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Fitzgerald, Mike; Brand, Lance – Tech Directions, 2011
The separation of content between science, math, engineering, and technology education should not exist. Working with the relationship between these content areas enhances students' efforts to learn about the physical world--and the Bungee Jump offers one great way to go about it. This article describes an activity called the Egg Bungee Jump which…
Descriptors: Plastics, Science Activities, Musicians, Physical Sciences
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Pratt, Kyle – Tech Directions, 2011
In Mr. Wood's technology class, students learned about many aspects of engineering, including design of a product, teamwork, testing hypotheses, and testing the final product. In this article, the author describes how his class, particularly his team, applied everything they learned about the process to their kayak design challenge using the IDEAL…
Descriptors: Problem Solving, Teamwork, Program Descriptions, Program Design
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Rudolph, Robert – Tech Directions, 2010
Taking part in the United States Department of Energy's Real World Design Challenge (RWDC), the author describes how four technology education students at Cumberland Valley High School in Mechanicsburg, Pennsylvania, took on the challenge to redesign an aircraft wing, attempting to make it more efficient than one currently in operation. The…
Descriptors: World Problems, Engineering, Technology Education, High School Students
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Cotton, Samuel E.; Calkins, Celeste M. – Tech Directions, 2011
Problem-solving activities let students use knowledge gained in various areas of their academic education. They bring together skills and knowledge from such areas as science, math, art, and English by simulating activities and projects students will encounter later in career and life experiences. A very important feature of most problem-solving…
Descriptors: Academic Education, Hands on Science, Problem Solving, Student Projects
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Cotton, Samuel E.; Calkins, Celeste M. – Tech Directions, 2011
Problem-solving activities let students use knowledge gained in various areas of their academic education. They bring together skills and knowledge from such areas as science, math, art, and English by simulating activities and projects students will encounter later in career and life experiences. A very important feature of most problem-solving…
Descriptors: Academic Education, Hands on Science, Problem Solving, Engineering
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Ivey, Debra; Quam, Greg – Tech Directions, 2009
This article discusses the 4-H Gateway Academies specifically designed to enhance science, technology, engineering, and math (STEM) skills and knowledge in middle school youth. The innovative summer day camps partnered Project Lead the Way--trained teachers with county 4-H staff from University of Wisconsin-Extension (UW-Extension) Cooperative…
Descriptors: Extension Education, Team Training, Partnerships in Education, Leadership
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Ward, Dell; Jones, James – Tech Directions, 2011
Customers determine whether a product fulfills their needs or satisfies them. "Quality control", then, is the process of finding out what the customer wants, along with designing, producing, delivering, and servicing the product--and ultimately satisfying the customer's expectations. For many years, people considered a product to be of good…
Descriptors: Structural Elements (Construction), Quality Control, Total Quality Management, Educational Technology
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Massey, Rick – Tech Directions, 2008
Recognizing the increasing popularity of skateboarding, the author has found a project that teaches design and manufacturing concepts--and, of equal importance, really gets his students motivated. He challenges them to design and build a skateboard rack that mounts easily on a bicycle. The project benefits students by teaching creativity, the…
Descriptors: Teamwork, Design, Student Motivation, Student Projects
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Roman, Harry T. – Tech Directions, 2009
The future globally competitive work environment will likely be one dominated by a need to redefine what makes engineering and technology workers successful. Traditionally, success has been defined as having "intelligent" graduates who have completed a rigorous college course that stresses problem solving and mastery of huge amounts of technical…
Descriptors: Global Approach, Work Environment, Job Training, Success
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Decker, Rob – Tech Directions, 2005
Every year in the United States, the federal government, insurance companies and automobile manufacturers wreck hundreds of cars for safety-testing purposes. All this crashing comes in an effort to rate vehicular safety for the public. Inspired by numerous movies with car chases, dramatic wrecks and television commercials showing car safety tests,…
Descriptors: Motor Vehicles, Testing, Engineering Education, Engineering
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Marcus, Michael – Tech Directions, 2003
Describes a teaching method involving problem-solving techniques used by project teams in industry that have been tailored for use in an introductory engineering technology course. Provides step-by-step guidelines for each component. (JOW)
Descriptors: Engineering, Higher Education, Problem Solving, Teaching Methods
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Roman, Harry T. – Tech Directions, 2006
A great deal of similarity exists between engineering and technology education. Many schools and state education administrators are working to bring engineering principles and problem-solving approaches into the technology education classroom. More and more, technology education is viewed as a breeding ground for tomorrow's new crop of engineers.…
Descriptors: Engineering, Technology Education, Problem Solving, Interdisciplinary Approach
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Griffis, Kurt; Brand, Lance; Shackelford, Ray – Tech Directions, 2006
Throughout history, people have moved themselves and cargo across water in boats and other types of vessels. Most vessels are developed using a technological design process, which typically involves problem solving and a series of steps. The designer documents each step to provide an accurate record of accomplishments and information to guide…
Descriptors: Design, Construction (Process), Construction Materials, Water