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Harms, Henry; Janosz, David A., Jr.; Maietta, Steve – Technology Teacher, 2010
This article describes the Systems and Global Engineering (SAGE) Project in which students collaborate with others from around the world to model solutions to some of today's most significant global problems. Stevens Institute of Technology and the New Jersey Technology Education Association (NJTEA) have teamed up to develop innovative…
Descriptors: Water Quality, Instructional Materials, Technology Education, Material Development
Clark, Aaron C.; Ernst, Jeremy V. – Technology Teacher, 2007
The integration of science, technology, engineering, and mathematics content (STEM) has become a mainstream topic within educational systems. This paper discusses the technology integration model for education and the factors to be considered when taking into account technology education as a focal point of integrated curricula. These factors are:…
Descriptors: Educational Technology, Technology Integration, Integrated Curriculum, Engineering
Kutz, K. Scott; Stefan, Victor – Technology Teacher, 2007
TRIZ (pronounced TREES), the Russian acronym for the theory of inventive problem solving, enables a person to focus his attention on finding genuine, potential solutions in contrast to searching for ideas that "may" work through a happenstance way. It is a patent database-backed methodology that helps to reduce time spent on the problem,…
Descriptors: Intellectual Property, Educational Change, Critical Thinking, Problem Solving

Shackelford, Ray L.; Brown, Ryan; Warner, Scott A. – Technology Teacher, 2004
A technologically literate individual should be able to use, manage, and understand technological concepts and systems. A technologically literate individual should also have the capacity to design, develop, control, use, and assess technological systems and processes. These abilities are essential elements of the universals of technology, as…
Descriptors: Models, Technological Literacy, Technology Education, Standards

Bryson, George Y.; Deal, Walter F., III – Technology Teacher, 1996
Sketches the history of automobile design, current design considerations, and social/cultural aspects of car design. Provides a design brief that challenges students to develop an electric vehicle. (SK)
Descriptors: Design, Manufacturing, Models, Technology Education

Savage, Ernest; Sterry, Leonard – Technology Teacher, 1990
Features of this model for technology education are human needs and wants, problems/opportunities, resources, technological processes, technological knowledge, evaluation, and solutions/impacts. (SK)
Descriptors: Models, Needs, Problem Solving, Science and Society

Denton, Howard G.; Williams, P. John – Technology Teacher, 1996
Sketches and drawings are a means of communicating ideas in the design process. Students need help in overcoming the conditioned response of producing finished, polished work and in learning efficient and effective ways of communicating ideas through images. (SK)
Descriptors: Communication Problems, Design, Efficiency, Freehand Drawing
McClure, Patrick – Technology Teacher, 2006
According to the author, teachers must give their students the ability to assess past, present, and new technologies, while making them aware that there is always a price to pay for any new technology. Students need to acquire the ability to make critical decisions about the world they live in and the technologies that will impact their lives. In…
Descriptors: Technological Literacy, Technological Advancement, Technology Education, Models

Flowers, Jim; Moniz, Matt – Technology Teacher, 2002
Describes how technology education majors are using a high-tech model builder, called a fused deposition modeling machine, to develop their models directly from computer-based designs without any machining. Gives examples of applications in technology education. (JOW)
Descriptors: Computer Assisted Design, Higher Education, Models, Technological Advancement

Cooke, James C.; Drennan, Jerry D.; Drennan, Peggy – Technology Teacher, 1997
Discusses active group learning and models of group peer evaluations: (1) small class of 10-15; (2) typical class of 25-35; and (3) small groups of 2-4 within a typical class of 25-35. (JOW)
Descriptors: Evaluation Methods, Group Dynamics, Group Instruction, Models

Jared, Elizabeth J.; Jared, Alva H. – Technology Teacher, 1997
The KWL reading comprehension method represents what students know about a topic, what they want to know about it, and what they have learned about the topic. It is designed to enhance reading comprehension in content areas such as physical education, health, music, and technology education. (JOW)
Descriptors: Elementary Education, Grade 7, Models, Reading Comprehension

Litowitz, Len S. – Technology Teacher, 1998
A survey of 42 state supervisors regarding technology teacher education found that supply was not matching demand, forcing consideration of alternative teacher licensure methods. Models included suitable background, graduate degree, strand licensure, military career transition, add-on, and life experience/examination. (JOW)
Descriptors: Alternative Teacher Certification, Higher Education, Models, Secondary Education

Johnson, Charles David – Technology Teacher, 1985
This article helps educators use and teach technical vocabulary. A communication model is presented to help visualize the terminology problem. Practical guidelines for terminology usage are discussed, including technical jargon, abbreviations, trade names, conceptual terms, and cybernetics and personification terminology. Audience considerations…
Descriptors: Abbreviations, Communication (Thought Transfer), Concept Formation, Cybernetics
Wiggins, Enrique – Technology Teacher, 2006
"Structures Around the World" is an eighth-grade activity that places special emphasis on creativity and the aspects of design. This lesson interrelates across a variety of curriculums. Due to its diversity, this activity brings validity to technology education and how ideas are conceptualized. In this activity, students explore various…
Descriptors: Grade 8, Technology Education, Science and Society, Design

Lindstrom, Mike – Technology Teacher, 2002
Describes how Minnesota implemented the Standards for Technological Literacy: Content for the Study of Technology. Includes the timeline, rationale, potential activities and estimated costs associated with all phases, and steps for implementing the plan: investigate, replicate, integrate, and mandate. (JOW)
Descriptors: Educational Planning, Models, Program Implementation, Standards
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