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protein biochemistry and/or cryo-electron microscopy, including at least one of the following: single-particle analysis, cryo-ET, or 2DTM. This position is ideal for researchers who want rigorous training
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techniques such as cryo-electron microscopy, tomography, kinetic assays, and computational analysis. Day-to-day work will include experimental design, data collection and interpretation, close collaboration
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various disciplines: computer scientists, mathematicians, biologists, chemists, engineers, physicists and clinicians from more than 50 countries currently work at the LCSB. We excel because we are truly
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or a closely related field. Hands-on experience in constructing custom fluorescence microscopy systems (e.g., FRET, FLIM, FCS, and anisotropy). Solid understanding of time-resolved fluorescence
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relevant related techniques such as microscopy, transcriptomics or metabolomics (highly desirable) A strong interest in cellular agriculture/cultivated meat is essential, although specific prior experience
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Inference Devices & Qubits Concepts and operation of Josephson junctions, SQUIDS and superconducting circuits and qubits. • High-frequency Data Acquisition and Control Electronics Concepts, operation and
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Infrastructure? No Offer Description KEY WORDS: amyotrophic lateral sclerosis, frontotemporal dementia (ALS/FTD), pathogenesis of ALS/FTD, RNA-protein interactions, cryogenic electron microscopy
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and cryo-electron microscopy techniques will be employed, as well as the investigation of the composition of viral factories by mass spectrometry. We hope that with these approaches, we will understand
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to Submit Application Materials: Please email applications to Dr. Anusha Kalbasi (akalbasi@stanford.edu (link sends e-mail) ). Does this position pay above the required minimum?: No. The expected base pay for
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computer tools / IT skills Specific Requirements Contribute to the team's shared tasks Manage mouse model colonies within the center’s animal facility Develop functional assays both in vivo and in vitro