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resolution model of the human body. The institute has established a strong foundation in (1) Molecular: X-ray, NMR, EM (2) Cellular: super resolution, confocal, coherent diffraction and (3) Human scale: MRI
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multicultural environment. Preferred Factors: Will be considered preferred factors: Prior experience in research using the following methodologies: cell culture; molecular and biochemical analysis techniques
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PhD student. Your role: You will perform PhD studies in plant molecular, cell, and developmental biology. You will work in the field of plant endomembrane system and use Arabidopsis thaliana as model
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maintenance of live model organisms, such as yeast, flies, or plants (including experience gained in school). Experience with molecular cloning and biochemistry (including experience gained in school, but
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TLDR: Build the model backbone for the next era of AI-powered spatial biology. Please include a cover letter with your application detailing your qualifications and experience for this position
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and mitochondrial biology: primary human fibroblasts, mitochondrial bioenergetics, import assays, respiratory chain phenotyping, in vivo disease models. Multi‑omics: single‑cell and bulk transcriptomics
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of Molecular Medicine and Therapeutics at The Ohio State University College of Medicine. Lab website: http://u.osu.edu/mathur Our goal is to use the lens of metabolism to better understand and predict cancer
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International Review of Cell and Molecular Biology (Elsevier, 2018; https://linkinghub.elsevier.com/retrieve/pii/S1937644817300825)vol. 335, pp. 41–84. The molecular basis of cell self-renewal and pluripotency in
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together unique expertise in combustion and laboratory astrophysics to exploit original flames, efficiently produce large molecular systems in the gas phase from the soot nucleation zone, and study their
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at CRAG (from basic science to applied research using plant experimental model systems, crops and farm animals) make extensive use of genomic technologies and large sets of genetic and genomic data (https