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, tomographic reconstruction, or related inverse problems in imaging. Familiarity with molecular dynamics simulations (e.g., OpenMM, LAMMPS) and/or synthetic data generation for training ML models. Experience
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will focus on understanding the interaction at the molecular level between liquid and solid phases, as well as between VOC and PLs components. Main Missions: Modeling and screening: Utilize molecular
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. Website for additional job details https://jobs.uni-graz.at/en/jobs/c660b2d3-3bf7-f5bc-13d6-69c6799001e5 Work Location(s) Number of offers available1Company/InstituteDepartment of Molecular
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of molecular deformation into local strain and ultimately macroscopic actuation. The SIMULACTOR project aims to develop an integrated multiscale approach to model the mechanical behavior of PPAs. Its objective
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focus on the molecular mechanisms governing liquid–solid interfacial dynamics. Using molecular dynamics simulations combined with theoretical modeling, the project will investigate how confinement
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cytometry) to understand and treat heart disease. The successful candidate will become a member of a collaborative research lab involved in the identification and functional analysis of molecular factors
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or mitochondrial dysfunction. Perform experiments utilizing molecular, genetic, cellular and imaging approaches in both rodent and cell models. Participate in the development and validation of rodent and cell models
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other team members in the lab and support projects focused on understanding the molecular basis of HD and validating therapeutic targets. Core duties will include breeding and weaning mouse models
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have previous laboratory experience with standard molecular biology techniques. Previous experience with an animal model system is preferred. Organizational skills, attention to detail, and the ability
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to identify and understand the mechanisms through which these bioactive compounds can counteract or reduce cellular and molecular damage induced by potentially harmful substances. Through experimental studies