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Pakman, Aylin; Pakman, Nabi; Samur, Yavuz – Turkish Online Journal of Educational Technology - TOJET, 2023
This study is important because it deals with 21st century skills and current techniques in the field of educational technology and the studies in this field are limited in the literature. The purpose of this study is to determine the effects of coding, robotics, 3D design and game design education on problem solving and reflective thinking skills…
Descriptors: 21st Century Skills, Coding, Robotics, Design
Baichang Zhong; Xiaofan Liu; Shuiyan Huang – Technology, Pedagogy and Education, 2025
While pair learning (PL) is considered a potential method in STEM education including robotics education (RE), the question of how to pair students for superior learning effects remains. Current grouping strategies for PL in RE are constrained by fixed grouping (FG) and short of attention to dynamic grouping (DG). Therefore, this study aims to…
Descriptors: Robotics, Cooperative Learning, Comparative Analysis, Computer Science Education
Sisman, Burak; Kucuk, Sevda; Ozcan, Neslihan – Journal of Computer Assisted Learning, 2022
Background: Educational robotics (ER) is a means of teaching technology and engineering to students that offers an active learning environment by encouraging them to create meaningful and unique products. ER also gives students the opportunity to work collaboratively. Objectives: In this study, elementary school students' behavioral patterns were…
Descriptors: Elementary School Students, Student Behavior, Behavior Patterns, Cooperative Learning
Lottero-Perdue, Pamela S.; Settlage, John – Journal of Pre-College Engineering Education Research, 2021
The broad case being made in this paper is that recognizing student assets--rather than focusing on deficits--is essential for making engineering education more equitable. The paper begins with our exploration of an epistemic practice of engineering, ''making tradeoffs,'' as enacted by kindergartners after experiencing design failure and during…
Descriptors: Engineering Education, Empathy, Equal Education, Epistemology
Yang, Yuqin; Long, Yanwen; Sun, Daner; Van Aalst, Jan; Cheng, Sanyin – British Journal of Educational Technology, 2020
This study explored how educational robotics (ER) was implemented in classrooms to foster creativity among elementary school students and identified challenges associated with its implementation. Twenty-six teachers at different elementary schools were interviewed. In-depth teacher interviews and grounded theory were used to collect and analyze…
Descriptors: Creativity, Creative Development, Technology Uses in Education, Robotics
Mioduser, David; Kuperman, Asi – Design and Technology Education, 2020
Despite the fact that the sophisticated technologies are a substantial component of children's everyday environment, of the space within which they act, play and learn--the world of complex technological systems (their characteristics, and the knowledge and skills involved in operating, designing and programming them) is almost ignored in the…
Descriptors: Kindergarten, Robotics, Information Technology, Programming
Hsiao, Hsien-Sheng; Lin, Yi-Wei; Lin, Kuen-Yi; Lin, Chien-Yu; Chen, Jheng-Han; Chen, Jyun-Chen – Interactive Learning Environments, 2022
This study used robot-based practices to develop an activity that incorporated the 6E model. The sixth-grade students learned interdisciplinary knowledge about how to use Arduino electronic components, microcontrollers, and hands-on tools to make a "Crab Robot." In addition, the students learned how to use Scratch programming language to…
Descriptors: Robotics, Grade 6, Interdisciplinary Approach, Programming
Ricca, Bernard P.; Bowers, Nicole; Jordan, Michelle E. – Journal of Experimental Education, 2020
Research around problem solving in collaborative groups has made progress, but several conceptual and methodological issues remain. These issues include the appropriate choices of units of analysis; the ability of current theoretical sets of macrocognition codes to capture group dynamics; detection and identification of potentially emergent…
Descriptors: Systems Approach, Group Dynamics, Problem Solving, Cooperative Learning
Deniz, Hasan; Kaya, Erdogan; Yesilyurt, Ezgi; Newley, Anne; Lin, Emily – Journal of Learning and Teaching in Digital Age, 2021
Science, Technology, Engineering, and Mathematics (STEM) entered the general lexicon in the United States within the last ten years. Both Presidents Obama and Trump emphasized STEM education as a priority for the United States because the number of college graduates with STEM degrees is perceived as an important factor contributing to the global…
Descriptors: STEM Education, Science Programs, Robotics, Interdisciplinary Approach
Edelen, Daniel; Bush, Sarah B.; Nickels, Megan – Science and Children, 2019
Teachers have the daunting task of preparing students for a future that they cannot predict. In an age of information where students have the world quite literally at their fingertips, and with the ever-growing momentum of integrated science, technology, engineering, and mathematics (STEM), it is not enough that students experience STEM subjects…
Descriptors: Teaching Methods, STEM Education, Academic Achievement, Interdisciplinary Approach
McLean, Mandy; McBeath, Jasmine Kyle; Susko, Tyler; Harlow, Danielle Boyd; Bianchini, Julie – AERA Online Paper Repository, 2018
There is a growing demand in the US for more trained engineers, yet attrition rates from university engineering programs are high and diversity in engineering is low. Few resources have been dedicated to the improvement of freshman engineering courses even though freshman students have the highest rates of attrition. Through a synthesis of the…
Descriptors: Service Learning, Engineering Education, Design, Active Learning
Newton, Kristie J.; Leonard, Jacqueline; Buss, Alan; Wright, Christopher G.; Barnes-Johnson, Joy – Journal of Research on Technology in Education, 2020
This mixed methods study examined how engagement in robotics and game design influenced students' self-efficacy, STEM attitudes, and computational thinking (CT) skills. Predominantly African-American students engaged in engineering and computer science tasks during informal learning environments. Results revealed students' self-efficacy scores on…
Descriptors: Robotics, STEM Education, Self Efficacy, Student Attitudes
McLean, Mandy; Nation, Jasmine M.; Spina, Alexis; Susko, Tyler; Harlow, Danielle; Bianchini, Julie – Journal of Pre-College Engineering Education Research, 2020
Research suggests that, to narrow the gender gap in engineering, we should focus on helping young girls identify with engineering both because gendered attitudes emerge around kindergarten and because identity is more predictive than performance on persistence in the field. This qualitative study sought to understand the impact of collaborative…
Descriptors: Gender Differences, Females, Disproportionate Representation, Engineering Education
Leonard, Jacqueline; Mitchell, Monica; Barnes-Johnson, Joy; Unertl, Adrienne; Outka-Hill, Jill; Robinson, Roland; Hester-Croff, Carla – Journal of Teacher Education, 2018
This article examines teacher preparation and teacher change in engineering and computer science education. We examined culturally responsive teaching self-efficacy (CRTSE), culturally responsive teaching outcome expectancy (CRTOE) beliefs, and attitudes toward computational thinking (CT) as teachers participated in one of three treatment groups:…
Descriptors: Computation, Logical Thinking, Robotics, Educational Games
Ucgul, Memet; Cagiltay, Kursat – International Journal of Technology and Design Education, 2014
The aim of this study is to explore critical design issues for educational robotics training camps and to describe how these factors should be implemented in the development of such camps. For this purpose, two robotics training camps were organized for elementary school students. The first camp had 30 children attendees, and the second had 22. As…
Descriptors: Design, Robotics, Elementary School Students, Interviews
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