi, CRISPR/Cas9, small-molecules). In this context, we also develop new computational tools for automated analysis and data visualization. These include algorithms and software applications
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nanoparticles for gas-phase catalysis. Development and application of ultrasensitive methods to probe gas–surface interactions by means of electron spectroscopy in the electron microscope. Operando studies
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Three-Year Postdoctoral Position: Role of Extracellular Nucleic Acids in Interspecies Communicati...
cell surface eRNA– cofactor interactions. Develop and perform communication and redox sensing assays. Conduct secretomics, and spatial transcriptomics to analyse the role of eNA in intercellular
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Postdoctoral Research Associate - Hybrid Computational-Experimental Scientist in Bacterial Drug Resp
Job Description We are seeking an interdisciplinary postdoctoral researcher to join our lab at St. Jude Children's Research Hospital to develop new experimental-computational approaches for studying
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actively to conceptual development and manuscript writing Mentor students and engage in collaborative lab projects Present your work at international conferences This is a position is ideal for
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be used to prepare lamella samples for high resolution cryo-EM imaging and tomography. From AI assisted image analysis, 3D models for key proteins and biomolecular complexes will be fitted into 3D
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or early bystander adaptations to a disturbed lung microenvironment? Disease Modeling and Biomarkers: Can we develop relevant complex in vitro models to study lymphatic dysfunction, and generate biomarkers
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throughput. The ERC DECODE project develops and applies leading-edge system genetics methods to decode context-dependent genetic networks in vivo. To achieve this, the ERC Synergy Project brings together