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Ramaley, Judith A. – New Directions for Teaching and Learning, 2009
The investments of federal agencies in science, technology, engineering, and mathematics (STEM) education are aimed at a single core question: How can educators ensure that the United States will have a well-prepared and innovative science and technology workforce in an era of increasing global competition? As the exploration of what this entails…
Descriptors: Undergraduate Study, Science Education, Technology Education, Engineering Education
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Ferrini-Mundy, Joan; Gucler, Beste – New Directions for Teaching and Learning, 2009
Efforts to reform and improve teaching and learning in the undergraduate science, technology, engineering, and mathematics (STEM) disciplines have grown increasingly stronger and more focused over the past two decades. Since the early 1990s, some notable unifying developments have given coherence to such initiatives, as well as other developments…
Descriptors: Undergraduate Study, Science Education, Technology Education, Engineering Education
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Kolikant, Yifat Ben-David; McKenna, Ann; Yalvac, Bugrahan – New Directions for Teaching and Learning, 2006
This chapter describes how engineering faculty and learning scientists developed a collective wisdom--shared language, capabilities, and world view--in order to work together to achieve a common goal of developing course materials in the domain of biomedical engineering. (Contains 1 table and 1 figure.)
Descriptors: Engineering, Engineering Education, Biomedicine, Higher Education
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Ohland, Matthew W.; Stephan, Elizabeth A. – New Directions for Teaching and Learning, 2005
Teaching first-year engineering students in a laptop environment requires carefully choosing and then adapting teaching methods. This chapter describes how laptops were used, how the students responded, and what the group of participating faculty learned in the process. (Contains 6 figures.)
Descriptors: Teaching Methods, Engineering, Engineering Education, Undergraduate Students