Conference paper 2023

Roles and challenges of innovation, industry 4.0, and sustainability competencies development in engineering students; Roles y retos en el desarrollo de competencias de innovación, industria 4.0 y sostenibilidad en estudiantes de ingeniería

Proceedings of the LACCEI international Multi-conference for Engineering, Education and Technology
Conference · Vol. 2023-July
Abstract

The graduate competencies of students must frequently adapt to the needs of the market so that they can increase the competitiveness of countries. In the case of engineering students, these competencies are changing ever faster. Including Industry 4.0 technologies and innovation in different fields implies a multidisciplinary development of these students. This work has focused on the available literature answering what competencies and methodological strategies are used in the training of engineers. In addition, it has sought to understand the role of the actors of the educational systems and other factors that influence them. In this sense, the competencies related to sustainability, innovation, and Industry 4.0 have recently presented an essential development in the training of engineers since it allows them to face present and future social, economic, and technological challenges. These paradigms reveal that both teachers and students are immersed in a continuous and changing training system. In turn, it shows the challenges of current educational systems at the university level and from K-12 in executing the appropriate instruments for developing and evaluating these competencies. © 2023 Latin American and Caribbean Consortium of Engineering Institutions. All rights reserved.

Keywords

Author Keywords

Sustainability Competencies engineering Engineering education Innovation Industry 4.0 higher education institutes

Index Keywords

Author Affiliations
Universidad Tecnológica de Panamá, Panama City, Panama
Universidad Tecnológica de Panamá, Panama City, Panama, Sistema Nacional de Investigación (SNI), Clayton, Panama
Universidad Tecnológica de Panamá, Panama City, Panama, Escuela Secundaria Pedro Pablo Sánchez, Panama
Centro de Educación Básica General José María Barranco, Barranco, Panama
Funding & Acknowledgements
Secretaría Nacional de Ciencia, Tecnología e Innovación, SENACYT
Grant: PFIA-IACP-39-2022
Los autores agradecen a la Universidad Tecnológica de Panamá y la Facultad de Ingeniería Mecánica (https://fim.utp.ac.pa/, accessed on 10 December 2022) por su colaboración a este estudio y a la Secretaría Nacional de Ciencia, Tecnología e Innovación (SENACYT) (https://www.senacity.gob.pa/, consultado el 27 febrero de 2023) por su financiamiento dentro del proyecto PFIA-IACP-39-2022, en conjunto con el Sistema Nacional de Investigación (SNI).
Secretaría Nacional de Ciencia, Tecnología e Innovación, SENACYT
Los autores agradecen a la Universidad Tecnológica de Panamá y la Facultad de Ingeniería Mecánica (https://fim.utp.ac.pa/, accessed on 10 December 2022) por su colaboración a este estudio y a la Secretaría Nacional de Ciencia, Tecnología e Innovación (SENACYT) (https://www.senacity.gob.pa/, consultado el 27 febrero de 2023) por su financiamiento dentro del proyecto PFIA-IACP-39-2022, en conjunto con el Sistema Nacional de Investigación (SNI).
Sistema Nacional de Investigadores, SNI
Los autores agradecen a la Universidad Tecnológica de Panamá y la Facultad de Ingeniería Mecánica (https://fim.utp.ac.pa/, accessed on 10 December 2022) por su colaboración a este estudio y a la Secretaría Nacional de Ciencia, Tecnología e Innovación (SENACYT) (https://www.senacity.gob.pa/, consultado el 27 febrero de 2023) por su financiamiento dentro del proyecto PFIA-IACP-39-2022, en conjunto con el Sistema Nacional de Investigación (SNI).
References 10 References
1 Objetivos Y Metas De Desarrollo Sostenible Desarrollo Sostenible, (2021)
2 Novy, Julia Wells, A core curriculum for sustainability leadership, Sustainability (Switzerland), 13, 19, (2021)
3 Vásquez, Rafael E., Curriculum change for graduate-level control engineering education at the Universidad Pontificia Bolivariana, IFAC-PapersOnLine, 52, 9, pp. 21-26, (2019)
4 Keinänen, Meiju Marika, How to measure students’ innovation competences in higher education: Evaluation of an assessment tool in authentic learning environments, Studies in Educational Evaluation, 58, pp. 30-36, (2018)
5 Quelhas, Osvaldo Luiz Gonçalves, Engineering education and the development of competencies for sustainability, International Journal of Sustainability in Higher Education, 20, 4, pp. 614-629, (2019)
6 Costello, Gabriel J., More than just a game: the role of simulation in the teaching of product design and entrepreneurship to mechanical engineering students, European Journal of Engineering Education, 42, 6, pp. 644-652, (2017)
7 Bilbao, Javier, Study to find out the perception that first year students in engineering have about the Computational Thinking skills, and to identify possible factors related to the ability of Abstraction, Heliyon, 7, 2, (2021)
8 Bayhan, Hasan Gokberk, Technological innovation in architecture and engineering education - an investigation on three generations from Turkey, International Journal of Educational Technology in Higher Education, 17, 1, (2020)
9 Elbaek, Lars, Innovation camp as 21stcentury skill learning game in k12 pe teaching, Proceedings of the European Conference on Games-based Learning, 2020September, pp. 142-150, (2020)
10 Como Medir El Aprendizaje En Innovacion Analisis Factorial Confirmatorio Del Innovator S Behavior Questionnaire I Bq En Universitarios Chilenos Editorial Octaedro
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Document Identifiers
  • EID 2-s2.0-85172374477
  • Language Spanish