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model and biological membranes. The experimental data will be paired with results from molecular dynamics simulations to provide a complete characterization of the biophysical properties of the imaged
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is close. Our cohesive campuses make it easy to meet, work together and exchange knowledge, which promotes a dynamic and open culture. The ongoing societal transformation and large green investments in
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is close. Our cohesive campuses make it easy to meet, work together and exchange knowledge, which promotes a dynamic and open culture. The ongoing societal transformation and large green investments in
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. Qualifications Requirements A completed undergraduate degree (Bachelor’s degree) in a relevant field, such as molecular life sciences, biotechnology, biomedicine, immunology, or similar. Previous laboratory
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degradation or depolymerization Experience in bioinformatics, molecular modeling, or simulations Experience in experimental protein or enzyme characterization Track record of scientific publications and
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into how molecular relations shape health and disease in tissues. Yet, analytical tools capable of integrating multi-dimensional spatial data remain limited. The project objectives are to (i) develop tools
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modeling Experience in plastic degradation or depolymerization Experience in bioinformatics, molecular modeling, or simulations Experience in experimental protein or enzyme characterization Track record
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assays Perform molecular biology techniques (e.g., library preparation, RNA handling, PCR amplification, etc.) Operate and maintain laboratory equipment and ensure high-quality experimental output
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repertoire profiling) to characterize tumor and immune cell heterogeneity within the tumor microenvironment, with the aim of integrating these datasets to better understand tumor-immune dynamics and mechanisms
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assays Perform molecular biology techniques (e.g., library preparation, RNA handling, PCR amplification, etc.) Operate and maintain laboratory equipment and ensure high-quality experimental output