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formulations. All this research requires advanced characterization methods to study interaction, structure and beahaviour. The research group has well-established collaboration with the large-scale facilities
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, structure and beahaviour. The research group has well-established collaboration with the large-scale facilities MAX IV and ESS, providing unique opportunities for cutting-edge research and access
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-genome and population structure analyses, genome-wide association studies (GWAS), and the integration of transcriptomic and phenotypic data to identify candidate genes linked to biocontrol traits
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using solution processing and printing technologies. Characterization of structural, morphological, mechanical, electrical, electrochemical, optical, and electromechanical properties of materials and
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somewhat accustomed to teaching and are willing to take part in courses and supervision at the department You have strong written and verbal communication skills in English You work in a structured, solution
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to teaching and are willing to take part in courses and supervision at the department You have strong written and verbal communication skills in English You work in a structured, solution-oriented way and enjoy
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leading the investigation of structural and biophysical properties of miniaturized tumor environment models. A multidisciplinary approach is expected, integrating microfabrication, cell component and
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leading the investigation of structural and biophysical properties of miniaturized tumor environment models. A multidisciplinary approach is expected, integrating microfabrication, cell component and
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model organisms, their application in conifers remains limited due to challenges associated with tissue structure, nuclei isolation and sensitivity to inhibitory compounds. This project aims to develop
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activities. On a personal level, we are looking for a good team player who can also work independently when required. We would like you to: Be able to organise and structure your work. Deliver results