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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
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
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
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
Pliskow, Tia – Tech Directions, 2008
Science educators face the challenge of piquing students' interest in subjects whose concepts are often entirely foreign to them. The author wanted to give her students a hands-on, "real world" experience rooted in scientific concepts. What evolved was an engineering design competition. The point of the project was two-fold: to work on real-world…
Descriptors: Design Requirements, Student Interests, Science Interests, Competition