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Rees Lewis, Daniel G.; Carlson, Spencer E.; Riesbeck, Christopher K.; Gerber, Elizabeth M.; Easterday, Matthew W. – Journal of Engineering Education, 2023
Background: To create design solutions experienced engineering designers engage in expert iterative practice. Researchers find that students struggle to learn this critical engineering design practice, particularly when tackling real-world engineering design problems. Purpose/Hypothesis: To improve our ability to teach iteration, this study…
Descriptors: Engineering, Design, Coaching (Performance), Problem Based Learning
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Tejaswini Dalvi; Kristen Wendell – School Science and Mathematics, 2024
Insights on students' own authentic design practices--nascent design practices without much adult guidance--are crucial to informing responsive facilitation of engineering design tasks. This study unpacks how elementary students interpret teacher given information about a design task, and interact with each other and given resources, to traverse a…
Descriptors: Elementary School Students, Navigation, Engineering, Design
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Jonathan Steinberg; Carol Forsyth; Jessica Andrews-Todd – ETS Research Report Series, 2024
In a study of 370 postsecondary students in electronics, engineering, and other science classes, we investigated collaborative problem-solving (CPS) skills that best predict performance at individual levels in an online electronics environment. The results showed that while monitoring was a consistent predictor across levels, other skills such as…
Descriptors: Problem Solving, Predictor Variables, Performance, Task Analysis
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Jung, Jiyoon; Mercier, Emma – Educational Technology Research and Development, 2023
In response to the criticism that theory-driven researcher-developed learning tools lack scalability and sustainability in the real world, the design-based implementation research (DBIR) approach was proposed. However, few empirical studies actually describe what a DBIR study looks like and how it can inform readers about learning tool design. We…
Descriptors: Engineering Education, Educational Research, Program Implementation, Interdisciplinary Approach
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Sara Schley; Mel Chua; Joseph Le Doux; Veronica van Montfrans; Todd Fernandez – Biomedical Engineering Education, 2023
Human bodies vary widely: height, weight, blood volume, handedness, strength, and variations from disabilities, trauma, genetics, etc. Engineers must be trained to include human variance when designing human-interactive systems. Typically, this is not incorporated into mathematical and modeling focused courses. In the spring of 2019, one of three…
Descriptors: Human Body, Biomechanics, Cooperative Learning, Problem Solving
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Kakan Dey; Md Tawhidur Rahman; Abhik Roy; V. Dimitra Pyrialakou; David Martinelli; Julia Daisy Fraustino; John Deskins; Karen E. Rambo-Hernandez; L. Christopher Plein – Journal of Civil Engineering Education, 2024
Engineering students require nontechnical skill sets to combat the 21st century's complex engineering challenges in addition to possessing technical skills. To provide multidisciplinary experience to undergraduate engineering students and to study the formation of engineers, a research team at West Virginia University offered a multidisciplinary…
Descriptors: Engineering Education, Undergraduate Students, Interdisciplinary Approach, Social Sciences
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Cynthia M. D'Angelo; Robin Jephthah Rajarathinam – British Journal of Educational Technology, 2024
This descriptive study focuses on using voice activity detection (VAD) algorithms to extract student speech data in order to better understand the collaboration of small group work and the impact of teaching assistant (TA) interventions in undergraduate engineering discussion sections. Audio data were recorded from individual students wearing…
Descriptors: Undergraduate Students, Engineering Education, Teaching Assistants, Cooperative Learning
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Ghorashi, Bahman – Chemical Engineering Education, 2023
Due to the structured format of most engineering courses, the number of opportunities for engineering students to view matters differently from the traditional ways is limited. Therefore, a mandatory requirement was introduced into three engineering courses for students to propose an out of the ordinary solution to certain technical problems,…
Descriptors: College Students, Engineering Education, Creativity, Assignments
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Ahmet Erol – Education and Information Technologies, 2024
STEM education, which means integrated thinking, attracts the attention of early childhood educators and researchers. Engineering education, which naturally serves STEM integration, contributes to children's problem-solving skills with failure analysis and continual improvement habits of mind. Children need adult support in this process due to…
Descriptors: STEM Education, Early Childhood Education, Problem Solving, Teacher Role
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Kynigos, Chronis; Diamantidis, Dimitris – ZDM: Mathematics Education, 2022
We discuss classroom activity comprised of small groups of students collaboratively tinkering with programs of dynamically manipulable figural models, posing problems regarding their mathematical properties and behaviors. We analyzed data from students' discourse taken from two classroom interventions employing a framework of creative mathematical…
Descriptors: Creativity, Engineering, Mathematical Models, Programming
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Navneet Kaur; Chandan Dasgupta – Journal of the Learning Sciences, 2024
Background: Dealing with uncertainties is inherent in the engineering design process and often poses challenges for young learners. This necessitates providing learners with adequate support to navigate their uncertainties effectively. However, achieving this requires a deeper understanding of the factors influencing learners' uncertainty…
Descriptors: Epistemology, Cooperative Learning, Engineering Education, Design
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Brayan Díaz; Daniela Luengo-Aravena; Pia Barahona; Patricio Felmer – Journal of Engineering Education, 2025
Background: We examine the efficacy of an online collaborative problem-solving (CPS) teaching approach in academic performance and student connections with other peers, among first-year engineering calculus students at a Latin American university. Our research uses communities of practice (CoP) to emphasize the social nature of learning and the…
Descriptors: Electronic Learning, Cooperative Learning, Problem Solving, Mathematics Skills
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Abebayehu Yohannes; Hsiu-Ling Chen – Education and Information Technologies, 2024
Flipped learning has attracted increasing attention in all grade levels in recent years and becomes an alternative to the traditional model. Even though there is a large body of research on flipped classrooms, they usually ignore the learning theories that were used to construct the curriculum and instead concentrate on the degree to which using…
Descriptors: Flipped Classroom, Mathematics Education, Engineering Education, Conventional Instruction
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Anchalee Sangarwut; Meena Polsuwan – Higher Education Studies, 2025
The purposes of the current study were to examine the 5C social engineering model-based training program on Surat Thani Rajabhat University students and Khun Thale Subdistrict residents' problem solving and adaptability and to examine the participants' satisfaction learning with the 5C social engineering model-based training program. A training…
Descriptors: Foreign Countries, Curriculum Development, Engineering Education, Competency Based Education
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Mabley, Seren; Ventura-Medina, Esther; Anderson, Anthony – European Journal of Engineering Education, 2020
Future global challenges that engineering graduates face have placed demands on engineering education and how graduates develop competency in collaborative problem-solving. Such demand has seen an increase in the use of pedagogies like problem-based learning (PBL) that provide opportunities for developing collaborative problem-solving skills. PBL…
Descriptors: Teamwork, Problem Based Learning, Engineering Education, Cooperative Learning
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