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Volmer, Dietrich A.; Curbani, Luana; Parker, Timothy A.; Garcia, Jennifer; Schultz, Linda D.; Borges, Endler Marcel – Journal of Chemical Education, 2017
This experiment describes a simple protocol for teaching acid-base titrations using potentiometry, conductivity, and/or photometry to determine end points without an added indicator. The chosen example examines the titratable acidity of a red wine with NaOH. Wines contain anthocyanins, the colors of which change with pH. Importantly, at the…
Descriptors: Biotechnology, Teaching Methods, Food, Chemistry
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Enlow, Jessica L.; Marin, Dawn M.; Walter, Michael G. – Journal of Chemical Education, 2017
To improve polymer education for 9-12 and undergraduate students, a plastic electronics laboratory kit using polymer semiconductors has been developed. The three-module kit and curriculum use polymer semiconductors to provide hands-on inquiry activities with overlapping themes of electrical conductivity, light emission, and light-harvesting solar…
Descriptors: STEM Education, Electronics, Hands on Science, Inquiry
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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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Hugerat, Muhamad; Aliyan, Salman; Basheer, Sobhi – Science Education International, 2001
Presents several scientific activities for elementary school students focusing on electric circuits and conductivity. (ASK)
Descriptors: Electric Circuits, Electricity, Elementary Education, Elementary School Science
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Spielberg, N. – American Journal of Physics, 1973
Descriptors: College Science, Demonstrations (Educational), Electricity, Instructional Materials
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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
Ramondetta, June – Learning, 1994
Students can explore temperature and heat conductivity by examining materials that make good cups for hot cocoa. Using temperature probes from computer-based science packages, students can measure gradual change in the liquid's temperature, watch as data are plotted on the computer, and explain why they chose a specific material. (SM)
Descriptors: Computer Assisted Instruction, Creative Teaching, Experiential Learning, Heat
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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
Rillo, Thomas J. – 1970
The study of climates in small areas as an outdoor science teaching technique is described in this paper. It is suggested that, while teachers are presenting a weather unit to their elementary school classes, they should not overlook the opportunity to make learning more meaningful through outdoor teaching techniques. Explorations of temperatures…
Descriptors: Climate, Curriculum Enrichment, Elementary Education, Learning Activities