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Showing all 11 results Save | Export
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Nicolaidis, Nicolas C.; Hollott, Phoebe V.; Stanwell, Benjamin; Gill, Isaac A.; Bull, Justine E.; Bentsen, Sean; Iredale, Jason; Pappenfus, Ted M.; Dastoor, Paul C.; Feron, Krishna; Griffith, Matthew J.; Holmes, Natalie P. – Journal of Chemical Education, 2020
An organic solar cell fabrication kit has been developed for demonstration in both undergraduate teaching classes and high school laboratories to promote the growing field of renewable energy and to facilitate empirical comprehension of solar technology. The laboratory focuses on fabricating organic photovoltaics (solar cells) and testing the…
Descriptors: Science Instruction, College Science, Undergraduate Study, Secondary School Science
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Kirikkaya, Esma Bulus; Basaran, Billur – European Journal of Educational Research, 2019
In this research, After I have realized some technological applications in the course of general physics laboratory II of the science teacher program, this research aims to examine the effects of the students' attitudes towards technology and the information of the communication technology (ICT) with the mixed method. For this application, after…
Descriptors: Physics, Science Education, Science Teachers, Teacher Education Programs
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Nerem, Robert R.; James, David – Physics Teacher, 2020
Acharge pickup detector was developed at the University of Colorado for use in classroom demonstrations and in the dust accelerator at the Institute for Modeling Plasma, Atmospheres and Cosmic Dust (IMPACT). The detector can be used in a physics classroom to help high school and introductory-level physics students connect electromagnetic phenomena…
Descriptors: Physics, Science Experiments, Science Education, Demonstrations (Educational)
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Kácovský, Petr – Physics Teacher, 2019
Providing instant visual feedback, thermal imaging cameras are becoming more and more popular tools not only in industrial applications, but also in physics education. Continuously decreasing prices, modules compatible with smart portable devices, and intuitive operation make thermal measurements available for schools and attractive for students.…
Descriptors: Electronics, Physics, Science Instruction, Photography
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Levy, Smadar; Noga, Adi; Kapach, Zehorit; Yerushalmi, Edit – Physics Education, 2022
The instructional lab setting has been found to be dominated by prescribed tasks and pre-prepared lab kits. This was explained by teachers' need to guide students to simultaneously progress through a lab curriculum, which prompts them to standardize the lab experience. Nevertheless, prominent professional associations have persistently called to…
Descriptors: Science Instruction, Teaching Methods, Laboratory Experiments, Physics
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Mott, Jenna R.; Munson, Paul J.; Kreuter, Rodney A.; Chohan, Balwant S.; Sykes, Danny G. – Journal of Chemical Education, 2014
The teaching of instrumental analysis for many small colleges and high schools continues to be stymied by high-cost, complicated maintenance, high power requirements, and often the sheer bulk of the instrumentation. Such issues have led us to develop inexpensive instruments as part of a SMILE initiative (small, mobile instruments for laboratory…
Descriptors: Measurement Equipment, Chemistry, Electronics, Instrumentation
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Allen, Bradley; Liu, Tongtian – Physics Teacher, 2015
Calculating the effective resistance of an electrical network is a common problem in introductory physics courses. Such calculations are typically restricted to two-dimensional networks, though even such networks can become increasingly complex, leading to several studies on their properties. Furthermore, several authors have used advanced…
Descriptors: Electronics, Physics, Computation, Introductory Courses
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Chen, Huai-Yi; Nieh, Hwa-Ming; Yang, Ming-Feng; Chou, Yu-Kung; Chung, Jui-Hsu; Liou, Je-Wen – IEEE Transactions on Education, 2016
This study proposes a home-assembled, low-cost blue light-emitting diode (LED) photometer that uses simple and low-cost hardware and software, costing about US $150. This 425-nm wavelength photometer is controlled by an 89C51 microcontroller chip. Glucose concentration detection experiments involving enzyme coupling reactions were carried out to…
Descriptors: Measurement Equipment, Electronics, Biotechnology, Energy
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Vick, Matthew E. – Science Teacher, 2010
The University of Colorado's Physics Education Technology (PhET) website offers free, high-quality simulations of many physics experiments that can be used in the classroom. The Circuit Construction Kit, for example, allows students to safely and constructively play with circuit components while learning the mathematics behind many circuit…
Descriptors: Physics, Educational Technology, Electronics, Simulation
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Akarsu, Bayram – European Journal of Physics Education, 2011
Hands-on activities are one of the most popular instructional tools that enhance student understandings of the science concepts and enable them to get involved in science practices as well. However, most of science educators underestimate its effectiveness in the classrooms. In order to illustrate how these activities could be utilized for science…
Descriptors: Science Instruction, Hands on Science, Science Experiments, Scientific Concepts
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Barak, Moshe – Journal of Computers in Mathematics and Science Teaching, 2004
The intent of this study was to investigate the impact of introducing computerized means, mainly simulation and the Internet, on teaching and learning electronics in Israeli high schools. Computers in electronics studies are, at the same time, part of the subject matter learned and a means for teaching and learning. Data were collected through…
Descriptors: Student Projects, Laboratory Experiments, Computer Simulation, Internet