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pioneering research in experimental and computational fluid mechanics, hydrology, and earth-surface dynamics. For over 80 years, our innovative and adaptable facilities have attracted trailblazers, problem
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suitable experimental and numerical tools to improve the design and evaluation processes for the next-generation propellers, dedicated to electric vertical take-off and landing (eVTOL) vehicles for Urban Air
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from complex sequencing datasets generated from patient material and experimental systems. You will work with Oxford Nanopore long-read sequencing and Illumina short-read sequencing data, developing and
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the evolution of molecular mechanisms of the centrosome, a central organelle required for cell division. We employ complementary approaches using the roundworm Caenorhabditis elegans and human cell culture
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" Tumor viscoelasticity as a central player in glioblastoma treatment - towards mechanopharmacology". As part of the experimental work, the tasks will include: Development of 3D hydrogels with controlled
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Impact, and Therapeutic Targeting of Human Cytomegalovirus (HCMV) in Brain Cancer.” This ambitious project integrates basic, translational, and clinical research to uncover metabolic mechanisms driving
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experiments, and validation of computational models. Required Qualifications: A successful applicant must have a PhD in Civil Engineering, Engineering Mechanics, or Mechanical Engineering. Applicants
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acoustic discretion of surface vessels and submarines. They will also collaborate with the IEMN to design the prototype and the experimental protocol to be tested in heavy fluid Where to apply Website https
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The International Institute of Molecular Mechanisms and Machines Polish Academy of Sciences | Poland | about 1 month ago
Mechanisms and Machines Polish Academy of SciencesCountryPolandCityWarsawPostal Code02-247StreetMarcina Flisa 6Geofield Contact State/Province mazowieckie City Warsaw Website http://imol.instiutute Street
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their compatibility with problems from mechanical engineering and materials research that could not be addressed so far due to their high complexity, which prevents approaches that solely rely on classical mechanistic