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Geist, Eugene – Childhood Education, 2016
Today's children need learning opportunities from cradle to career that build the knowledge and skills necessary to thrive in our interconnected and constantly changing world. This means putting 21st century skills, including creativity, innovation, critical thinking, and problem solving, at the center of learning, both in and out of school. As…
Descriptors: Coding, Programming, Robotics, Creativity
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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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Salom, Luz Gil; Monreal, Carmen Soler – International Journal of English Studies, 2009
The writer's strategy to combine the exposition of factual information with personal judgement and interaction with the reader has been analysed in a number of studies (Hunston, 1994; Hyland, 1998a, 1998b; Latour and Woolgar, 1979; Skelton, 1997). Myers' studies (1989, 1992) on the pragmatics of politeness in scientific articles analyse politeness…
Descriptors: Engineering Education, Engineering, Telecommunications, Pragmatics
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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
Post, Paul E.; And Others – Educational Technology, 1988
Provides an introduction to robotic technology, and describes current robot models. Three ways of using robots in education are discussed--as exemplars of other processes, as objects of instruction, and as prosthetic aids--and selection criteria are outlined. (17 references) (CLB)
Descriptors: Computer Uses in Education, Electromechanical Technology, Evaluation Criteria, Physical Disabilities
Barron, Brigid; Darling-Hammond, Linda – George Lucas Educational Foundation, 2008
The George Lucas Educational Foundation began in 1991 with an ambitious mission: to demonstrate how innovative learning environments in classrooms, supported by powerful new technologies, could revolutionize learning. As an organization founded by George Lucas, its members believed that the same benefits of technology that were transforming…
Descriptors: Computer Uses in Education, Experiential Learning, Active Learning, Cooperative Learning
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O'Haver, T. C. – Analytical Chemistry, 1991
Some commercially available software tools that have potential applications in the analytical chemistry curriculum are surveyed and evaluated. Tools for instruction, analysis and research, and courseware development are described. A list of the software packages, the compatible hardware, and the vendor's address is included. (KR)
Descriptors: Chemistry, College Science, Computer Simulation, Computer Software Evaluation
Howell, Richard – 1989
This 18-month pilot project, which ran from October 1, 1987 to March 31, 1989, developed a prototype robotic arm for educational use by students with severe orthopedic disabilities in the Columbus (Ohio) Public Schools. The developmental effort was intended first, to provide direct access to currently available instructional materials and, second,…
Descriptors: Computer Uses in Education, Demonstration Programs, Educational Media, Elementary Secondary Education