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Yasmany García-Ramírez – Advances in Engineering Education, 2024
Due to its positive results, active learning has spread to most areas of knowledge of Civil Engineering. Many of these studies used only one technique, which is limiting given the diverse learning styles that the students may have. The road geometric design is the area that has been the least explored in Civil engineering. Therefore, the objective…
Descriptors: Engineering Education, Active Learning, Design, Civil Engineering
Paige, Myela; Schauer, Anastasia; Klesmith, Zoe; Davis, Alexis; Fu, Katherine – Advances in Engineering Education, 2023
In many mechanical engineering undergraduate curriculums, there are topics that are vital to the students' future careers in the manufacturing and design workforce that are not taught in-depth. As one of those topics, Geometric Dimensioning and Tolerancing, or GD&T, is vital to companies who develop and manufacture products because it allows…
Descriptors: Undergraduate Students, Engineering Education, Experiential Learning, Geometry
P. Hariharasakthisudhan; K. Logesh; K. Sathickbasha; Sathish Kannan – Discover Education, 2025
This study presents a structured hybrid framework integrating Design Thinking (DT), the Conceive-Design-Implement-Operate (CDIO) methodology, and Root Assessment (RA) to enhance project-based learning (PBL) in engineering education. The framework addresses limitations in conventional PBL by embedding iterative ideation, structured engineering…
Descriptors: Student Projects, Active Learning, Design, Decision Making
Aida Guerra; Dan Jiang; Xiangyun Du; Imad Abou-Hayt; Andrés Felipe Valderrama Pineda – International Journal of Technology and Design Education, 2025
This study explores engineering design students' perceptions of their agency for sustainability in a Danish problem- and project-based learning (PBL) context. A conceptual framework is proposed with three dimensions: personal, action, and contextual. Q methodology was adopted to investigate the subjective views of 24 first-year undergraduate…
Descriptors: Engineering Education, Design, Student Attitudes, Sustainability
Vanessa Svihla; Jamie R. Gomez; Martin A. Crudo – Interdisciplinary Journal of Problem-based Learning, 2023
While project-based learning purportedly values student agency, supporting and managing this remains challenging. We conducted a design-based research study to understand how problem authenticity, and task and participant structures can contribute to students' framing agency, in which students make decisions that are consequential to their…
Descriptors: Undergraduate Students, Engineering Education, Design, Student Projects
Frederick R. Missel; Jeremy V. Ernst; Daniel P. Kelly; Erik Schettig; Aaron C. Clark – Technology and Engineering Teacher, 2023
For students to gain the most out of education, they need to form long-term memories from experiences gained through active learning. The greatest distinction between active learning and traditional approaches involves the types of tasks and problems the students are challenged to solve. Active learning activities should be structured with student…
Descriptors: Active Learning, Engineering Education, Computer Graphics, Design
Dankovic, Danijel; Marjanovic, Milos; Mitrovic, Nikola; Zivanovic, Emilija; Dankovic, Milan; Prijic, Aneta; Prijic, Zoran – IEEE Transactions on Education, 2023
Contribution: Impact assessment of the practice-oriented course for high school students on their later academic achievements, described in the context of long-term efforts to improve electronic engineering studies' quality. The article highlights the importance of outreach and extracurricular activities and cooperation with the IEEE in these…
Descriptors: High School Students, Engineering Education, Active Learning, Student Projects
Ozis, Fethiye; Parks, Shannon Lynn Isovitsch; Sills, Deborah Lynne; Akca, Mustafa; Kirby, Christine – International Journal of Sustainability in Higher Education, 2022
Purpose: This paper aims to analyze how a tangram activity improved students' abilities to explain sustainability, articulate a positive perception of sustainable design and relate sustainability with innovation in engineering design. Design/methodology/approach: The concept of paradigm shift was introduced in the classroom by using a tangram…
Descriptors: Sustainability, Engineering Education, Learning Activities, College Students
Nikola Luburic; Jelena Slivka; Luka Doric; Simona Prokic; Aleksandar Kovacevic – Education and Information Technologies, 2025
Project-based learning (PBL) is a learning technology praised for its ability to grow domain-specific and domain-general skills and related knowledge and attitudes. However, consistently designing effective PBL experiences is challenging, primarily due to the lack of instructor support and guidance for designing PBL experiences aligned with…
Descriptors: Computer Software, Computer Uses in Education, Engineering Education, Active Learning
Miska, Jacob W.; Mathews, Laura; Driscoll, Jessica; Hoffenson, Steven; Crimmins, Sarah; Espera, Alejandro, Jr.; Pitterson, Nicole – Journal of Engineering Education, 2022
Background: Engineering education traditionally emphasizes technical skills, sometimes at the cost of under-preparing graduates for the real-world engineering context. In recent decades, attempts to address this issue include increasing project-based assignments and engineering design courses in curricula; however, a skills gap between education…
Descriptors: Undergraduate Students, Engineering Education, Design, Student Attitudes
Qureshi, Saad – Journal of Biological Education, 2022
Biomimicry is a useful method to develop students' skills, such as design and systems thinking, particularly when complemented with inquiry-based learning. The research seeks to uncover how students engage in the biomimicry process and what types of designs they produce to reveal insights that could assist educators in teaching biomimicry. A study…
Descriptors: Biology, Science Instruction, Biomedicine, Engineering
Leonard A. Annetta; Mark H. Newton; Kelly Schumann – International Journal of Education in Mathematics, Science and Technology, 2025
The Next Generation Science Standards call for engineering design solutions using computer technologies, but many K-12 classrooms either do not have accessible technologies or the teacher pedagogical knowledge on how to effectively implement engineering design into the curriculum. Without access to computer or mobile technologies, teachers are…
Descriptors: Science and Society, Computation, Thinking Skills, Design
Oscar Fierro; Alex Palma-Cando; Paola E. Ordo´n~ez; Marvin Ricaurte – Journal of Chemical Education, 2025
This study describes an educational strategy of forming transdisciplinary work teams--with students from different careers and semesters--for developing academic projects as a collaborative learning tool. This strategy was implemented in the elective course Process Design, which involved developing projects in industrial processes. As a final…
Descriptors: Educational Strategies, Training, Outreach Programs, Interdisciplinary Approach
Arik, Merve; Topçu, Mustafa Sami – Research in Science Education, 2022
The purposes of this research are to analyse studies which include "Engineering Design Process" by using meta-synthesis method and to present the type of tendency and differences of the processes used in the current literature. With this purpose, 46 research articles were selected and analysed. Qualitative data were collected under three…
Descriptors: Engineering Education, Design, Curriculum Implementation, Elementary Secondary Education
Andrew K. Schulz; Cassie Shriver; Anika Patka; Caroline Greiner; Benjamin Seleb; Rebecca Watts Hull; Carol Subiño Sullivan; Julia M. Sonnenberg-Klein; Roxanne Moore – Advances in Engineering Education, 2025
To address global challenges such as climate change, we must prepare an engineering workforce of sustainability-minded engineers ready to tackle complex socio-technical problems with multiple stakeholders. Frameworks like the United Nations (UN) Sustainable Development Goals (SDGs) have begun to drive structural changes in engineering education,…
Descriptors: Interdisciplinary Approach, Sustainability, Engineering Education, Conservation (Environment)

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