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Boissonnault, Tom – Tech Directions, 2010
This article describes how the author got his 8th-grade students thinking about greener modes of transportation--and got them excited about technology education--in the course of rebuilding a badly damaged 1966 Vespa scooter. This turned out to be a wonderful project because it included almost the entire 8th grade, and showed students that…
Descriptors: Grade 8, Technology Education, Program Descriptions, Auto Mechanics
Scarcella, Joe; Wallace, Art – Tech Directions, 2011
Gliders and sailplanes provide a great launching platform for teaching about technology and scientific principles. Soaring is technological innovation in action, using earth's natural resources for energy and endurance during flight. This article focuses on the basics of soaring, which educators can use to increase excitement and interest in the…
Descriptors: Scientific Principles, Student Interests, Natural Resources, Technology Education
LeBlanc, Cheryl – Tech Directions, 2011
A robotics team from Muncie, Indiana--the PhyXTGears--is made up of high school students from throughout Delaware County. The group formed as part of the FIRST Robotics program (For Inspiration and Recognition of Science and Technology), an international program founded by inventor Dean Kamen in which students work with professional engineers and…
Descriptors: Mentors, Robotics, High School Students, Science Activities
Fuller, Amanda – Tech Directions, 2010
Five years ago, Leon Strecker's technology education class at Darien High School came up with the idea of building a fuel cell-powered go-kart. In previous years, the class had worked on other creations, such as electric cars that competed in a state-sponsored race and a full-size hovercraft. But students had not taken on anything anywhere near…
Descriptors: Fuels, Technology Education, High School Students, Energy Education
Evans, Eric; Artusio-Glimpse, Aly; Zaczesk, Bryan; Dawson, Ross – Tech Directions, 2010
In November 2008, a mass email sent by the department chairman arrived in the inboxes of the imaging and photographic technology students at the Rochester Institute of Technology. A great opportunity was in store for four lucky students. The department had received a request for proposals (RFP) sent by NASA to colleges around the United States…
Descriptors: Design, Program Proposals, Scientific Concepts, Aviation Technology
Fitzgerald, Mike – Tech Directions, 2006
Communication spreads knowledge worldwide. It could be argued that "communication" is one of the greatest human achievements. In this article, the author briefly describes some key technologies associated with the archiving and communication of information. Since communication technologies continue to evolve at a fast pace, he simply focuses on…
Descriptors: Technological Advancement, Communications, Audio Equipment, Photography
Hawkins, Harry – Tech Directions, 2004
This article describes how to construct a laser level. This laser level can be made using a typical 4' (or shorter) bubble level and a small laser point. The laser unit is detachable, so the bubble level can also be used in the conventional way. However, the laser level works better than a simple bubble level. Making this inexpensive device is an…
Descriptors: Lasers, Physics, Material Development, Design Requirements
Roberts, Ed; Gonzalez-Espada, Wilson J. – Tech Directions, 2006
The current paradigm in science education calls for greater emphasis on guiding students in active and extended scientific inquiry. This is supported by research suggesting that using a hands-on approach to learning fosters ownership in the learning process and allows students to gain greater appreciation for the design and implementation of…
Descriptors: Motor Vehicles, Science Projects, Physics, Science Education
Dolph, Darrel A. – Tech Directions, 2004
Students in the Electronics Engineering Technology program at Pennsylvania College of Technology designed and built a computerized dynamometer platform for testing dc brushless motors. As the capstone experience for EET-320, Measurement and Tests course, students were divided into teams of four and were given three weeks to complete the project.…
Descriptors: Engineering Technology, Problem Based Learning, Science Process Skills, Science Projects