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Sullivan, Florence R. – Journal of Research in Science Teaching, 2008
This paper reports the results of a study of the relationship of robotics activity to the use of science literacy skills and the development of systems understanding in middle school students. Twenty-six 11-12-year-olds (22 males and 4 females) attending an intensive robotics course offered at a summer camp for academically advanced students…
Descriptors: Advanced Students, Science Process Skills, Scientific Literacy, Robotics
Peer reviewedDeal, 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
Fischman, Josh – Chronicle of Higher Education, 2007
Enrollment in undergraduate computer-science programs has dipped all over the country, and among women it has almost vanished, dropping 70 percent between 2000 and 2005. Observers cite different reasons for the drop, including the dot-com bust a few years ago is one, but universities are beginning to agree on one cause that is within their…
Descriptors: Computers, Programming, Females, 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
Peer reviewedGeissler, Jason; Knott, Patrick J.; Vazquez, Matthew R.; Wright, John R., Jr. – Technology Teacher, 2004
Robots make a wonderful context for teaching students about many concepts important to technological literacy. They can provide an authentic context and produce high levels of motivation. According to Standards for Technological Literacy: Content for the Study of Technology (STL) (ITEA, 2000, 2002), there are six core concepts that should be…
Descriptors: Robotics, Computer Simulation, Computer Software, Technological Literacy
Peer reviewedMoore, 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
Norton, Stephen J.; McRobbie, Campbell J.; Ginns, Ian S. – Research in Science Education, 2007
Little research has been conducted on how students work when they are required to plan, build and evaluate artefacts in technology rich learning environments such as those supported by tools including flow charts, "Labview" programming and Lego construction. In this study, activity theory was used as an analytic tool to examine the social…
Descriptors: Programming Languages, Flow Charts, Problem Solving, Programming
Sampson, Demetrios G., Ed.; Ifenthaler, Dirk, Ed.; Isaías, Pedro, Ed. – International Association for Development of the Information Society, 2018
The aim of the 2018 International Association for Development of the Information Society (IADIS) Cognition and Exploratory Learning in the Digital Age (CELDA) conference was to address the main issues concerned with evolving learning processes and supporting pedagogies and applications in the digital age. There have been advances in both cognitive…
Descriptors: Learning Processes, Teaching Methods, Educational Technology, Technology Uses in Education
Peer reviewedSmith, Ruth Baynard – Gifted Child Today Magazine, 1994
Intermediate level academically talented students learn essential elements of computer programming by working with robots at enrichment workshops at Dwight-Englewood School in Englewood, New Jersey. The children combine creative thinking and problem-solving skills to program the robots' microcomputers to perform a variety of movements. (JDD)
Descriptors: Academically Gifted, Creative Thinking, Enrichment Activities, Intermediate Grades
Peer reviewedThangiah, Sam R.; Joshi, Sharad W. – Journal of Computers in Mathematics and Science Teaching, 1997
Outlines how a course in robotics can be taught at the undergraduate level with specific experiments that can be used for incremental learning in programming a mobile robot or by simulating the actions of a robot. Contains 14 references. (Author/ASK)
Descriptors: Course Descriptions, Educational Technology, Higher Education, Mathematics Education
Peer reviewedWagner, Susan Preston – Journal of Computing in Childhood Education, 1998
Examined whether use of robotics had a greater effect on elementary school children's achievement in science concepts and problem-solving abilities than use of battery-powered motorized manipulatives or no manipulatives. Found no significant difference in achievement from use of robotics except in programming language problem solving. Both…
Descriptors: Academic Achievement, Comparative Analysis, Computer Peripherals, Elementary Education
Beals, Laura; Bers, Marina – Journal of Interactive Learning Research, 2006
New technologies are slowly making it into the early childhood classroom; however, many families expose their children to these technologies before they encounter them in the formal school setting. Thus, many parents serve as the first teachers of technological literacy to their children. Or, as it is more frequent, parents and children learn…
Descriptors: Teaching Methods, Programming, Technological Literacy, Robotics
Chambers, Joan M.; Carbonaro, Mike – Journal of Technology and Teacher Education, 2003
Within a constructivist philosophy of learning, teachers, as students, are introduced to different perspectives of teaching with robotic technology while immersed in what Papert called a "constructionist" environment. Robotics allows students to creatively explore computer programming, mechanical design and construction, problem solving,…
Descriptors: Constructivism (Learning), Teacher Education Programs, Scientific Concepts, Programming

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