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Filiz Avci – Journal of Computer Assisted Learning, 2024
Background Study: Developments in science and technology, have created a need for technology-supported learning environments. Robotics is a technology widely used in science education. Collaborative learning is one of the methods used in education based on the constructivist approach. Using robotic and cooperative learning together is a new and…
Descriptors: Robotics, Teaching Methods, Academic Achievement, 21st Century Skills
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Lucas Vasconcelos; Cory Gleasman; Duygu Umutlu; ChanMin Kim – Journal of Science Education and Technology, 2024
Science teachers have been urged to use emerging technologies, such as robots, in ways that empower K-12 students as active participants responsible for their learning and knowledge development within the scientific domain. And yet, little is known about whether the use of robots effectively supports students' epistemic agency in science learning.…
Descriptors: Robotics, Science Instruction, Teaching Methods, Video Technology
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Cho, Eunji; Lee, Kyunghwa; Cherniak, Shara; Jung, Sung Eun – Technology, Knowledge and Learning, 2017
Drawing on Latour's (Reassembling the social: an introduction to actor--network-theory, Oxford University Press, New York, 2005), this manuscript discusses a study of a robotics class in a public, Title I elementary school. Compared with theoretical frameworks (e.g., constructivism and constructionism) dominant in the field of early childhood…
Descriptors: Robotics, Man Machine Systems, Instructional Materials, Science Activities
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Baek, Youngkyun; Wang, Sasha; Yang, Dazhi; Ching, Yu-Hui; Swanson, Steve; Chittoori, Bhaskar – European Journal of STEM Education, 2019
This study, a sub-study of a National Science Foundation (NSF) funded research project, applies a modified strategy of the U[superscript 2]MC for an eight-week afterschool robotics curriculum to promote upper elementary students' computational thinking in the second grade. Twenty-one students in second grade participated in a Life on Mars project…
Descriptors: Grade 2, Robotics, Elementary School Students, Elementary School Science
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Deal, Walter F., III; Hsiung, Steve C. – Technology and Engineering Teacher, 2017
Sensors of all kinds play significant roles in the way that we use and interact with technological devices today. Smartphones, household appliances, automobiles, and other products that we use every day incorporate many different kinds of sensors. While the sensors are hidden from view in the products, appliances, and tools that we use, they…
Descriptors: Engineering Education, Engineering Technology, Robotics, Electronic Equipment
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Roman, Harry T. – Technology and Engineering Teacher, 2014
Roadways are literally soaked with petrochemical byproducts, oils, gasoline, and other volatile substances that eventually run off into sewers and end up in rivers, waterways, and other undesirable places. Can the roads be cleaned of these wastes, with their proper disposal? Can vehicles, robots, or other devices be designed that could be driven…
Descriptors: Sanitation, Wastes, Fuels, Motor Vehicles
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Scott, Michael James; Counsell, Steve; Lauria, Stanislao; Swift, Stephen; Tucker, Allan; Shepperd, Martin; Ghinea, Gheorghita – IEEE Transactions on Education, 2015
Computer programming is notoriously difficult to learn. To this end, regular practice in the form of application and reflection is an important enabler of student learning. However, educators often find that first-year B.Sc. students do not readily engage in such activities. Providing each student with a programmable robot, however, could be used…
Descriptors: Robotics, Introductory Courses, Programming, Educational Practices
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Worker, Steven M.; Smith, Martin H. – Afterschool Matters, 2014
A wide variety of out-of-school time (OST) programs across the U.S. offer science education opportunities that cover many scientific disciplines and use diverse pedagogical practices (National Research Council [NRC], 2009). However, to improve youth's scientific literacy, OST educators need to "have the disposition and repertoire of practices…
Descriptors: After School Programs, Science Education, Science Process Skills, Skill Development
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Cuperman, Dan; Verner, Igor M. – International Journal of Technology and Design Education, 2013
This paper considers an approach to studying issues in technology and science, which integrates design and inquiry activities towards creating and exploring technological models of scientific phenomena. We implemented this approach in a context where the learner inquires into a biological phenomenon and develops its representation in the form of a…
Descriptors: Biological Sciences, Robotics, Middle School Students, Preservice Teachers
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Datteri, Edoardo; Zecca, Luisa; Laudisa, Federico; Castiglioni, Marco – Themes in Science and Technology Education, 2013
Educational robotics laboratories typically involve building and programming robotic systems to perform particular tasks or solve problems. In this paper we explore the potential educational value of a form of robot-supported educational activity that has been little discussed in the literature. During these activities, primary school children are…
Descriptors: Science Education, Educational Technology, Robotics, Influence of Technology
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Sheikh, Muntaha; Fulbright, Mark; Hademenos, George – Physics Teacher, 2011
Project-based learning is a research-based instructional tool that has proven to be effective in all secondary curricular disciplines, particularly in the areas of science, technology, engineering, and mathematics (STEM). A project is an applied activity, often hands-on, where the students are challenged to successfully address a problem. In many…
Descriptors: Student Projects, Active Learning, Problem Solving, STEM Education
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Ayar, Mehmet C. – Educational Sciences: Theory and Practice, 2015
The purpose of this study is to present students' experiences, interest in engineering, and personal narratives while participating in a robotics summer camp in a metropolitan city in Turkey. In this study, I used qualitative data collection methods such as interviews, field notes, and observations. I used the four principles of Engle and Conant…
Descriptors: Foreign Countries, Engineering Education, Design, Vocational Interests
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Williams, Douglas; Ma, Yuxin; Prejean, Louise – Journal of Computers in Mathematics and Science Teaching, 2010
Educational robotics activities are gaining in popularity. Though some research data suggest that educational robotics can be an effective approach in teaching mathematics, science, and engineering, research is needed to generate the best practices and strategies for designing these learning environments. Existing robotics activities typically do…
Descriptors: Student Attitudes, Robotics, Vignettes, Science Course Improvement Projects
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Williams, Keeshan; Igel, Irina; Poveda, Ronald; Kapila, Vikram; Iskander, Magued – Advances in Engineering Education, 2012
This paper presents a series of illustrative LEGO Mindstorms-based science and math activities, developed under an NSF GK-12 Fellows project, for elementary, middle, and high school grades. The activities, developed by engineering and science graduate Fellows in partnership with K-12 teachers, are grade appropriate, address pertinent learning…
Descriptors: Science Instruction, Mathematics Instruction, Elementary School Science, Secondary School Science
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Mitnik, Ruben; Recabarren, Matias; Nussbaum, Miguel; Soto, Alvaro – Computers & Education, 2009
Graphing is a key skill in the study of Physics. Drawing and interpreting graphs play a key role in the understanding of science, while the lack of these has proved to be a handicap and a limiting factor in the learning of scientific concepts. It has been observed that despite the amount of previous graph-working experience, students of all ages…
Descriptors: Graphs, Physics, Scientific Concepts, Robotics
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