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Showing all 11 results Save | Export
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Cecilia Madero-Gonzalez; Jesus Vazquez-Hernandez; Fernando Gonzalez Aleu – Quality Assurance in Education: An International Perspective, 2025
Purpose: This study aims to examine the impact of gamification on the five dimensions of meaningful learning (i.e. cooperative, active, authentic, constructive and intentional learning) and undergraduate student performance taking online lessons. Design/methodology/approach: Therefore, the authors conducted an experiment among undergraduate…
Descriptors: Gamification, Undergraduate Students, Online Courses, Engineering Education
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Campbell, Corbin M. – Journal of College Science Teaching, 2022
Based on the largest multi-institutional observational study of undergraduate courses in the United States, this article describes exemplar teaching practices in engineering courses as an interdisciplinary science field. The College Educational Quality (CEQ) research project studied 587 courses in nine different U.S. colleges and universities.…
Descriptors: Instructional Effectiveness, Teaching Methods, STEM Education, College Instruction
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Kouo, Jennifer; Dalal, Medha; Lee, Eunsil; Berhane, Bruk; Emiola-Owolabi, Olushola; Ladeji-Osias, Jumoke; Beauchamp, Cheryl; Reid, Kenneth; Klein-Gardner, Stacy; Carberry, Adam – Journal of Pre-College Engineering Education Research, 2023
Engineering for US All (e4usa) is a National Science Foundation-funded first-of-its-kind initiative aimed at making engineering more inclusive and accessible to underrepresented populations. The "for us all" mission of e4usa encompasses both students and teachers. Paramount to the success of e4usa was the construction of professional…
Descriptors: Teachers, Engineering Education, Expertise, Prior Learning
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Hardebolle, Cécile; Verma, Himanshu; Tormey, Roland; Deparis, Simone – Journal of Engineering Education, 2022
Background: Research shows that active pedagogies could play an important role in achieving more equitable outcomes for diverse groups of students in Science, Technology, Engineering, and Mathematics (STEM). Although flipped classes are a popular active methodology, there is a lack of high-quality studies assessing their impact in ecologically…
Descriptors: STEM Education, Flipped Classroom, Instructional Effectiveness, College Freshmen
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Davis, Elizabeth A., Ed.; Stephens, Amy, Ed. – National Academies Press, 2022
Starting in early childhood, children are capable of learning sophisticated science and engineering concepts and engage in disciplinary practices. They are deeply curious about the world around them and eager to investigate the many questions they have about their environment. Educators can develop learning environments that support the…
Descriptors: Science Education, Engineering Education, Scientific Concepts, Preschool Education
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Zhong, Baichang; Si, Qiuju – Journal of Educational Computing Research, 2021
Studies have indicated the importance of scaffolding in the problem-solving process, as well as the potential of integrating learning content into the troubleshooting tasks. However, few have explored in depth the learning process during troubleshooting via scaffolds while also taking students' cognitive load into account. To address this issue,…
Descriptors: Troubleshooting, Scaffolding (Teaching Technique), Instructional Effectiveness, Difficulty Level
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McCord, Rachel; Jeldes, Isaac – Computer Science Education, 2019
Background and Context: Flipped classrooms are becoming more widely adopted across engineering higher education contexts. In degree programs where enrollment is increasing and undergraduate curricula are packed with content, pedagogies that allow more time for actively participate in classroom activities are being highly sought after to aid in…
Descriptors: Computer Software, Computer Science Education, Blended Learning, Intervention
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Kaewunruen, Sakdirat – Education Sciences, 2019
Interactive learning technology is an emerging innovation for future communication-aided teaching and learning that could positively enhance students' engagement and intrinsic motivation. Due to the virtue of interactive communication, classrooms are now anticipated to enable a variety of interaction-based learning technologies with diverse…
Descriptors: Engineering Education, Case Studies, Transportation, Educational Technology
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Petrovic, Juraj; Pale, Predrag – Teaching in Higher Education, 2015
This paper aims to provide insight into various properties of live lectures from the perspective of sophomore engineering students. In an anonymous online survey conducted at the Faculty of Electrical Engineering and Computing, University of Zagreb, we investigated students' opinions regarding lecture attendance, inherent disadvantages of live…
Descriptors: Lecture Method, Student Attitudes, Synchronous Communication, Engineering Education
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Merrill, Chris; Custer, Rodney L.; Daugherty, Jenny; Westrick, Martin; Zeng, Yong – Journal of Technology Education, 2008
Through the efforts of National Center for Engineering and Technology Education (NCETE), three core engineering concepts within the realm of engineering design have emerged as crucial areas of need within secondary level technology education. These concepts are constraints, optimization, and predictive analysis (COPA). COPA appears to be at the…
Descriptors: Technology Education, Engineering Education, Concept Teaching, Scientific Concepts
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Reisslein, Jana; Atkinson, Robert K.; Seeling, Patrick; Reisslein, Martin – Learning and Instruction, 2006
This study examined the effectiveness of a computer-based environment employing three example-based instructional procedures (example-problem, problem-example, and fading) to teach series and parallel electrical circuit analysis to learners classified by two levels of prior knowledge (low and high). Although no differences between the…
Descriptors: Computer Assisted Instruction, Educational Environment, Equipment, Instructional Effectiveness