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Field
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We are seeking to appoint a well-trained, enthusiastic and self-motivated scientist to join our team to investigate the mechanisms underlying the function of non-canonical RNA/DNA structures (R
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the composition of a structured database, that includes refining key performance indicators (KPI) and protocols across different academic disciplines. You will contribute to scientific publications
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predicted peptide natural products to the determination of structure-activity relationships. Beyond classical solid phase peptide synthesis, projects also entail the repetition of established <5-step
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researcher who wants to work on the incoming mission data before and shortly after they become publicly available. You will focus on the data products for vegetation structure and photosynthesis. Your main
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writing, causal methods, and establishing research partnerships. They will have structured opportunities to develop their proposal writing, methodological skills, and content expertise in the science of
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that ultimately arise from dysfunction of the ciliary organelle. The successful candidate will be work in a world-class environment with international leaders in mRNA biology, Structural Biology, Cell Biology
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appropriate, and internal equity to ensure fair compensation relative to the university’s broader compensation structure. We are committed to offering competitive and flexible compensation packages to attract
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PhD (within the last 0-5 years) in chemistry, physics, chemical engineering, or a closely related field A strong foundation in quantum mechanics and electronic structure theory Demonstrated expertise in
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modifications induced by enzyme mimics (NMR, colorimetry, labeling, etc.). • Identify the topochemistry of modifications on various model substrates. • Establish structure-property relationships for the modes
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: Clinical Peptidomics, Cancer Immunology, Structural Peptidomics and Immune Memory & Cell Reprogramming) 2). Determination of specific receptor-ligand pairs responsible for docking of cancer derived