10 structures-"https:" "https:" "https:" "https:" "https:" "https:" "https:" positions at "Alexandru Ioan Cuza" University of Iasi
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Offer Description Synthesis and structural characterization of flavonoids, antimicrobial and cytotoxicity tests, data analysis. Where to apply Website https://www.uaic.ro/angajari_uaic/1-post-doctorand-in
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the specialized field; Field investigations and sample collection; Monitoring experiments; Reporting the results of the activity; Where to apply Website https://www.uaic.ro/angajari_uaic/cercetator-postdoctoral-in
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and interdisciplinary environment. Does that sound like something for you? Apply to join our team! Where to apply Website https://iventajobdata.eu/bestmedia/img/2286665/1913265/cl/63215252539d661de3f4f
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National Institute of Research and Development for Electrochemistry and Condensed Matter | Romania | 3 days ago
considered by the candidate to be relevant to the field of the position for which he/she is running. The list is structured as follows: a) list of no more than 10 scientific publications, the most relevant
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flexible, beginning as early as May 1, 2026. The employment duration is three years from the start date. For more information about our research focus and team, please visit our homepage: https
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homepage: https:// www.mat.univie.ac.at/~rabot . As a team, we value a positive, inclusive, and respectful work environment. In our regular group meetings, we exchange ideas on current topics and projects
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homepage: https://www.mat.univie.ac.at/~rabot . As a team, we value a positive, inclusive, and respectful work environment. In our regular group meetings, we exchange ideas on current topics and projects
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(ioan.notingher@nottingham.ac.uk ). Application: https://www.nottingham.ac.uk/pgstudy/how-to-apply/apply-online.aspx View All Vacancies
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Research Programs: Data Science, Tire as a Sensor, End-of-Life Tire Valorization, Sustainable Materials for Non-Pneumatic Tires, Sustainable Materials for Next Generation of Pneumatic Tires, Structure
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. The goal is to quantify both the extent of material degradation and its precise spatial distribution within the battery structure. By modeling the battery as a dynamic 3D acoustic landscape, we expect to be