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paradigm shift in development of Biologics. A critical challenge preventing this is the current limiting volume of high quality and well-characterized in-vitro T cell immunogenicity data. In this project, we
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research frameworks developed at DTU Integrate product data, regulation, and stakeholder needs into tailored solutions Address behavioural, incentive, and digital aspects of take-back design Collaborate
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design of study, selecting the best data for execution, performing and reporting analyses. This requires that you are able to work independently and have a desire to seek out and test the most suitable
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oxygen delivery—without relying on human donors. You’ll build on the 3Bs group's extensive data and recent publications to evaluate the biological performance of these nanocarriers in preclinical models
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, laboratory and field data, and modeling Develop and apply reactive transport models in saturated and unsaturated soils by use of Comsol Multiphysics and other tools Interpret and document the modeling results
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information Requests for further information about the project should be directed to Professor Sophie Beeren, sopbee@kemi.dtu.dk . You can read more about DTU Chemistry at www.kemi.dtu.dk/english Information
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. The allowance will be agreed upon with the relevant union. The period of employment is 1 year. You can read more about career paths at DTU here . Further information Further information may be obtained from
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here . Further information Further information may be obtained from Daniela Pigosso (danpi@dtu.dk ). You can read more about DTU Construct at www.construct.dtu.dk, and the Section of Design for
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here . Further information Further information may be obtained from Venkata Nadimpalli (vkna@dtu.dk ) or Jesper Hattel (jhat@dtu.dk ). You can read more about DTU Construct at www.construct.dtu.dk, and
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agreed upon with the relevant union. The period of employment is 2 years. You can read more about career paths at DTU here . Further information Further information may be obtained from Thomas Crouzier