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Ritz, John M. – Technology Teacher, 1995
Offers information about lunar exploration, the telescope, and space travel. Suggests that landing on the moon and returning to Earth is one of the most significant technological accomplishments. Includes a student quiz, outcomes, and references. (JOW)
Descriptors: Lunar Research, Moons, Science and Society, Scientific Research

Flowers, James C. – Technology Teacher, 1994
Technology education programs must not be so restricted as to be primarily concerned with sets of facts. They must realize the unique responsibility of fostering philosophic critics and designers of technology. They should also strive to help students with their future needs. (Author/JOW)
Descriptors: Critical Thinking, Design, Educational Responsibility, Philosophy
Gardner, Paul L. – 1996
This paper reviews a decade of development of technology education at the secondary school level in Australia. It traces the influences, both national and international, which have pressed the nation's education systems to introduce technology studies into the school curriculum. The increasing globalization, the movement of capital and labor, the…
Descriptors: Foreign Countries, National Curriculum, Science and Society, Secondary Education

Su, Walter Yu-Jen; Juang, Chyi-Shiun – Bulletin of Science, Technology & Society, 1998
Discusses how science, technology, and science education (STS) was introduced to Taiwan. Provides an overview of the status quo of STS in Taiwan. Presents possible implementation strategies. (CCM)
Descriptors: Educational History, Foreign Countries, Science and Society, Science Instruction

Gaskell, Jim – Canadian Journal of Science, Mathematics and Technology Education, 2001
Although science, technology, and society (STS) has been widely accepted as part of science curriculum policy, there is little evidence that it has made much impact on classroom practice, particularly in the academic stream of secondary schools. Suggests that supporters of STS should consider placing STS in occupational contexts in ways that would…
Descriptors: Career Awareness, Science and Society, Science Curriculum, Science Instruction

Webster, Seth – Science Teacher, 2002
Describes the use of the Internet to explore the impact of environmental changes in communities of frogs and toads. Provides a guide to investigating this topic on the web. (DDR)
Descriptors: Biology, Environmental Education, Internet, Pollution
Weld, Jeffrey – Phi Delta Kappan, 1999
The Science/Technology/Society approach to teaching science has been researched and practiced for over 20 years. This model uses current issues in students' lives and society as the foundation of study. Teaching STS science requires nothing more than a shifting emphasis and willingness to empower students. (MLH)
Descriptors: Change Strategies, Equal Education, Models, Program Descriptions

Wright, R. Thomas – NASSP Bulletin, 1999
Not just computers, technology is the product of human imagination, inventiveness, and creativity that has defined the iron, industrial, and information ages. Technology education is a core subject that provides fundamental understandings to build future citizens, family members, consumers, and workers. The United States has been slow to develop…
Descriptors: Computers, Core Curriculum, Curriculum Development, Science and Society

Zoller, Uri; Ben-Chiam, David – Research in Science and Technological Education, 1994
Assesses and profiles the science technology, and society (STS) views, positions, beliefs, attitudes, and literacy of social studies and science prospective teachers and of practicing secondary school social studies and science teachers. Significant differences between the aforementioned groups are discussed. (ZWH)
Descriptors: Educational Research, Preservice Teacher Education, Science and Society, Science Education

Hepburn, Gary; Gaskell, P. James – Journal of Research in Science Teaching, 1998
Inquires into the influence of subject communities on the practice of secondary school teachers as they teach a new science and technology course that crosses traditional subject and department boundaries. Contains 20 references. (DDR)
Descriptors: Career Education, Course Content, Curriculum Development, Educational Change

Rannikmae, Miia – Science Education International, 1998
Science lessons were created to promote scientific and technological literacy (STL) among Estonian students. Teacher interviews (n=20) and student responses (n=470) to open-ended questions were analyzed based on process, attitudinal, and instructional domains. Outcomes emphasized the need for in-service guidance for teachers' better understanding…
Descriptors: Conventional Instruction, Foreign Countries, Inservice Teacher Education, Science and Society

Rye, James A.; Bardwell, Genevieve; Hu, Jun – Science Educator, 1999
Describes an academic-enrichment program that targets underrepresented secondary students and strives to increase their competence in science and technology, potential for leadership, allegiance to local communities, and interest in post-secondary careers in the health sciences. Contains 22 references. (WRM)
Descriptors: Enrichment Activities, Extracurricular Activities, Females, Health Occupations
Stanley, Rodney – 1991
Technological developments make the world an ever changing place with the prospect of even faster change in the future. This document presents a course developed by the Kentucky State Department of Education that allows students to explore a number of technologies and their importance in this technological society. The document is separated into…
Descriptors: Classroom Design, Classroom Techniques, Course Descriptions, Curriculum Development
Emily Hall Tremaine Foundation, Inc., Hartford, CT. – 1994
This competency-based secondary learning guide on understanding the impact of new technology is part of a series that are adaptations of guides developed for adult consumer and homemaking education programs. The guides provide students with experiences that help them learn to do the following: make decisions; use creative approaches to solve…
Descriptors: Adjustment (to Environment), Behavioral Objectives, Check Lists, Competence
Ohio State Univ., Columbus. Vocational Instructional Materials Lab. – 1998
This curriculum guide provides resources that teachers and trainers can use to help learners improve their ability to apply technology problem-solving skills in the workplace. The instructional strategies and practice problems in the guide are patterned after those of the American College Testing (ACT) Work Keys System. Gains in skill levels can…
Descriptors: Academic Education, Education Work Relationship, Educational Resources, Energy Education
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