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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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the reference 2025-1-PT01-KA220-VET-000352110 financed by Erasmus+ programme, under the following conditions: Scientific Area: Mechanical Engineering and Industrial Engineering and Management Admission
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operation code at the Funds Platform COMPETE2030-FEDER-00870200, co-financed by COMPETE 2030 by Portugal 2030, and by the European Union, under the following conditions: Scientific Area: Mechanical
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, HORIZON-CL6-2022_FARM2FORK-01-05) financed by Horizon Europe – the Framework Programme for Research and Innovation, UE, under the following conditions: Scientific Area: Environmental Microbiology Admission
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Partnership for Biodiversity, under the following conditions: Scientific Area: Environmental Engineering, Chemical Engineering, Biological Engineering, Bioengineering or related areas Admission requirements
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at the Funds Platform COMPETE2030-FEDER-00749600, co-financed by COMPETE 2030 by Portugal 2030, and by the European Union, under the following conditions: Scientific Area: Chemical Engineering, Environmental
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for a research grant within the framework of the Funding UID/00511/2025 of the Research Unit LEPABE - Laboratory for Process, Environmental, Biotechnology and Energy Engineering - funded by Fundação para
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Tecnologia, I.P., through national funds within the framework of the M-ERA-NET3 network “ERA-NET Cofund in raw materials under the following conditions: Scientific Area: Mining Engineering Admission
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by own funds of the Faculty of Engineering of the University of Porto, under the following conditions: Scientific Area: Chemical Engineering, Environmental Engineering, Bioengineering Admission
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within the framework of project “Road Safety”, financed by Faculdade de Engenharia da Universidad do Porto, under the following conditions: Scientific Area: Civil Engineering Admission requirements