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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
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Grubbs, Michael E.; Deck, Anita – Technology and Engineering Teacher, 2015
Water turbines have long been used to make work easier for humans while minimizing energy consumption. They are not only used in small- and large-scale operations, but also provide a great context for Integrative STEM education. Students can begin to understand the technological processes available by designing, building, and testing different…
Descriptors: STEM Education, Energy Education, Power Technology, Scientific Concepts
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Buelin-Biesecker, Jennifer – Technology and Engineering Teacher, 2014
The average American produces around 1,600 pounds of garbage every year, and it is estimated that 50 percent of that waste is material that could be composted (Clean Air Council, 2012). Instead, most is sent to landfills and incinerators. In technology and engineering education, a great deal of time is spent in talking, teaching, and thinking…
Descriptors: Engineering Education, Technology Education, Engineering Technology, Classroom Environment
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Zhao, Feng-qing; Yu, Yi-feng; Ren, Shao-feng; Liu, Shao-jie; Rong, Xin-yu – Journal of Chemical Education, 2014
Practical education in chemical engineering has drawn increasing attention in recent years. This paper discusses two approaches to teaching and learning about experiments among upper-level chemical and pharmaceutical engineering majors in China. On the basis of years of experience in teaching chemical and pharmaceutical engineering, we propose the…
Descriptors: Foreign Countries, Pharmaceutical Education, Engineering Technology, Majors (Students)
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Roman, Harry T. – Tech Directions, 2011
With some simple metal samples and common household liquids, teachers can build wet cell batteries and use them to teach students about batteries and how they work. In this article, the author offers information that is derived from some simple experiments he conducted in his basement workshop and can easily be applied in the classroom or lab. He…
Descriptors: Technology Education, Teaching Methods, Science Experiments, Laboratories
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Crismond, David; Soobyiah, Mark; Cain, Ryan – Science and Children, 2013
This article highlights what inquiry and design have in common, and what makes engineering design uniquely different from inquiry. A case study is presented that gives students practice in conducting fair-test experiments, in troubleshooting to learn how to make designs better, and in building science-based explanations for how things work. The…
Descriptors: Engineering Technology, Design, Inquiry, Case Studies
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Roman, Harry T. – Tech Directions, 2011
Using two cardboard boxes, a light bulb socket, light bulbs of varying wattage, a thermometer, and some insulation, students can learn some interesting lessons about how heat loss occurs in homes. This article describes practical experiments that work well on units related to energy, sustainable energy, renewables, engineering, and construction.…
Descriptors: Science Activities, Energy, Heat, Energy Conservation
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Jain, Prashant K.; Gu, Yuxiang; Rizwan-uddin – Advances in Engineering Education, 2008
Internet extends the reach of existing laboratory and training infrastructure to beyond the walls of such facilities. Though nothing can replace the hands-on experience in a laboratory; a carefully developed web-based digital lab may be the next best thing. In some cases, there may be benefits associated with a "distance laboratory" that…
Descriptors: Engineering Technology, Internet, Virtual Classrooms, Science Laboratories
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McCarthy, John; Moore, R. A. – European Journal of Engineering Education, 2006
The present paper focuses on the application of a structured template, maximum impact flow (MIF), in order to encourage young students in the area of optics and optical engineering. MIF introduces a template in terms of individual steps and linked functionality and is shown to fuse separate learning tools together into a cohesive unit.…
Descriptors: Engineering Education, Optics, Engineering, Engineering Technology
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Noble, Richard D. – Chemical Engineering Education, 1979
Describes a laboratory experiment for freeze-drying fruits and vegetables which aims to expose college students to the principles of drying and simultaneous heat and mass transfer. The experimental apparatus, procedure of the experiment, and data analysis are also included. (HM)
Descriptors: Biochemistry, Biological Sciences, Chemical Industry, College Science