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50 Years of ERIC
50 Years of ERIC
The Education Resources Information Center (ERIC) is celebrating its 50th Birthday! First opened on May 15th, 1964 ERIC continues the long tradition of ongoing innovation and enhancement.

Learn more about the history of ERIC here. PDF icon

Showing 1 to 15 of 665 results
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Okita, Sandra Y. – British Journal of Educational Technology, 2014
This study examined whether developing earlier forms of knowledge in specific learning environments prepares students better for future learning when they are placed in an unfamiliar learning environment. Forty-one students in the fifth and sixth grades learned to program robot movements using abstract concepts of speed, distance and direction.…
Descriptors: Robotics, Electronic Learning, Programming, Learning Processes
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Bekele, Esubalew; Crittendon, Julie A.; Swanson, Amy; Sarkar, Nilanjan; Warren, Zachary E. – Autism: The International Journal of Research and Practice, 2014
It has been argued that clinical applications of advanced technology may hold promise for addressing impairments associated with autism spectrum disorders. This pilot feasibility study evaluated the application of a novel adaptive robot-mediated system capable of both administering and automatically adjusting joint attention prompts to a small…
Descriptors: Robotics, Young Children, Autism, Assistive Technology
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Barker, Bradley S.; Nugent, Gwen; Grandgenett, Neal F. – International Journal of Technology and Design Education, 2014
In the United States and many other countries there is a growing emphasis on science, technology, engineering and mathematics (STEM) education that is expanding the number of both in-school and out-of-school instructional programs targeting important STEM outcomes. As instructional leaders increasingly train teachers and facilitators to undertake…
Descriptors: Fidelity, Program Implementation, STEM Education, Alignment (Education)
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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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Yuen, Timothy T.; Boecking, Melanie; Stone, Jennifer; Tiger, Erin Price; Gomez, Alvaro; Guillen, Adrienne; Arreguin, Analisa – Journal of STEM Education: Innovations and Research, 2014
Robotics provide the opportunity for students to bring their individual interests, perspectives and areas of expertise together in order to work collaboratively on real-world science, technology, engineering and mathematics (STEM) problems. This paper examines the nature of collaboration that manifests in groups of elementary and middle school…
Descriptors: STEM Education, Engineering Education, Robotics, Middle School Students
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Sallee, Jeff; Peek, Gina G. – Journal of Extension, 2014
Extension and 4-H youth development programs are addressing a shortage of scientists, engineers, and other related professionals by promoting science, technology, engineering, and math (STEM). This case study illustrates how the Oklahoma 4-H Youth Development program trained youth-adult teams to design and implement STEM projects. The STEM…
Descriptors: Extension Education, STEM Education, Case Studies, Youth Programs
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Hwang, Wu-Yuin; Wu, Sheng-Yi – Interactive Learning Environments, 2014
Learning how to carry out collaborative tasks is critical to the development of a student's capacity for social interaction. In this study, a multi-robot system was designed for students. In three different scenarios, students controlled robots in order to move dice; we then examined their collaborative strategies and their behavioral…
Descriptors: Robotics, Cooperative Learning, Elementary School Students, Cooperation
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Burton, Bill – Science and Children, 2014
In order to prepare students to become the next innovators, teachers need to provide real-world challenges that allow children to exercise their innovation muscles. Innovation starts with a problem and innovators work to solve a problem by planning, creating, and testing. The real-world innovation process does not happen on a worksheet, and it…
Descriptors: Science Instruction, Engineering, Robotics, Elementary School Science
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Tanner, Patricia; Karas, Carly; Schofield, Damian – Journal of Information Technology Education: Research, 2014
This study investigates the classroom integration of an innovative technology, augmented reality. Although the process of adding new technologies into a classroom setting can be daunting, the concept of augmented reality has demonstrated the ability to educate students and to assist with their comprehension of a procedural task. One half of the…
Descriptors: Computer Simulation, Handheld Devices, Computer Uses in Education, Robotics
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Kalajian, Peter; Makarova, Maria – Physics Teacher, 2014
Humans have evolved to follow their intuition, but as any high school physics teacher knows, relying on intuition often leads students to predict outcomes that are at odds with evidence. Over the years, we have attempted to make this intuition-outcome disparity a central theme running throughout our physics classes, with limited success. Part of…
Descriptors: Science Instruction, Physics, Secondary School Science, High Schools
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Sahin, Alpaslan; Ayar, Mehmet C.; Adiguzel, Tufan – Educational Sciences: Theory and Practice, 2014
This study explores the characteristics of after-school program activities at a charter school in the Southeast US highlighting students' experiences with and gains from these after-school program activities. A qualitative case study design was employed to understand students' views and opinions regarding the activities and their…
Descriptors: After School Programs, Charter Schools, Program Effectiveness, Qualitative Research
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Groome, Meghan; Rodríguez, Linda M. – Afterschool Matters, 2014
You have to stick with it. It takes time, patience, trial and error, failure, and persistence. It is almost never perfect or finished, but, with a good team, you can build something that works. These are the lessons youth learn when building a robot, as many do in the out-of-school time (OST) programs supported by the initiative described in this…
Descriptors: STEM Education, After School Programs, Robotics, Science Course Improvement Projects
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Lee, Kenneth T. H.; Sullivan, Amanda; Bers, Marina U. – Computers in the Schools, 2013
Research shows the importance of social interaction between peers in child development. Although technology can foster peer interactions, teachers often struggle with teaching with technology. This study examined a sample of (n = 19) children participating in a kindergarten robotics summer workshop to determine the effect of teaching using a…
Descriptors: Social Networks, Robotics, Kindergarten, Child Development
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Akin, H. Levent; Meriçli, Çetin; Meriçli, Tekin – Computer Science Education, 2013
Teaching the fundamentals of robotics to computer science undergraduates requires designing a well-balanced curriculum that is complemented with hands-on applications on a platform that allows rapid construction of complex robots, and implementation of sophisticated algorithms. This paper describes such an elective introductory course where the…
Descriptors: Robotics, Computer Science Education, Undergraduate Study, Introductory Courses
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Mason, Raina; Cooper, Graham – Computer Science Education, 2013
This paper reports on a series of introductory programming workshops, initially targeting female high school students, which utilised Lego Mindstorms robots. Cognitive load theory (CLT) was applied to the instructional design of the workshops, and a controlled experiment was also conducted investigating aspects of the interface. Results indicated…
Descriptors: Programming, Introductory Courses, Cognitive Processes, Difficulty Level
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