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Showing all 14 results Save | Export
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Ye, Jianqiang; Lu, Shanshan; Bi, Hualin – Chemistry Education Research and Practice, 2019
This study uses graphs of conductivity measured by a microcomputer-based laboratory (MBL) to promote students' macro, micro, and symbolic representations when learning about net ionic reactions (NIR). A total of 54 students, aged 14-15 years old participated in this research, and were randomly divided into an experimental group (N = 27) and a…
Descriptors: Science Instruction, Science Laboratories, Scientific Concepts, Concept Formation
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Poor, S. V.; Herman, B. C.; Janney, B. A. – Clearing House: A Journal of Educational Strategies, Issues and Ideas, 2023
A robust knowledge of physics entails deeply understanding electricity concepts such as conductivity and resistance. Understanding how circuits work is also critical for ensuring the safe use of electrical technology such as car batteries and downed powerlines. Curricular materials covering these content ideas are readily available for teachers.…
Descriptors: Video Technology, Teaching Methods, Scientific Principles, Science Instruction
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Lu, Yang; Santino, Luciano M.; Acharya, Shinjita; Anandarajah, Hari; D'Arcy, Julio M. – Journal of Chemical Education, 2017
The design and fabrication of functional scientific instrumentation allows students to forge a link between commonly reported numbers and physical material properties. Here, a two-point and four-point probe station for measuring electrical properties of solid materials is fabricated via 3D printing utilizing an inexpensive benchtop…
Descriptors: Energy, Electronics, Energy Education, Power Technology
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Testa, Italo; Psillos, Dimitris; Molohidis, Anastasios – Physical Review Physics Education Research, 2020
This empirical study investigates the main features of curricula and contexts that favor or hinder the process of transfer of a teaching-learning sequence (TLS) from the designers' original situation to a host one. The specific research questions addressed were (RQ1) what were the changes made during the process of transfer in the new context?…
Descriptors: Foreign Countries, Comparative Education, National Curriculum, Science Curriculum
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Compton, Owen C.; Egan, Martin; Kanakaraj, Rupa; Higgins, Thomas B.; Nguyen, SonBinh T. – Journal of Chemical Education, 2012
Periodic conductivity trends are placed in the scope of lithium-ion batteries, where increases in the ionic radii of salt components affect the conductivity of a poly(ethyleneoxide)-based polymer electrolyte. Numerous electrolytes containing varying concentrations and types of metal salts are prepared and evaluated in either one or two laboratory…
Descriptors: Chemistry, Plastics, Undergraduate Students, College Science
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Garcia, Jennifer; Schultz, Linda D. – Journal of Chemical Education, 2016
The classic technique for sulfate analysis in an undergraduate quantitative analysis lab involves precipitation as the barium salt with barium chloride, collection of the precipitate by gravity filtration using ashless filter paper, and removal of the filter paper by charring over a Bunsen burner. The entire process is time-consuming, hazardous,…
Descriptors: Science Instruction, College Science, Undergraduate Study, Science Experiments
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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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Tofel-Grehl, Colby; Fields, Deborah – Science Teacher, 2015
Electronic textiles (e-textiles)--fabrics embedded with electrical or electronic components--offer a new model for teaching this content. E-textiles also engage students in programming and engineering design through nontraditional projects and materials. This article describes a four-week electricity curriculum using three e-textiles projects that…
Descriptors: Science Instruction, Textiles Instruction, Teaching Methods, Electronic Learning
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Hershey, David R.; Sand, Susan – Science Activities, 1993
Explains how electrical conductivity (EC) can be used to measure ion concentration in solutions. Describes instrumentation for the measurement, temperature dependence and EC, and the EC of common substances. (PR)
Descriptors: Chemical Analysis, Electrochemistry, Elementary Education, Junior High Schools
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Rayner-Canham, Geoff – Journal of College Science Teaching, 1993
Presents historical background and modern explanations for the popular demonstration of showing conductivity of solutions through the insertion of a light-bulb conductivity tester into deionized water and water with salt in it. (PR)
Descriptors: Chemistry, College Science, Demonstrations (Educational), Electricity
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Ratliff, Judy L. – Journal of Chemical Education, 1997
Discusses modifications to general education or introductory chemistry courses that allow visually impaired students to participate productively. Describes a strategy for teaching about elements and density, and the construction of a conductivity tester for visually impaired students. (JRH)
Descriptors: Chemistry, Educational Strategies, Higher Education, Introductory Courses
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James, C. – Physics Education, 1988
Discusses the use of logarithm and reciprocal graphs in the college physics classroom. Provides examples, such as electrical conductivity, reliability function in the Weibull model, and the Clausius-Clapeyron equation for latent heat of vaporation. Shows graphs with weighting of points. (YP)
Descriptors: College Science, Graphs, Higher Education, Physics
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Thomas, Nicholas C.; And Others – Journal of Chemical Education, 1989
Presents a laboratory experiment which illustrates the formation of tris(phenanthroline)cobalt complexes in the 2+ and 3+ oxidation states, the effect of coordination on reactions of the ligand, and the use of a ligand displacement reaction in recovering the transformed ligand. Uses IR, UV-VIS, conductivity, and NMR. (MVL)
Descriptors: Chemical Analysis, Chemical Reactions, Chemistry, College Science
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Barbarick, K. A.; Ippolito, J. A.; Butters, G.; Sorge, G. M. – Journal of Natural Resources and Life Sciences Education, 2005
One of the largest challenges in teaching introductory soil science is explaining the dynamics of soil infiltration. To aid students in understanding the concept and to further engage them in active learning in the soils laboratory course, we developed an exercise using Decagon Mini-Disk Infiltrometers with a tension head (h[subscript o]) of 2 cm.…
Descriptors: Science Laboratories, Soil Science, Science Instruction, Science Activities