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Designing Electric Cars: A University-Based Cross-Disciplinary Collaboration with Elementary Schools
Cynthia Lima; Nikolaos Gatsis – Connected Science Learning, 2024
This article describes the creation of a university-based cross-disciplinary collaboration with elementary schools to address the challenges faced by teacher preparation programs in providing preservice teachers opportunities to design integrated STEM learning environments. The partnership focused on the design of an electric car unit and…
Descriptors: Elementary School Students, Grade 5, Preservice Teachers, Preservice Teacher Education
Cool, Nate; Strimel, Greg J.; Croly, Michael; Grubbs, Michael E. – Technology and Engineering Teacher, 2017
To be technologically and engineering literate, people should be able to "make" or produce quality solutions to engineering design challenges while recognizing and understanding how to avoid hazards in a broad array of situations when properly using tools, machines, and materials (Haynie, 2009; Gunter, 2007; ITEA/ITEEA, 2000/2002/2007).…
Descriptors: Engineering Education, Engineering Technology, Integrated Curriculum, Design
West, Andrew B.; Sickel, Aaron J.; Cribbs, Jennifer D. – Science Activities: Classroom Projects and Curriculum Ideas, 2015
The Next Generation Science Standards call for the integration of science and engineering. Often, the introduction of engineering activities occurs after instruction in the science content. That is, engineering is used as a way for students to elaborate on science ideas that have already been explored. However, using only this sequence of…
Descriptors: Science Instruction, Engineering, Learning Activities, Interdisciplinary Approach
Ward, Lauren; Lyden, Sarah; Fitzallen, Noleine – Australian Mathematics Teacher, 2016
Context based learning (CBL) is a powerful tool that utilises areas of student interest framed in meaningful contexts to foster development of new skills and understanding. For middle school students, engineering activities that relate to real-world problems provide suitable CBL contexts for acquiring conceptual scientific and mathematical…
Descriptors: Engineering Education, Engineering Technology, Middle School Students, Teaching Methods
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
Baele, Loren C. – ProQuest LLC, 2017
This multiple methods (Denzin, 1978) study investigated two instructional approaches, traditional module and electronic Problem-Based Learning instruction (e-PBL), used within a middle school engineering classroom focused on the variables of engagement, content knowledge, student self-assessment and teacher assessment of problem solving solutions.…
Descriptors: Middle School Students, Engineering Technology, Problem Solving, Teaching Methods
Stoner, Melissa A.; Stuby, Kristin T.; Szczepanski, Susan – Mathematics Teaching in the Middle School, 2013
Recent research suggests that high-impact activities in science and math classes promote positive attitudinal shifts in students. By implementing high-impact activities, such as designing a school and a skate park, mathematical thinking can be linked to the engineering design process. This hands-on approach, when possible, to demonstrate or…
Descriptors: STEM Education, Motivation Techniques, Student Motivation, Structural Elements (Construction)
Cuperman, Dan; Verner, Igor M. – International Journal of Technology and Design Education, 2013
This paper considers an approach to studying issues in technology and science, which integrates design and inquiry activities towards creating and exploring technological models of scientific phenomena. We implemented this approach in a context where the learner inquires into a biological phenomenon and develops its representation in the form of a…
Descriptors: Biological Sciences, Robotics, Middle School Students, Preservice Teachers
Smith, Shaunna – Journal of Research on Technology in Education, 2013
Digital fabrication consists of manufacturing design technology that is used to facilitate the creation of physical objects. Existing research suggests digital fabrication technology can inspire student creativity and innovation in mathematics and science. However, there is a lack of research that informs teacher education by identifying practical…
Descriptors: Language Arts, Middle School Teachers, Design, Engineering Technology
Song, Ting; Becker, Kurt – Technology and Engineering Teacher, 2013
Science, technology, engineering, and mathematics (STEM) educators are facing the challenge of attracting more students. The disparity between the need for engineers and the enrollment of engineering students is growing (Genalo, Bruning, & Adams, 2000), and career aspirations of high school students are inconsistent with the employment…
Descriptors: Engineering Education, Engineering Technology, Design, Middle School Students
Bennie, Fiona; Corbett, Charlotte; Palo, Angela – Odyssey: New Directions in Deaf Education, 2015
This article describes an after-school program at the Horace Mann School for the Deaf (HMS), the oldest public day school for deaf students in the United States, where almost half of the student body imagined and created bridge and robotic machines. The Deaf Robotics Engineering and Math Team, or the DREAM Team club, included HMS students in…
Descriptors: After School Programs, Robotics, Deafness, Program Descriptions
Kornoelje, Joanne; Roman, Harry T. – Tech Directions, 2011
Educators at Thomas A. Edison Middle School have worked together to bring invention information and activities to life. One activity in particular, Ping-Pong Ball Invention Challenge, has proven a great success. The Ping-Pong Ball Invention Challenge was inspired by the basic rules for PBS's "Design Squad"'s "Pop Fly" activity. In this article,…
Descriptors: Middle School Students, Intellectual Property, Middle Schools, Teacher Educators
Sweeney, Preston – Tech Directions, 2010
Hosting an engineering competition can bring great success to a technology department. Development and planning of an event can prove frustrating at times, but it pays off in the end. The author describes the first-ever engineering competition held at Maple Avenue Middle School in Saratoga Springs, New York, which provided an evening of creative…
Descriptors: Competition, Engineering, Science Fairs, Science Activities
Pecen, Recayi; Humston, Jill L.; Yildiz, Faruk – Journal of STEM Education: Innovations and Research, 2012
The Math-Science-Engineering Technology in Iowa on Applied Renewable Energy Areas (MSETI-AREA) projects are aimed at providing area school teachers with an applied mathematics and science curriculum package based on photovoltaic (PV) power, wind power, human power and hydrogen fuel-cell fundamentals. The MSETI-AREA project has established a…
Descriptors: Literacy, Engineering, Technological Literacy, Job Skills
Redmond, Adrienne; Thomas, Julie; High, Karen; Scott, Margaret; Jordan, Pat; Dockers, Jean – School Science and Mathematics, 2011
This case study reviewed the collaborative efforts of university engineers, teacher educators, and middle school teachers to advance sixth- and seventh-grade students' learning through a series of project-based engineering activities. This two-year project enriched regular school curricula by introducing real-world applications of science and…
Descriptors: Engineering Education, Mentors, Problem Based Learning, Teaching Methods
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