A Methodology for Training Toolkits Implementation in Smart Labs

Author:

Zamiri Majid1,Sarraipa Joao1,Ferreira José1,Lopes Carlos1,Soffer Tal2ORCID,Jardim-Goncalves Ricardo1ORCID

Affiliation:

1. School of Science and Technology and Center of Technology and Systems (CTS-Uninova), NOVA University of Lisbon, 2829-516 Caparica, Portugal

2. Unit for Technology and Society Foresight, School of Education, Tel Aviv University, Tel Aviv 69978, Israel

Abstract

Globally, educational institutes are trying to adapt modernized and effective approaches and tools to their education systems to improve the quality of their performance and achievements. However, identifying, designing, and/or developing promising mechanisms and tools that can impact class activities and the development of students’ outputs are critical success factors. Given that, the contribution of this work is to propose a methodology that can guide and usher educational institutes step by step through the implementation of a personalized package of training Toolkits in Smart Labs. In this study, the package of Toolkits refers to a set of needed tools, resources, and materials that, with integration into a Smart Lab can, on the one hand, empower teachers and instructors in designing and developing personalized training disciplines and module courses and, on the other hand, may support students (in different ways) in developing their skills. To demonstrate the applicability and usefulness of the proposed methodology, a model was first developed, representing the potential Toolkits for training and skill development. The model was then tested by instantiating a particular box that integrates some hardware to be able to connect sensors to actuators, with an eye toward implementing this system mainly in the health domain. In a real scenario, the box was used in an engineering program and its associated Smart Lab to develop students’ skills and capabilities in the areas of the Internet of Things (IoT) and Artificial Intelligence (AI). The main outcome of this work is a methodology supported by a model able to represent Smart Lab assets in order to facilitate training programs through training Toolkits.

Funder

European Commission ERASMUS

Publisher

MDPI AG

Subject

Electrical and Electronic Engineering,Biochemistry,Instrumentation,Atomic and Molecular Physics, and Optics,Analytical Chemistry

Reference85 articles.

1. Modern Approaches to Education Management to Ensure the Quality of Educational Services;Alrhaimi;TEM J.,2020

2. A review of anatomy education during and after the COVID-19 pandemic: Revisiting traditional and modern methods to achieve future innovation;Iwanaga;Clin. Anat.,2021

3. Does digitalization in higher education help to bridge the gap between academia and industry? An application to COVID-19;Ind. High. Educ.,2021

4. Tom Ziming Qi, T.Z. (2008, January 22–25). Industry Oriented Teaching and Learning strategies applied to the course within traditional engineering technology undergraduate program. Proceedings of the 38th Annual Frontiers in Education Conference, Saratoga Springs, NY, USA.

5. Low-skilled labor markets as a constraint on business strategy choices: A theoretical approach;Carlier;J. Bus. Res.,2019

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