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scale, in accordance with Decree-Law No. 66/2018 of August 16. 2.2 – Specific requirements: a) Academic background in: Biochemistry, Molecular Biology, Cell Biology, Biotechnology, or related scientific
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assays. Knowledge of various in silico techniques, including Molecular Dynamics (MD) and virtual screening. First author of peer-reviewed scientific publication(s) in international journals indexed in
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, leading to a reduced part scrap rate. Build simulation tools that support the understanding of defect generation during forming. Identify state-of-the-art software and methodologies for modelling composite
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in other areas – 0 points) b) Publications in the area of the project (Microbiology/Molecular Biology) – up to 4 points, Publications in related areas – up to 2 points; Publications in other areas – 0
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: Type of grant: Research Grant (BI) – Master Scientific area: Biochemistry, Biotechnology and Molecular Biology Eligibility requirements: Master's degree in Biochemistry, Biotechnology, Molecular Biology
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analysing the influence of the main machining parameters on the dynamic behaviour of cutting, with the objective of identifying instability conditions and supporting process optimization. This work plan is
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Helmholtz-Zentrum Dresden-Rossendorf - HZDR - Helmholtz Association | Dresden, Sachsen | Germany | 24 days ago
facing society today. The Institute of Fluid Dynamics is conducting basic and applied research in the fields of thermo-fluid dynamics and magnetohydrodynamics in order to improve the sustainability
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the dynamics of contaminants in soil/substrate; (iii) Assess the uptake of emerging contaminants by selected agricultural crops (‘plant uptake’) in different production systems and irrigation practices (Activity
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Associação do Instituto Superior Técnico para a Investigação e Desenvolvimento _IST-ID | Portugal | 23 days ago
within a Research Infrastructure? No Offer Description Applications are open for One Research Studentship(s), within the framework of Institute of Molecular Sciences, a Associate Laboratory that integrates
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the area of microbially induced calcium carbonate precipitation is limited due to poor understanding of bio-mineral reaction kinetics at molecular level; highlighting the need for unpinning the role