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Bartholomew, Scott – Technology and Engineering Teacher, 2015
STEM (Science, Technology, Engineering, and Math) is a buzzword in America (Ames, 2013; Woodruff, 2013). With recent pushes from the federal government (Obama, 2013) the educational landscape is changing, with an increased emphasis on STEM (Noddings, 2013; Obama, 2013). However, a clear definition of who teaches each aspect of STEM does not exist…
Descriptors: STEM Education, Teacher Qualifications, Science Education History, Academic Standards
Eisenkraft, Arthur – Technology and Engineering Teacher, 2011
Current instructional and learning models insist that when teachers prepare lessons for their technology and engineering classes, they must begin with a sense of what students already know. In preparing lessons, many teachers use their years of classroom experience as data to inform them about students' prior knowledge and about student…
Descriptors: Student Attitudes, Elementary Secondary Education, Prior Learning, Competition
Swapp, Andy; Schreuders, Paul; Reeve, Edward – Technology and Engineering Teacher, 2011
Many people use wind to help meet their needs. Over the years, people have been able to harness or capture the wind in many different ways. More recently, people have seen the rebirth of electricity-generating wind turbines. Thus, the age-old argument about technology being either good or bad can also be applied to the wind. The wind can be a…
Descriptors: Engineering Education, Technology Education, Science Process Skills, Science Course Improvement Projects
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
Nugent, Gwen; Kunz, Gina; Rilett, Larry; Jones, Elizabeth – Technology Teacher, 2010
The United States is facing a crisis in terms of meeting demands for a highly skilled technical workforce. Workforce preparation must begin in primary and secondary educational settings. Teachers are perfectly positioned to increase student awareness of and interest in careers in engineering and technology; unfortunately, they are often not well…
Descriptors: Engineering Education, Engineering, Science Teachers, Professional Development
Mentzer, Nathan – Journal of STEM Teacher Education, 2011
This study contextualized the use of the engineering design process by providing descriptions of how each element in a design process was integrated in an eleventh grade industry and engineering systems course. The guiding research question for this inquiry was: How do students engage in the engineering design process in a course where technology…
Descriptors: Technology Education, Engineering Education, Instructional Design, Barriers
Ewers, Timothy G. – Journal of Extension, 2010
4-H youth development programs nationwide are responding to the 4-H National Science, Engineering, and Technology (4-H SET) Initiative to involve more youth in Science, Engineering, and Technology activities. The goal is to increase the numbers of youth choosing to pursue SET careers. This article describes a program that is having great success…
Descriptors: Youth Programs, Elementary Secondary Education, Robotics, Science Activities
Clarke, Katie C. – Journal of Extension, 2010
A new Science, Engineering and Technology (SET) approach was designed for youth who participated in the Minnesota State Fair Livestock interview process. The project and evaluation were designed to determine if the new SET approach increased content knowledge and science process skills in participants. Results revealed that youth participants not…
Descriptors: Animals, Science Programs, Pilot Projects, Science Process Skills
Householder, Daniel L., Ed. – National Center for Engineering and Technology Education, 2011
Since its initial funding by the National Science Foundation in 2004, the National Center for Engineering and Technology Education (NCETE) has worked to understand the infusion of engineering design experiences into the high school setting. Over the years, an increasing number of educators and professional groups have participated in the expanding…
Descriptors: Engineering, Instructional Design, Technology Education, Science Curriculum
Rhodes, Craig; Childress, Vincent – Journal of Technology Education, 2010
In 2004, the National Center for Engineering and Technology Education (NCETE) secured funding from the National Science Foundation (NSF) to infuse engineering design into the schools through technology education. In order to reach this goal the researchers, in cooperation with NCETE, conducted a two phase study to identify outcomes for high-school…
Descriptors: Technological Literacy, Technology Education, Engineering Education, Outcomes of Education
Daugherty, Jenny Lynn – Journal of Technology Education, 2009
The complexity of engineering and its integration into K-12 education have resulted in a variety of issues requiring sustained empirical research (Johnson, Burghardt, & Daugherty, 2008). One particular area of need, given the emphasis on teacher effects on student learning, is to research engineering-oriented teacher professional development. A…
Descriptors: Engineering Education, Program Effectiveness, Secondary School Teachers, Professional Development
Merrill, Chris; Custer, Rodney L.; Daugherty, Jenny; Westrick, Martin; Zeng, Yong – Journal of Technology Education, 2008
Through the efforts of National Center for Engineering and Technology Education (NCETE), three core engineering concepts within the realm of engineering design have emerged as crucial areas of need within secondary level technology education. These concepts are constraints, optimization, and predictive analysis (COPA). COPA appears to be at the…
Descriptors: Technology Education, Engineering Education, Concept Teaching, Scientific Concepts
Kelley, Todd R. – Journal of Technology Education, 2008
Since the publication of the Standards for Technological Literacy in 2000 (ITEA), there have been a number of new programs developed that are designed to teach pre-engineering. Project Lead the Way (PLTW) is one such program. Project Lead the Way boasts serving over 1250 schools in 44 states and teaching over 160,000 students. Another program is…
Descriptors: Cognitive Processes, Technological Literacy, Technology Education, Problem Solving