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Chertok, Michael R. – Technological Horizons in Education, 1989
Informal, museum-based technology education is discussed. A program in which family groups work together and learn robotics is described. Projected gains in technological and scientific literacy are highlighted. (CW)
Descriptors: Educational Technology, Family Involvement, Informal Education, Museums
Engineering Education, 1989
Lists articles and books published in 1987. Selects the following headings: administration, aeronautical, architectural, CAD/CAM, civil, computers, curriculum, electrical/electronics, industrial, industry/government/employers, instructional technology, laboratories, liberal studies, manufacturing, mechanical, minorities, research, robotics,…
Descriptors: Administration, Bibliographies, College Science, Computer Uses in Education
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Pace, Glennellen; Larson, Connie – Science and Children, 1992
Discusses a child-centered science project in which first-grade students integrate design drawing, construction, mathematics, and language arts to solve engineering problems related to constructing robots. Describes the construction of the robots, follow-up activities, and educational research that supports this approach to teaching. (10…
Descriptors: Cooperative Learning, Design, Grade 1, Integrated Activities
Auer, Herbert J. – 1985
This instructional manual contains 20 learning activity packets for use in a workshop on robotics. The lessons cover the following topics: safety considerations in robotics; introduction to technology-level and coordinate-systems categories; the teach pendant (a hand-held computer, usually attached to the robot controller, with which the operator…
Descriptors: Competency Based Education, Computer Oriented Programs, Course Content, Equipment
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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
Kieren, Thomas E. – 1984
This report provides perspectives from the literature and from consultation with LOGO experts for viewing, evaluating, formalizing, and improving use of the LOGO programming language in education. Contents of the report include: a discussion of the instructional structure of LOGO which centers around its turtle mode, list processing nature, and…
Descriptors: Art Education, Computer Literacy, Curriculum Development, Elementary Secondary Education
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Bers, Marina U.; Ponte, Iris; Juelich, Catherine; Viera, Alison; Schenker, Jonathan – Information Technology in Childhood Education Annual, 2002
This article presents a constructionist approach to introducing technology, in particular robotics, in the early childhood classroom. The authors demonstrate how this approach is well suited, since the four basic tenets of constructionism have a long-standing tradition in early childhood education: (a) learning by designing meaningful projects to…
Descriptors: Early Childhood Education, Robotics, Technology Integration, Constructivism (Learning)
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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
Territo, Peter A., Jr.; McMurry, James G. – 1987
This model instructional unit was developed to aid trade and industrial education teachers in Louisiana in preparing students for careers in the field of power mechanics. Students are provided experiences related to the design, theory, construction, and appropriate uses of the power systems, as well as the maintenance and repair of the more common…
Descriptors: Competency Based Education, Course Content, Course Organization, Energy Occupations
Pedras, Melvin J.; And Others – 1988
With technology constantly changing, educators are challenged to integrate technology education into the curriculum. In an effort to integrate a study of technology into the public school curriculum, educators at the University of Idaho identified the following areas as representative of modern technology literacy: computers and computer-aided…
Descriptors: Computer Literacy, Computer Science Education, Curriculum Development, Educational Improvement
Pittsburg State Univ., KS. Kansas Vocational Curriculum Dissemination Center. – 1984
This document is a teacher's guide for teaching a course on robot service and repair. The guide is organized in four units covering the following topics: introduction to robots, power supply, robot control systems, and service and repair. Each unit contains several lesson plans on the unit topic. Lesson plans consist of objectives, tools and…
Descriptors: Behavioral Objectives, Classroom Techniques, Course Content, Electronic Control
Patrick, Dale R. – 1988
This curriculum for a 1-semester or 1-year course in electronics is designed to take students from basic through advanced electronic systems. It covers several electronic areas, such as digital electronics, communication electronics, industrial process control, instrumentation, programmable controllers, and robotics. The guide contains…
Descriptors: Competence, Competency Based Education, Course Content, Electrical Systems
Seaman, Virgil A.; Steck, Francis X. – 1985
This document contains suggestions for integrating the elements of robotics into technology education courses from elementary through junior high and high school levels. Eighteen courses into which robotics instruction can be incorporated are listed. They include the following: exploring industry and technology, introduction to industrial and…
Descriptors: Classroom Techniques, Computer Oriented Programs, Curriculum Development, Elementary Education
Alberta Dept. of Education, Edmonton. Curriculum Standards Branch. – 1997
With this Career and Technologies Studies (CTS) curriculum guide, secondary students in Alberta can do the following: develop skills that can be applied in their daily lives; refine career-planning skills; develop technology-related skills in electro-technologies; enhance employability skills, especially in electro-technologies industries; and…
Descriptors: Career Development, Competence, Competency Based Education, Course Content
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Matson, Eric; DeLoach, Scott; Pauly, Robyn – Journal of STEM Education: Innovations and Research, 2004
The "Robot Roadshow Program" is designed to increase the interest of elementary school children in technical disciplines, specifically math and science. The program focuses on children from schools categorized as rural or underserved, which often have limited access to advanced technical resources. We developed the program using robots…
Descriptors: Elementary School Mathematics, Elementary School Science, Elementary School Students, Rural Schools
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