21 parallel-processing PhD positions at BIOMEDICAL SCIENCES RESEARCH CENTRE "ALEXANDER FLEMING"
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assays. In vivo work Establish and monitor patient-derived xenograft (PDX) mouse models. Evaluate safety and efficacy of TCR-T cell therapies in mouse experiments. Collect and process tissues
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to create knowledge for a better world. You can find more information about working at NTNU and the application process here. About the Job One Researcher position, funded for six years, is available in
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Helmholtz Zentrum München - Deutsches Forschungszentrum für Gesundheit und Umwelt | Leipzig, Sachsen | Germany | about 2 months ago
-of-the-art infrastruture and Core Facilities Health Promotion: Sports, company doctor, mental health initiatives International Staff Service: Support with the relocation and integration process in Germany
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Nancy and the long-standing experience in sophisticated computer simulation studies from Leipzig, promising unique prospects in advanced education of PhD students via research into this important field
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better world. You will find more information about working at NTNU and the application process here. About the position Are you motivated to take a step towards a doctorate and pursue exciting career
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Department) at a.bruggen@maastrichtuniversity.nl . For questions about the application process, reach out to Laura (Recruiter) at laura.daniels@maastrichtuniversity.nl . Ready to apply? Upload your CV
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techniques to study degradation processes, including electrocatalyst dissolution Mechanistic understanding of catalyst degradation processes in PEM, AEM, and alkaline water electrolysis Implementation of AI
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operation Participation in project meetings. Coordination with internal and external partners Publication and presentation of research results in relevant journals and at international conferences Your
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experience relate to the project. Highlight your experience in modelling, signal processing and neural data analysis. The studentship code BI095 in the ‘Studentship/Partnership Reference’ field When prompted
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to identify novel mediators of cancer cell death. Conduct mechanistic studies to elucidate how candidate genes regulate cancer cell death processes in vitro. Establish and utilize syngeneic mouse models