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Hobbs, Elizabeth; Schisler, Laura; Pressley, Hugh; Smith, Walter – Technology and Engineering Teacher, 2021
Picture students huddled around a 3D printer in a middle school classroom. They gaze at the object being printed, and exclamations of, "Where is that flag from?" "What does that symbol mean?" and "Oh; I didn't think of that!" can be heard. These examples of observation, curiosity, and critical thinking are the elusive…
Descriptors: Computer Peripherals, Printing, Student Projects, Global Approach
Flowers, Jim; Rose, Mary Annette – Technology and Engineering Teacher, 2020
New technologies are being developed every day. Many of these may not make it into the curriculum for technology and engineering students. For those that do, there may be quite a delay between the time the technology is introduced at an industrial scale and when the technology is developed at a relatively low cost and small scale needed to…
Descriptors: Printing, Computer Peripherals, Technology Uses in Education, Technical Education
Corum, Kimberly; Garofalo, Joe – Technology and Engineering Teacher, 2018
More and more schools are acquiring advanced manufacturing equipment. Activities that incorporate the use of this equipment for the purpose of teaching some academic content can either be designed or redesigned for other educational purposes as well. This article describes how the authors extended an activity that was initially designed to help…
Descriptors: Middle School Students, Mathematical Models, Problem Solving, Printing
Fujiwara, Yujiro – Technology and Engineering Teacher, 2018
While many students may struggle to make sense of a mathematical formula and its practical implications, they can benefit greatly from an intuitive visualization and the engineering application of the topic. Effective STEM programs create clear connections at least with two subject areas, which translates into an enhanced student learning…
Descriptors: STEM Education, Computer Assisted Instruction, Models, Computer Peripherals
Hughes, Bill; Wilson, Greg – Technology and Engineering Teacher, 2016
3D printing is recognized as a collection of technologies known as rapid prototyping, solid freeform fabrication, and most commonly, additive manufacturing (AM). With these emerging technologies it is possible to print (but not limited to): architectural models, discontinued car-part foundry patterns, industry-wide prototypes, human tissues, the…
Descriptors: Printing, Technological Advancement, Educational History, Intellectual History
Love, Tyler S.; Roy, Ken – Technology and Engineering Teacher, 2016
Health concerns from 3D printing were first documented by Stephens, Azimi, Orch, and Ramos (2013), who found that commercially available 3D printers were producing hazardous levels of ultrafine particles (UFPs) and volatile organic compounds (VOCs) when plastic materials were melted through the extruder. UFPs are particles less than 100 nanometers…
Descriptors: Printing, Computer Peripherals, Safety, STEM Education
Samuels, Kyle; Flowers, Jim – Technology and Engineering Teacher, 2015
As 3D printers become more affordable, schools are using them in increasing numbers. They fit well with the emphasis on product design in technology and engineering education, allowing students to create high-fidelity physical models to see and test different iterations in their product designs. They may also help students to "think in three…
Descriptors: Computer Peripherals, Printing, Technology Education, Engineering Education
Hughes, Bill; Mona, Lynn; Wilson, Greg; Seamans, Jeff; McAninch, Steve; Stout, Heath – Technology and Engineering Teacher, 2017
A handful of technological episodes: fire, wheel and axle, Industrial Revolution, Faraday's discovery of electromagnetic induction, the transistor, and the digital age, have historically altered humanity. We are now witnessing/participating in the next transformational technology: 3D printing. Although dating back nearly 30 years, the technology…
Descriptors: STEM Education, Printing, Information Technology, Technology Uses in Education
Snyder, Mark; Painter, Donna – Technology and Engineering Teacher, 2014
Most products people purchase, keep in their homes, and often discard, are typically packaged in some way. Packaging is so prevalent in daily lives that many of take it for granted. That is by design-the expectation of good packaging is that it exists for the sake of the product. The primary purposes of any package (to contain, inform, display,…
Descriptors: Technology Education, Technological Literacy, Manufacturing Industry, Engineering Education
Orr, Taylor; Flowers, Jim – Technology and Engineering Teacher, 2015
3D printing is becoming ever more popular in both the manufacturing world as well as in technology and engineering education classrooms all over the United States. 3D printing is an additive manufacturing process in which successive layers of material are built up to produce three-dimensional objects from computer-aided design (CAD) files, making…
Descriptors: Computer Peripherals, Printing, Plastics, Engineering Education
Martin, Robert L.; Bowden, Nicholas S.; Merrill, Chris – Technology and Engineering Teacher, 2014
In the past five years, there has been tremendous growth in the production and use of desktop 3D printers. This growth has been driven by the increasing availability of inexpensive computing and electronics technologies. The ability to rapidly share ideas and intelligence over the Internet has also played a key role in the growth. Growth is also…
Descriptors: Engineering Education, Engineering Technology, Technology Education, Printing
Xu, Renmei; Flowers, Jim – Technology and Engineering Teacher, 2015
Integrating different science, technology, engineering, and mathematics (STEM) areas can help students learn and leverage both the equipment and expertise at a single school. In comparing graphic communications classes with classes that involve rapid prototyping (RP) technologies like 3D printing, there are sufficient similarities between goals,…
Descriptors: Educational Technology, STEM Education, Integrated Activities, Specialization