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Wells, John G. – Journal of Technology Education, 2016
Though not empirically established as an efficacious pedagogy for promoting higher order thinking skills, technological/engineering design-based learning in K-12 STEM education is increasingly embraced as a core instructional method for integrative STEM learning that promotes the development of student critical thinking skills (Honey, Pearson,…
Descriptors: Cognitive Processes, Biotechnology, Thinking Skills, Engineering
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Reed, Philip A.; LaPorte, James E. – Journal of Technology Education, 2015
Associations routinely hold annual conferences to aid with professional development and actively promote the ideals of their membership and the profession they represent. The American Industrial Arts Association (AIAA) was created in 1939 and has held an annual conference the past 76 years to further these goals (Starkweather, 1995). Throughout…
Descriptors: Conferences (Gatherings), Professional Associations, Industrial Arts, Content Analysis
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Peterman, Karen; Pan, Yi; Robertson, Jane; Lee, Shelley Glenn – Journal of Technology Education, 2014
Biotechnology constitutes one of the most challenging, cutting-edge, and rapidly growing fields in science today. Both the practical implications and the hands-on nature of this "modern science" make the topic of biotechnology an attractive addition to the high school science curriculum. The current study is the first of its kind to…
Descriptors: High School Students, Student Characteristics, Biotechnology, Secondary School Science
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Wells, John G. – Journal of Technology Education, 1994
A Delphi panel of 19 experts identified 8 main knowledge areas of biotechnology: bioprocessing, foundations, genetic engineering, agriculture, biochemistry, medicine, environment, and bioethics. Round 2 elicited 84 subdivisions and round 3 adjusted the ratings. The resulting classification suggests a different context and focus for technology…
Descriptors: Biotechnology, Classification, Curriculum Development, Secondary Education
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Dunham, Trey; Wells, John; White, Karissa – Journal of Technology Education, 2002
Provides a rationale for inclusion of biotechnology in technology education. Describes an instructional strategy that uses behaviorist, cognitive, and constructivist learning theories in two activities involving photobioreactors and bovine somatotropin (growth hormone). (Contains 39 references.) (SK)
Descriptors: Biotechnology, Educational Strategies, Learning Activities, Learning Theories
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Scott, Donald G.; Washer, Barton A.; Wright, Michael D. – Journal of Technology Education, 2006
The world is a dynamic environment driven by technology that challenges each individual in a unique way. No longer is the ability to read and write sufficient because technological change affects nearly every aspect of one's life from "enabling citizens to perform routine tasks to requiring that they are able to make responsible, informed…
Descriptors: Delphi Technique, Biotechnology, Technology Education, Beginning Teachers