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organization of all stored samples. Sample Handling and Processing:Receive, process, and prepare human samples for biobanking in accordance with project protocols. Experience with single cell suspensions and
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societal development by providing top quality education that is tightly linked to its internationally recognized research programs. Research at the Department of Molecular Biosciences, The Wenner-Gren
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advanced technology development to biomedical studies. The main research areas include immuno-oncology, sensitization, and biomarkers. Advanced technologies are utilized within the department, including
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between pharmaceutical science, cell biology, tissue engineering, and inhalation therapy. The duties include the development and characterization of advanced 3D-cell- and tissue models that mimic
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orchestration, while leveraging new technologies such as integrated sensing and communication (ISAC). These initiatives bring together leading academic, industrial, and public-sector partners to develop
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-harvesting devices. The successful candidate will focus on ionic thermoelectric materials and electrochemistry, developing and investigating advanced electrolyte and redox-active material systems for next
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microenvironment strongly contributes to a tumor's growth and development, we do not know much about heterogeneity within cell types in the tumor stroma. Our strategy combines high-resolution studies of basic
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energy-harvesting devices. The successful candidate will focus on ionic thermoelectric materials and electrochemistry, developing and investigating advanced electrolyte and redox-active material systems
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of 20 per cent of full-time. Your work will include: Development and characterization of soft MIEC materials. Development and characterization of functional separator materials. Investigation
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nutrition as well as food by-product biorefining and protein technology. The division has a wide range of modern analytical equipment for chromatography coupled with mass spectrometery, an in vitro human cell