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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
Black, Andy Nicholas; Magruder, Robert H. – Physics Teacher, 2017
Learning and understanding physics requires more than studying physics texts. It requires doing physics. Doing research is a key opportunity for students to connect physical principles with their everyday experience. A powerful way to introduce students to research and technique is through subjects in which they might find interest. Presented is…
Descriptors: Physics, Introductory Courses, Acoustics, Scientific Research
Scalfani, Vincent F.; Turner, C. Heath; Rupar, Paul A.; Jenkins, Alexander H.; Bara, Jason E. – Journal of Chemical Education, 2015
The emergence of 3D printing has dramatically advanced the availability of tangible molecular and extended solid models. Interestingly, there are few nanostructure models available both commercially and through other do-it-yourself approaches such as 3D printing. This is unfortunate given the importance of nanotechnology in science today. In this…
Descriptors: Molecular Structure, Printing, Models, Design Crafts
Cook, Kristin Leigh; Bush, Sarah B.; Cox, Richard – Science and Children, 2015
The power of 3D printing technology has grown exponentially in just the past few years--people around the world are using 3D printers to prepare food, create tailored clothing, build cars and homes, and advance the medical field in ways that never seemed possible. In classrooms across the nation, 3D printers have become increasingly common because…
Descriptors: Elementary School Science, Engineering Technology, Printing, Grade 4
Rehmat, Abeera P.; Owens, Marissa C. – Science and Children, 2016
This column presents ideas and techniques to enhance your science teaching. This month's issue shares information about a unit promoting scientific literacy and the engineering design process. The integration of engineering with scientific practices in K-12 education can promote creativity, hands-on learning, and an improvement in students'…
Descriptors: Science Instruction, Scientific Literacy, Engineering Technology, Integrated Activities
Ribeiro, Rui P. P. L.; Silva, Ricardo J. S.; Esteves, Isabel A. A. C.; Mota, Jose´ P. B. – Journal of Chemical Education, 2015
The construction of a simple volumetric adsorption apparatus is highlighted. The setup is inexpensive and provides a clear demonstration of gas phase adsorption concepts. The topic is suitable for undergraduate chemistry and chemical engineering students. Moreover, this unit can also provide quantitative data that can be used by young researchers…
Descriptors: Science Equipment, Material Development, Science Materials, Scientific Concepts
Roman, Harry T. – Technology and Engineering Teacher, 2014
Roadways are literally soaked with petrochemical byproducts, oils, gasoline, and other volatile substances that eventually run off into sewers and end up in rivers, waterways, and other undesirable places. Can the roads be cleaned of these wastes, with their proper disposal? Can vehicles, robots, or other devices be designed that could be driven…
Descriptors: Sanitation, Wastes, Fuels, Motor Vehicles
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
Hahn, Tobias; Huuk, Thiemo; Heuveline, Vincent; Hubbuch, Ju¨rgen – Journal of Chemical Education, 2015
Industrial purification of biomolecules is commonly based on a sequence of chromatographic processes, which are adapted slightly to new target components, as the time to market is crucial. To improve time and material efficiency, modeling is increasingly used to determine optimal operating conditions, thus providing new challenges for current and…
Descriptors: Hands on Science, Courseware, Undergraduate Students, Engineering Technology
Dorrell, Abby; Berkeihiser, Mike – Technology and Engineering Teacher, 2014
The Family and Consumer Science (FCS) Department at Charles F. Patton Middle School in Kennett Square, Pennsylvania, planted a garden to provide students with an organic horticulture experience. Although the garden provided the FCS Department space to grow plants, Patton Middle School FCS teachers Betsy Ballard and Kim Hislert believed it wasn't…
Descriptors: Organic Chemistry, Gardening, Horticulture, Learning Experience
Child, Paula – School Science Review, 2013
In the UK, at key stage 4, students aged 14-15 studying GCSE Core Science or Unit 1 of the GCSE Biology course are required to be able to describe the process of genetic engineering to produce bacteria that can produce insulin. The simple interactive introduction described in this article allows students to consider the problem, devise a model and…
Descriptors: Secondary School Science, Secondary School Students, Student Projects, Student Research
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
Rummel, Robert A. – Tech Directions, 2012
Technology education has changed dramatically over the last few years. The transition of industrial arts to technology education and more recently the pursuit of design and engineering has resulted in technology education teachers often needing to change their curriculum and course activities to meet the demands of a rapidly changing profession.…
Descriptors: Woodworking, Scientific Concepts, Engineering Technology, Engineering
Roman, Harry T. – Technology and Engineering Teacher, 2013
This article invites teachers to let their students' imaginations soar as they become part of a team that will design a whole new kind of living technological museum, a facility that celebrates the world of infrastructure. In this activity, a new two-story building will be built, occupying a vacant corner parcel of land, approximately 150…
Descriptors: Museums, Imagination, Building Design, Structural Elements (Construction)
Hosaka, Masako – European Journal of Engineering Education, 2014
This qualitative study aims to examine Japanese women undergraduate engineering students' experiences of interacting with departmental peers of the same year in the laboratory setting by using interview data of 32 final-year students at two modestly selective national universities in Japan. Expectation state theory that explains unequal…
Descriptors: Foreign Countries, Womens Education, Engineering Technology, Science Laboratories