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Steven C. Koenig; Gretel Monreal – Design and Technology Education, 2025
Purpose: Biomedical engineers that have the ability and skill sets to comprehend and retain basic anatomy and physiology (A&P) knowledge, apply fundamental engineering principles, use critical thinking, and communicate effectively across multiple disciplines to facilitate successful development and clinical translation of medical devices. The…
Descriptors: Equipment, Medical Services, Biomedicine, Engineering Education
Pule, Sarah; Attard, Jean-Paul – Design and Technology Education, 2021
While there is much research concerning the interpretation of diagrams such as geographical maps and networks for information systems, there is very little on the diagrams involved in electrical and electronic engineering. Such research is important not only because it supports arguments made for other types of diagrams but also because it informs…
Descriptors: Spatial Ability, Cognitive Processes, Electronic Equipment, Engineering Education
Grimal, Lou; Baudry, Jules; Charraud, Pelgrim; Céret, Rémi; Troussier, Nadège – Design and Technology Education, 2022
Humanity's entrance into the Anthropocene forces us to question the role of technology because of its impacts on the environment. The stake is the viability of the Earth system for humans. Engineers producing a large part of these impacting techniques are not trained in sustainable issues (environmental, social and economic ones - in a systemic…
Descriptors: Engineering Education, Educational Change, Sustainability, Climate
Citrohn, Björn; Stolpe, Karin; Svensson, Maria; Bernhard, Jonte – Design and Technology Education, 2022
This study aims to investigate affordances of models and modelling in design projects in technology education. To learn more about affordances when working with models and modelling, four Swedish technology teachers were interviewed using a narrative approach. Despite a small number of informants data were rich, containing detailed descriptions of…
Descriptors: Foreign Countries, Technology Education, Design, Models
Turnbull, Wendy Fox; Docherty, Paul; Zaka, Pinelopi – Design and Technology Education, 2018
A flipped classroom approach consists of two distinct parts: direct on-line instruction in the students' own time and at their own pace, and interactive group learning and problem solving activities in scheduled classes. This approach has the potential to suit theoretical and practice-based courses such as technology education. This article…
Descriptors: Blended Learning, Teaching Methods, Problem Solving, Student Attitudes
Woodcock, Andree; Osmond, Jane; Tovey, Michael; McDonagh, Deana – Design and Technology Education, 2019
Threshold concept models offer a useful way of understanding aspects of design education. A threshold concept represents a gateway, or portal, to a more developed understanding and level of capability (Meyer, Land & Davies, 2008). Passing through a threshold can be transformative, irreversible, integrative and troublesome. Key transformations…
Descriptors: Empathy, Design, Teaching Methods, Engineering Education
Garcia-Moran, Emmanuel; Esqueda, Donovan; Solis-Cordova, Jose De Jesus; Villagomez, Luis; Morano, Hector; Ramirez, Rafael – Design and Technology Education, 2021
Online laboratories are widely used in higher engineering education and due to the COVID-19 pandemic, they have taken on an even greater relevance. At Tecnologico de Monterrey, Mexico, well-established techniques such as Problem-Based Learning (PBL), Project-Oriented Learning (POL) and Research-Based Learning (RBL) have been implemented over the…
Descriptors: Online Courses, Engineering Education, Problem Based Learning, Teaching Methods