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Showing 1 to 15 of 21 results Save | Export
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Williams-Duncan, Omah; Raven, Sara – Science and Children, 2020
Electricity is an integral part of daily life. Children, like adults, infer the effects of electrical conductivity. They see the illumination of a lightbulb or feel the emission of warmth from an electric stovetop but may not understand the role electrical circuits play. Focusing on the concrete aspects of electrical energy transfer helps improve…
Descriptors: Science Instruction, Energy, Scientific Concepts, Elementary School Science
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Lott, Kimberly; Urbanek-Carney, Sara; Mitchell, April – Science and Children, 2019
Robotics is emerging as an effective strategy for bridging the gap between technology and engineering design in early childhood classrooms (Bers, Seddighin, and Sullivan 2013). Using a science, technology, engineering and mathematics (STEM) grant received from the authors' school, they purchased a KIBO-18 set from KinderLab Robotics…
Descriptors: Robotics, STEM Education, Teaching Methods, Programming
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Dolecheck, Suzann Hagan; Ewers, Timothy – Journal of Extension, 2017
In this article, we explain an organizational system for the new LEGO Education WeDo 2.0 Core Set used in 4-H robotics; in school enrichment, afterschool, and other youth robotics programs; and by hobbyists. The system presented is for organizing WeDo parts into a translucent parts tray that includes part names and numbers. The article provides…
Descriptors: Robotics, Youth Programs, Systems Building, Hands on Science
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Lottero-Perdue, Pamela; Grabia, Kathryn; Sandifer, Cody – Science and Children, 2017
In a kindergarten classroom, exclamations like "Oh no!" may be causes for concern. However, when the students in Mrs. Grabia's classroom shouted "Oh no!" and "Uh oh!" during an engineering-infused 5E lesson, it meant that a persistent little robot had pushed its way out of the fences they had created. It also meant…
Descriptors: Elementary School Science, Engineering, Kindergarten, Teaching Methods
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Edelen, Daniel; Bush, Sarah B.; Nickels, Megan – Science and Children, 2019
Because students have often been conditioned as passive learners and receivers of knowledge, it can be difficult for them to persevere in solving authentic problems. Nevertheless, teachers must persist in preparing students as problem solvers and critical thinkers. In an urban inner-city neighborhood school in the southeast, students embarked on a…
Descriptors: Elementary School Students, Elementary School Science, Grade 3, Grade 4
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Bianchi, Lynne – Primary Science, 2017
Tinker Tailor Robot Pi (TTRP) is an innovative curriculum development project, which started in September 2014. It involves in-service primary and secondary teachers, university academic engineers, business partners and pupils at Key Stages 1, 2 and 3 (ages 5-14). The focus of the work has been to explore how a pedagogy for primary engineering…
Descriptors: Curriculum Development, Elementary School Teachers, Secondary School Teachers, Partnerships in Education
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Bohland, Cindy; Collver, Michael; Lally, David; Schmale, David G., III – Science Teacher, 2015
Autonomous vehicles are poised to become part of our everyday lives. Scientists are now studying ways to integrate similar robotic technology into living organisms. Insect and rodent cyborgs could one day be used for military intelligence, earthquake rescue operations, and as models for neurological studies. As this technology spreads, we need to…
Descriptors: Science Instruction, Hands on Science, Robotics, Technology Uses in Education
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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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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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Suescun-Florez, Eduardo; Iskander, Magued; Kapila, Vikram; Cain, Ryan – European Journal of Engineering Education, 2013
This paper reports on the results of several geotechnical engineering-related science activities conducted with elementary-school students. Activities presented include soil permeability, contact stress, soil stratigraphy, shallow and deep foundations, and erosion in rivers. The permeability activity employed the LEGO NXT platform for data…
Descriptors: Science Education, Engineering Education, Science Activities, Elementary School Science
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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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Gillman, Joan – Science and Children, 2013
To capture students' excitement and engage their interest in rocketships and visiting planets in the solar system, the author designed lessons that give students the opportunity to experience the joys and challenges of developing straw rockets, and then observing which design can travel the longest distance. The lessons are appropriate for…
Descriptors: Astronomy, Lesson Plans, Grade 4, Grade 5
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Bianco, Andrew S. – Technology and Engineering Teacher, 2014
All technology educators have favorite lessons and projects that they most desire to teach. Many teachers might ask why teach robotics when there are many other concepts to cover with the students? The answer to this question is to engage students in science, technology, engineering, and math (commonly referred to as STEM) concepts. In order for…
Descriptors: Robotics, Class Activities, Classroom Techniques, Technology Education
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Bennie, Fiona; Corbett, Charlotte; Palo, Angela – Odyssey: New Directions in Deaf Education, 2015
This article describes an after-school program at the Horace Mann School for the Deaf (HMS), the oldest public day school for deaf students in the United States, where almost half of the student body imagined and created bridge and robotic machines. The Deaf Robotics Engineering and Math Team, or the DREAM Team club, included HMS students in…
Descriptors: After School Programs, Robotics, Deafness, Program Descriptions
Gura, Mark – Learning & Leading with Technology, 2012
Lego robotics is engaging, hands-on, and encompasses every one of the NETS for Students. It also inspires a love of science, technology, engineering, and mathematics (STEM) and provides the experience students need to use digital age skills in the real world. In this article, the author discusses how schools get involved with Lego Robotics and…
Descriptors: Student Participation, Robotics, Educational Technology, Learning Motivation
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