Conference paper Gold Open Access 2020

Preparing 5.0 Engineering Students for an Unpredictable Post-COVID World

2020 IFEES World Engineering Education Forum - Global Engineering Deans Council, WEEF-GEDC 2020
Conference · Art. 9293661
Abstract

In 2020, Higher Education and industry across the globe were immersed in extreme, unpredictable environments. Given the devastating impacts and disruptions observed since the appearance of COVID-19, the question to ask Higher Education is how it can better prepare students who are capable of being agile and proactive, and who demonstrate effective decision-making capabilities in complex situations. This paper therefore seeks to explore how educational engineering programs can better prepare 5.0 engineering students for their future workplace. It draws on the authors' involvement in two European Union projects, to provide insights and recommendations, which suggest that the focus be on: revisiting the curriculum; developing transversal skills and V-shape Engineer workspaces; work-based learning; graduate employability; and strengthening ties between academia and industry. We are also increasingly moving towards a 5.0 era where the emphasis is on developing human-centred IT soft-skills. This paper presents educational engineering-program leaders and managers, with suggestions for how to be responsible and proactive in ensuring that 5.0 engineering students have not only a qualification, but the requisite skills to make a more meaningful impact in their future workplace. © 2020 IEEE.

Keywords

Author Keywords

Engineering education COVID-19 transversal skills Workplace Industry relations

Index Keywords

Engineering education higher education Decision making Students Work-Based Learning Soft skills European union Educational engineering Transversal skills Unpredictable environments V shape
Author Affiliations
Laboratoire des Sciences et Techniques de l'Information, de la Communication et de la Connaissance (Lab-Sticc), Brest, Brittany, France
University of KwaZulu-Natal, Durban, KwaZulu-Natal, South Africa
Department of Engineering, Reykjavík University, Reykjavik, Iceland
IMT Atlantique, Nantes, Pays-de-la-Loire, France
NBO Bebras, Institut Teknologi Del, Toba, North Sumatra, Indonesia
Universitat de les Illes Balears, Palma, Balearic Islands, Spain
Funding & Acknowledgements
Erasmus+
Grant: 2017-1-FR01-KA203-037301, 2018-1-SE-EPPKA2-CBHE-JP
This work was supported by the European Erasmus+ program under grants 2017-1-FR01-KA203-037301 and 2018-1-SE-EPPKA2-CBHE-JP.
Erasmus+
This work was supported by the European Erasmus+ program under grants 2017-1-FR01-KA203-037301 and 2018-1-SE-EPPKA2-CBHE-JP.
References 10 References
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8 Descriptors Defining Levels in the European Qualifications Framework Eqf Learning Opportunities and Qualifications in Europe, (2020)
9 European Network for Accreditation of Engineering Education, (2017)
10 Communique by French Commission Des Titres D Ingenieur, (2020)
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