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Per Anderhag; Niklas Salomonsson; Andre Bürgers; Cesar Estay Espinola; Birgit Fahrman; Dana Seifeddine Ehdwall; Maria Sundler – International Journal of Technology and Design Education, 2024
During a relatively short period of time, programming has been implemented in the national curriculum of the compulsory school in Sweden. Since 2018, programming is a new content in the technology subject and the research field has discussed some of the challenges teachers and students, who generally have little experiences of programming, face…
Descriptors: Learning Strategies, Programming, Robotics, Technology Education
Hsu, Ting-Chia; Chen, Mu-Sheng – Research and Practice in Technology Enhanced Learning, 2022
This research explored the creative thinking, learning achievement, and engagement of students when they integrated the application of the personal audio classifier (PAC) into the competition of a computational thinking (CT) board game (i.e., the experimental group), or did not integrate it into the competition but only collaborated with peers to…
Descriptors: Learner Engagement, Robotics, Games, Computation
Bakke, Christine K. – ProQuest LLC, 2013
The purpose of this study is to examine whether participation in robotics provides opportunities for educational and professional skill development, significant enough to merit the recommendation of robotics courses as a part of mainstream curriculum offerings in K-12 schools. This non-experimental, mixed methods study examined current junior high…
Descriptors: Robotics, Junior High School Students, High School Students, Secondary Education
Flannery, Louise P.; Bers, Marina Umaschi – Journal of Research on Technology in Education, 2013
Young learners today generate, express, and interact with sophisticated ideas using a range of digital tools to explore interactive stories, animations, computer games, and robotics. In recent years, new developmentally appropriate robotics kits have been entering early childhood classrooms. This paper presents a retrospective analysis of one…
Descriptors: Developmentally Appropriate Practices, Robotics, Early Childhood Education, Programming
Slangen, Lou; van Keulen, Hanno; Gravemeijer, Koeno – International Journal of Technology and Design Education, 2011
This study investigates what pupils aged 10-12 can learn from working with robots, assuming that understanding robotics is a sign of technological literacy. We conducted cognitive and conceptual analysis to develop a frame of reference for determining pupils' understanding of robotics. Four perspectives were distinguished with increasing…
Descriptors: Robotics, Technological Literacy, Elementary School Students, Lesson Plans
Van Name, Barry – Tech Directions, 2012
There is a battlefield where no quarter is given, no mercy shown, but not a single drop of blood is spilled. It is an arena that witnesses the bringing together of high-tech design and manufacture with the outpouring of brute force, under the remotely accessed command of some of today's brightest students. This is the world of battling robots, or…
Descriptors: Females, Engineering, Computer Assisted Design, High School Students
Bers, Marina Umaschi; Seddighin, Safoura; Sullivan, Amanda – Journal of Technology and Teacher Education, 2013
Prior work has shown that early childhood educators demonstrate a lack of knowledge and understanding about technology and engineering, and about developmentally appropriate pedagogical approaches to bring those disciplines into the classrooms. This paper reports a study in which 32 early childhood educators participated in an intensive three-day…
Descriptors: STEM Education, Early Childhood Education, Knowledge Base for Teaching, Developmentally Appropriate Practices
Chin, Cheng; Yue, Keng – European Journal of Engineering Education, 2011
Difficulties in teaching a multi-disciplinary subject such as the mechatronics system design module in Departments of Mechatronics Engineering at Temasek Polytechnic arise from the gap in experience and skill among staff and students who have different backgrounds in mechanical, computer and electrical engineering within the Mechatronics…
Descriptors: Engineering Education, Computer Assisted Design, Problem Based Learning, Engineering
Wolff, Krister; Wahde, Mattias – International Journal of Teaching and Learning in Higher Education, 2010
In this paper, we summarize our experiences from teaching a course in humanoid robotics at Chalmers University of Technology in Goteborg, Sweden. We describe the robotic platform used in the course and we propose the use of a custom-built robot consisting of standard electronic and mechanical components. In our experience, by using standard…
Descriptors: Foreign Countries, Robotics, Science Instruction, Theory Practice Relationship
Sullivan, Florence; Lin, Xiadong – Journal of Interactive Learning Research, 2012
The purpose of this study is to examine the relationship of middle school students' perceptions of the ideal science student to their problem solving activity and conceptual understanding in the applied science area of robotics. Twenty-six 11 and 12 year-olds (22 boys) attending a summer camp for academically advanced students participated in the…
Descriptors: Technology Education, Statistical Analysis, Robotics, Problem Solving
Castledine, Alanah-Rei; Chalmers, Chris – Design and Technology Education, 2011
With the current curriculum focus on correlating classroom problem solving lessons to real-world contexts, are LEGO robotics an effective problem solving tool? This present study was designed to investigate this question and to ascertain what problem solving strategies primary students engaged with when working with LEGO robotics and whether the…
Descriptors: Foreign Countries, Problem Solving, Grade 6, Relevance (Education)
Levy, Sharona T.; Mioduser, David – International Journal of Technology and Design Education, 2008
This study investigates young children's perspectives in explaining a self-regulating mobile robot, as they learn to program its behaviors from rules. We explore their descriptions of a robot in action to determine the nature of their explanatory frameworks: psychological or technological. We have also studied the role of an adult's intervention…
Descriptors: Educational Theories, Young Children, Kindergarten, Robotics

Deal, Walter F., III – Technology Teacher, 1999
Describes a unit on robotics that includes problem solving, working together, and constructing and programming a robot. Provides students with an opportunity for critical thinking. (JOW)
Descriptors: Computers, Elementary Education, Programming, Robotics
Blank, Douglas; Kumar, Deepak; Meeden, Lisa; Yanco, Holly – Journal on Educational Resources in Computing, 2004
In this article we describe a programming framework called Pyro, which provides a set of abstractions that allows students to write platform-independent robot programs. This project is unique because of its focus on the pedagogical implications of teaching mobile robotics via a top-down approach. We describe the background of the project, its…
Descriptors: Learning Modules, Programming, Robotics, Models

Moore, Virginia S. – Technology Teacher, 1999
Describes an interdisciplinary unit on robotics that includes teaching parts of a circle, constructing and programming robots, and incorporating language arts. (JOW)
Descriptors: Computers, Elementary Education, Geometry, Language Arts
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