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Parker, Carolyn; Kruchten, Catherine; Moshfeghian, Audrey – Afterschool Matters, 2017
The STEM Achievement in Baltimore Elementary Schools (SABES) program is a community partnership initiative that includes both in-school and afterschool STEM education for grades 3-5. It was designed to broaden participation and achievement in STEM education by bringing science and engineering to the lives of low-income urban elementary school…
Descriptors: Student Projects, Urban Schools, STEM Education, Science Course Improvement Projects
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Fantz, Todd D.; Grant, Melva R. – Technology and Engineering Teacher, 2013
The article offers information on making technology education students interested in science and mathematics through the use of a T-shirt launcher design project. This project was designed for junior and senior level high school students who have completed or are currently taking physics and precalculus. The project involves designing an…
Descriptors: STEM Education, Science Interests, Science Course Improvement Projects, High School Students
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Potkonjak, Veljko; Jovanovic, Kosta; Holland, Owen; Uhomoibhi, James – Multicultural Education & Technology Journal, 2013
Purpose: The purpose of this paper is to present an improved concept of software-based laboratory exercises, namely a Virtual Laboratory for Engineering Sciences (VLES). Design/methodology/approach: The implementation of distance learning and e-learning in engineering sciences (such as Mechanical and Electrical Engineering) is still far behind…
Descriptors: Electronic Learning, Distance Education, Computer Simulation, Skill Development
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Hance, Dennis – Tech Directions, 2012
During the fall semester of 2010, mechanical engineering students from Edison State Community College and Wright State University shared their skills and knowledge with students from the Upper Valley JVS (UVJVS) pre-engineering technology program in a highly motivating robotics activity. The activity culminated in 47 teams from regional high…
Descriptors: Competition, Engineering Technology, Robotics, College School Cooperation
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Wang, Jennifer; Werner-Avidon, Maia; Newton, Lisa; Randol, Scott; Smith, Brooke; Walker, Gretchen – Journal of Pre-College Engineering Education Research, 2013
The Lawrence Hall of Science, a science center, seeks to replicate real-world engineering at the "Ingenuity in Action" exhibit, which consists of three open-ended challenges. These problems encourage children to engage in engineering design processes and problem-solving techniques through tinkering. We observed and interviewed 112…
Descriptors: Engineering Technology, Engineering Education, Design, Exhibits
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Wood, Anson – Tech Directions, 2011
Living in the Adirondack Park and being an avid outdoorsman has often resulted in the author's love of the outdoors working its way into class projects. In 2010, the author gave a group of 25 students in grades 9-12 a challenge that required them to design and construct a prototype inexpensive, lightweight kayak for backpackers and fisherman. In…
Descriptors: Engineering Education, Engineering Technology, Science Activities, Science Course Improvement Projects
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Rengel, R.; Martin, M. J.; Vasallo, B. G. – IEEE Transactions on Education, 2012
This paper presents a series of activities and educational strategies related to the teaching of digital electronics in computer engineering. The main objective of these methodologies was to develop a final tutored coursework to be carried out by the students in small teams. This coursework was conceived as consisting of advanced problems or small…
Descriptors: Educational Strategies, Motivation, Electronics, Learning Activities
Eisenkraft, Arthur – National Center for Engineering and Technology Education, 2011
Create a light and sound show to entertain friends. Design an improved safety device for a car. Develop a 2-3 minute voice-over for a sports clip explaining the physics involved in the sport. Modify the design of a roller coaster to meet the needs of a specific group of riders. Design an appliance package for a family limited by the power and…
Descriptors: Physics, Engineering, Science Curriculum, Secondary School Curriculum
Carr, Ronald L.; Strobel, Johannes – National Center for Engineering and Technology Education, 2011
Engineering is being currently taught in the full spectrum of the P-12 system, with an emphasis on design-oriented teaching (Brophy, Klein, Portsmore, & Rogers, 2008). Due to only a small amount of research on the learning of engineering design in elementary and middle school settings, the community of practice lacks the necessary knowledge of the…
Descriptors: Engineering, Educational Research, STEM Education, Integrated Curriculum
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Lehman, James D.; Kim, WooRi; Harris, Constance – Journal of STEM Education: Innovations and Research, 2014
The new standards for K-12 science education in the United States call for science teachers to integrate engineering concepts and practices within their science teaching in order to improve student learning. To accomplish this, teachers need appropriate instructional materials as well as the knowledge and skills to effectively use them. This mixed…
Descriptors: Communities of Practice, Elementary School Science, Integrated Curriculum, Engineering Technology
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McSpadden, Moira; Kelley, Todd R. – Technology and Engineering Teacher, 2012
It is well documented that there is a disproportionate number of males pursuing engineering and technology careers when compared to their female counterparts (Milgram, 2011). Some recent articles have proposed methods to recruit more females into technology education (Milgram, 2011; Zywno, Gilbride, Hiscodes, Waalen, and Kennedy, 1999). However,…
Descriptors: Problem Based Learning, Engineering Education, Engineering Technology, Design
Hynes, Morgan; Portsmore, Merredith; Dare, Emily; Milto, Elissa; Rogers, Chris; Hammer, David; Carberry, Adam – National Center for Engineering and Technology Education, 2011
The Tufts University Center for Engineering Education and Outreach (CEEO) strives to improve STEM education through engineering and believes every student should have the chance to engineer. Situated in Massachusetts, the first state to adopt engineering education at all levels in public schools (Massachusetts DOE, 2001), the CEEO supports the…
Descriptors: Engineering Education, Engineering, Elementary Secondary Education, STEM Education
Schunn, Christian – National Center for Engineering and Technology Education, 2011
At the University of Pittsburgh, the author and his colleagues have been exploring a range of approaches to design challenges for implementation in high school science classrooms. In general, their approach has always involved students working during class time over the course of many weeks. So, their understanding of what works must be…
Descriptors: Engineering Education, Engineering Technology, Scientific Principles, Learning Experience
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Awang, Tuan Salwani; Zakaria, Effandi – Turkish Online Journal of Educational Technology - TOJET, 2012
Engineering technology students can attain a meaningful mathematics learning if they are allowed to actively participate in hands-on activities. However, the current dissemination of knowledge in the classroom still focuses on teacher-centered paradigm of teaching. A study to explore lecturers' views regarding a newly developed integral calculus…
Descriptors: Educational Technology, Calculus, Mathematics Education, Lesson Plans
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Liu, S.; Tang, J.; Deng, C.; Li, X.-F.; Gaudiot, J.-L. – IEEE Transactions on Education, 2011
Java Virtual Machine (JVM) education has become essential in training embedded software engineers as well as virtual machine researchers and practitioners. However, due to the lack of suitable instructional tools, it is difficult for students to obtain any kind of hands-on experience and to attain any deep understanding of JVM design. To address…
Descriptors: Educational Technology, Courseware, Computer System Design, Science Course Improvement Projects
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