19 phd-computational-mechanics-"FEMTO-ST"-"FEMTO-ST" Postdoctoral positions at MASARYK UNIVERSITY
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research Medical Faculty of Masaryk University, Brno, Czech Republic invites excellent scientists to apply for a two-year POSTDOC POSITION in Computational Cancer Genomics Description: The position is
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Department: Erik D. Fagerholm Research Group: Computational Neuroscience – Faculty of Medicine Deadline: 31 Jan 2026 Start date: April 2026 or upon agreement Job type: full-time Job field: Science
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of Science, Masaryk University announces an open competition for the position POSTDOC POSITION in Computational Condensed Matter Physics Workplace: Department of Condensed Matter Physics, Faculty of Science
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environment linking molecular biology, biophysics, and computational modeling. Include these in your application: A comprehensive CV detailing your publication history A copy of your PhD diploma Contact
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on understanding the molecular mechanisms behind retinal development and disease using human pluripotent stem cells. We specialize in creating retinal organoids, “eye-like” organoids, and other retinal cell types
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are seeking a talented and motivated candidate to join our team to pursue the mechanisms and functions of primary cilia. The primary cilium is an antenna-like organelle that has emerged as a fundamental
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mutations as risk factors for disease progression therefore has clear clinical implications and benefits for patients and their families. The underlying biological mechanisms leading to leukemic
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Description: We offer a postdoctoral position with a topic focused on understanding key mechanisms of developmental biology. More precisely the applicant will have the opportunity to study molecular and
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Description: Our laboratory studies neurological disorders with a current emphasis on Alzheimer’s disease (AD) and glioblastoma by dissecting the underlying cellular and molecular mechanisms. Using a suite of
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: The research group of prof. Michal Masařík is a biomedical laboratory dedicated to exploring the molecular mechanisms that drive cancer progression, with a particular emphasis on the tumour microenvironment (TME