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Postdoctoral position in structural and biophysical analysis of plant hormone transporters within...
University, comprising a vibrant research and education environment. The department currently has 75 full time scientific staff, 95 PhD students and a yearly uptake of around 160 students housed in the same
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Independent problem-solving skills Excellent communication and language skills (English) Experience with collaborations and team-based work style As a formal qualification, you must hold a PhD degree (or
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metabolomes (targeted and untargeted) and plant transcriptomes In addition to collaborating with project partners, you will join an active and expanding community of PhD and Postdoc students in the plant
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The Rosalind Franklin Institute (the Franklin) is a technology institute for life science, creating innovative technologies that transform our understanding of life. Our technologies, borne out
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, tissue engineering, and nanoscale biointerfaces, our new team aims to develop next-generation nanotherapies, microphysiological systems and bioengineered grafts for regenerative medicine, with a strong
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iNANO at Aarhus University is seeking a postdoctoral fellow for the Novo Nordisk Foundation CO2 R...
Research Center to unlock the power of science and technology! Starting date and duration of employment The position is fix termed for one year and is available from 1st of December 2025 or as soon as
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Technology, with approximately 200 employees, including around 40 PhD students, and features strong and expanding research. The department is located at the Chemical Biological Centre (https://www.umu.se/en
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environment in the fields of science, technology and administration as well as for the education of highly qualified young scientists. The computational imaging group at DESY is concerned with the development
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immunotherapies for pediatric tumors. Studies are focused on using genetic engineering approaches to not only render immune cells cancer specific, but also improve their effector function. Genetically modified
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regulation of nuclear xenobiotic receptors, (2) the mechanism of selective modulation of highly homologous drug-metabolizing enzymes. We are taking a hypothesis-driven and technology-enabled multidisciplinary