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Enzai, Nur Idawati Md; Ahmad, Norhayati; Ghani, Mohd Amir Hamzah Ab.; Rais, Siti Sara; Mohamed, Syazilawati – Asian Journal of University Education, 2020
Engineering education in particular involves laboratory equipment and apparatus which requires safety procedures and substantial financial cost. Recent pandemic has also affected engineering education teaching and learning processes as all the classes and laboratory sessions need to be conducted via online distance learning (ODL) method.…
Descriptors: Computer Simulation, Instructional Innovation, Engineering Education, Distance Education
Maiorca, Cathrine; Mohr-Schroeder, Margaret J. – School Science and Mathematics, 2020
Science, technology, engineering, and mathematics (STEM) integration is a desired outcome according to Next Generation Science Standards. However, learning to teach integrated STEM content has been challenging for teachers. Consequently, the purpose of this qualitative study was to describe how 16 preservice teachers enrolled in a mathematics…
Descriptors: STEM Education, Engineering Education, Preservice Teachers, Integrated Activities
Muljana, Pauline S.; Nissenson, Paul M.; Luo, Tian – TechTrends: Linking Research and Practice to Improve Learning, 2020
Accreditation is important for ensuring and sustaining the quality of an educational program, but the process can be challenging. Higher education institutions are open systems that rely on multiple entities, such as faculty members, to assist with the accreditation process. However, there is sometimes a lack of buy-in and involvement from faculty…
Descriptors: College Faculty, Teacher Participation, Accreditation (Institutions), Systems Approach
Nudelman, Gabrielle – European Journal of Engineering Education, 2020
This study aims to ascertain how the relationships between structures in the South African engineering education and training system condition the likelihood of the systemic transformation required by the changing contemporary engineering industry. Drawing on social realism as its theoretical framework, this qualitative case study analyses the…
Descriptors: Foreign Countries, Engineering Education, Realism, Educational Change
Liwång, Hans – International Journal of Sustainability in Higher Education, 2020
Purpose: This study has a scope limited to a specific course and changes integrated to the core of the KTH naval architecture master program. The students in the program have earlier experience from engineering applications in a general sustainability perspective and understand the basic concepts within sustainability. Therefore, to introduce…
Descriptors: Sustainability, Sustainable Development, Engineering Education, Design
Satriawan, Muhammad; Liliasari, Liliasari; Setiawan, Wawan; Abdullah, Ade Gafar – Physics Education, 2020
This research aims to develop an ocean wave energy converter kit from low-cost materials as a teaching tool. The kit is developed using the working principle of a wave energy converter that uses a buoy as a system drive and a weight balancer that is connected to a chain. The dimensions of the kit are 6.7 × 0.3 × 0.4 m (length × width × height)…
Descriptors: Energy, Engineering Education, Marine Education, Physics
Loveland, Thomas; Love, Tyler S.; Wilkerson, Trena; Simmons, Patricia – Technology and Engineering Teacher, 2020
In 1981, twenty-one industrial arts educators convened at Jackson's Mill, WV to develop an agreed-upon rationale and direction for the future of industrial arts. However, the route to achieve this goal was not as clear, as they had to "live the challenge of inquiry, assimilation, compromise, and consensus" (Snyder & Hales, 1981, p.…
Descriptors: Industrial Arts, Curriculum, Standards, Educational History
Voss, Sarah; Klinker, Hannah; Kruse, Jerrid – Technology and Engineering Teacher, 2020
It is becoming increasingly important for students to go beyond engaging in design by reflecting upon the nature of engineering (NOE) and wrestling with questions such as, "What do engineers do?" and "What is engineering?" This article describes an activity in which middle school students are asked to create a product to help a…
Descriptors: Engineering Education, Middle School Students, Learning Activities, Design
Kelley, Todd R. – Technology and Engineering Teacher, 2020
Teaching students the design process and providing opportunities for design is at the core of engineering/technology education. The design process is a key feature of technological literacy, and design is the most represented element within "Standards for Technological Literacy" (ITEA/ITEEA 2000, 2002/2007; Lewis, 2005; Wicklein, 2006).…
Descriptors: Design, Elementary Secondary Education, STEM Education, Engineering Education
Lyle, Keith B.; Bego, Campbell R.; Hopkins, Robin F.; Hieb, Jeffrey L.; Ralston, Patricia A. S. – Educational Psychology Review, 2020
Retrieving information from memory increases the likelihood the information will be remembered later. The strategic use of retrieval to enhance memory is known as retrieval practice. Teachers can exert considerable control over students' retrieval practice, dictating when and how much students practice. Laboratory research has shown that retention…
Descriptors: Recall (Psychology), Memory, Teaching Methods, Retention (Psychology)
Mahboobin, Arash; Clark, Renee M. – Journal of Curriculum and Teaching, 2020
Through reflection, learning experiences that students most-frequently valued during open-ended, scaffolded problem solving in a bioengineering two-course sequence were identified in this study. Reflective knowledge of this type can inform instructors in orchestrating experiences to scaffold problem solving of this kind and were useful in directly…
Descriptors: Problem Solving, Scaffolding (Teaching Technique), Engineering Education, Learning Experience
Mahajan, Rashima; Bansal, Dipali – Journal of Education, 2023
The identification and development of efficient assessment and evaluation procedures (Performance Metrics) is crucial for analyzing Student Outcome attainment in Engineering Programs. The present paradigm shift in the education system has diverted the focus from teacher-centric approach to learner-centric approach. It involves the active…
Descriptors: Engineering Education, Outcomes of Education, Student Centered Learning, Experiential Learning
Carranza Rogerio, Brenda; Yan, Yu; Cooper, Eric Wallace – International Journal of Technology in Education, 2023
The growing integration of technology into education, particularly in the STEM fields, has tended to focus on its objective advantages, ignoring its affective potential. To explore this potential, based on some principles of "Kansei/Affective Engineering," an initial analysis was conducted considering 501 interventions in a conversation…
Descriptors: Affective Behavior, Feedback (Response), STEM Education, Electronic Learning
Ehsan, Hoda; Quintana-Cifuentes, Jenny P.; Purzer, Senay; Rehmat, Abeera P. – International Journal of Education in Mathematics, Science and Technology, 2023
Over the last two decades, a remarkable number of studies have examined the role of engineering education in supporting knowledge and skill building among children. In this paper, we present a synthesis of this literature to evaluate the added value of pre-college engineering design experiences at the elementary level, and ways researchers have…
Descriptors: Design, Learner Engagement, Learning Processes, Databases
Rolland, S. A.; Jones, J. W.; Bunting, G. – European Journal of Engineering Education, 2023
Year-in-industry schemes provide new or enhanced skills beyond the academic environment, a context for consolidation for the academic skills and a maturity in the approach to subsequent studies. The present work aims to quantify the impact of the year in industry placement scheme on academic outcomes for engineering students according to whether…
Descriptors: Engineering Education, Academic Achievement, Outcomes of Education, Job Placement

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