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Sanger, Michael J.; Danner, Matthew – Journal of Chemical Education, 2010
When grocery stores sell solutions of ammonia, they are labeled "ammonia"; however, when the same solution is purchased from chemical supply stores, they are labeled "ammonium hydroxide". The goal of this experiment is for students to determine which name is more appropriate. In this experiment, students use several different experimental methods…
Descriptors: Chemistry, Science Instruction, College Science, Scientific Concepts
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Tundo, Pietro; Rosamilia, Anthony E.; Arico, Fabio – Journal of Chemical Education, 2010
This experiment investigates the methylation of 2-naphthol with dimethyl carbonate. The volatility of the substrates, products, and co-products allows the reaction to be performed using a continuous-flow gas-phase setup at ambient pressure. The reaction uses catalytic quantities of base, achieves high conversion, produces little waste, and…
Descriptors: Physics, Chemistry, Science Instruction, Science Experiments
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Gillespie, Blake; Deutschman, William A. – Journal of Chemical Education, 2010
Brewing beer provides a straightforward and robust laboratory counterpart to classroom discussions of fermentation, a staple of the biochemistry curriculum. An exercise is described that provides several connections between lecture and laboratory content. Students first extract fermentable carbohydrates from whole grains, then ferment these with…
Descriptors: Science Laboratories, Biochemistry, College Science, Science Instruction
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Guzei, Ilia A.; Hill, Nicholas J.; Zakai, Uzma I. – Journal of Chemical Education, 2010
Bruker SMART X2S is a portable benchtop diffractometer that requires only a 110 V outlet to operate. The instrument operation is intuitive and facile with an automation layer governing the workflow from behind the scenes. The user participation is minimal. At the end of an experiment, the instrument attempts to solve the structure automatically;…
Descriptors: Chemistry, Science Laboratories, Science Instruction, College Science
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Baldwin, Bruce W.; Hasbrouck, Scott; Smith, Jordan; Kuntzleman, Thomas S. – Journal of Chemical Education, 2010
In "JCE" Activity #67, "Flame Tests: Which Ion Causes the Color?", Michael Sanger describes how to conduct flame tests with household items. We have used this activity in outreach settings, and have extended it in a variety of ways. For example, we have demonstrated large-scale strontium (red), copper (green), and carbon (blue) flames using only…
Descriptors: Chemistry, Science Instruction, Scientific Concepts, Scientific Principles
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Johannessen, Kim – European Journal of Physics, 2010
An analytic approximation of the solution to the differential equation describing the oscillations of a simple pendulum at large angles and with initial velocity is discussed. In the derivation, a sinusoidal approximation has been applied, and an analytic formula for the large-angle period of the simple pendulum is obtained, which also includes…
Descriptors: Physics, Motion, Science Instruction, Equations (Mathematics)
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Jankovic, Srdjan – Physics Teacher, 2010
Unlike many other topics in basic physics, series and parallel resistances are rarely noticed in the real life of an ordinary individual, making it difficult to design a laboratory activity that can simulate something familiar. The activities described here entail minimal costs and are based on a puzzle-like game of tracking wire connections. A…
Descriptors: Science Instruction, Teaching Methods, Scientific Principles, Physics
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Kraftmakher, Yaakov – European Journal of Physics, 2010
A differential magnetic circuit (magnetic bridge) is described. The circuit separates the magnetic field sensor and the sample under study. A Hall probe serves as the sensor. The signal from the sensor can be enhanced by concentrating the magnetic flux. The magnetic bridge works even with dc magnetic fields. The device is used for displaying…
Descriptors: Physics, Science Laboratories, Energy, Science Instruction
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Cid, Ximena C.; Lopez, Ramon E. – Astronomy Education Review, 2010
Understanding lunar phases requires three-dimensional information about the relative positions of the Moon, Earth, and Sun, thus using a stereo display in instruction might improve student comprehension of lunar phases or other topics in basic astronomy. We conducted a laboratory (15 sections) on phases of the Moon as part of the introductory…
Descriptors: Astronomy, Science Instruction, Visual Aids, Introductory Courses
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Roy, Ken – Science Teacher, 2010
Students coming into science labs need initial and ongoing training about safety standards and best practices. They also need to develop good attitudes about their work and the health and safety of their teachers and fellow students. The "School Chemistry Laboratory Safety Guide" is a resource for science teachers and school administrators to help…
Descriptors: Laboratory Safety, Chemistry, Science Teachers, Science Laboratories
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Piergiovanni, Polly R. – Chemical Engineering Education, 2012
Sophomore liberal arts and engineering students enrolled in a course to learn and practice some basic chemical engineering side by side. The course was developed around the theme of indigo dyeing, which has an interesting history, fascinating chemistry and is accessible to all students. The students participated in a variety of active learning…
Descriptors: Liberal Arts, Active Learning, Engineering Education, Interdisciplinary Approach
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Benedict, Lucille; Pence, Harry E. – Journal of Chemical Education, 2012
Increasing numbers of college students own cell phones, and many of these phones are smartphones, which include features such as still and video cameras, global positioning systems, Internet access, and computers as powerful as the desktop models of only a few years ago. A number of chemical educators are already using these devices for education.…
Descriptors: Chemistry, Internet, Video Technology, Web Sites
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Ende, Fred – Science Scope, 2012
Ask students to name the aspects of science class they enjoy most, and working on labs will undoubtedly be mentioned. What often won't be included, however, is writing lab reports. For many students, the process of exploration and data collection is paramount, while the explanation and analysis of findings often takes a backseat. After all, if…
Descriptors: Ecology, Scientific Literacy, Science Education, Science Laboratories
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Pereira, Marcus Vinicius; de Souza Barros, Susana; de Rezende Filho, Luiz Augusto C.; de A. Fauth, Leduc Hermeto – Physics Education, 2012
Constant technological advancement has facilitated access to digital cameras and cell phones. Involving students in a video production project can work as a motivating aspect to make them active and reflective in their learning, intellectually engaged in a recursive process. This project was implemented in high school level physics laboratory…
Descriptors: Science Instruction, High School Students, Secondary School Science, Aesthetics
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Rodrigue, Christine M. – Journal of Geoscience Education, 2011
This paper presents a laboratory exercise used to teach principal components analysis (PCA) as a means of surface zonation. The lab was built around abundance data for 16 oxides and elements collected by the Mars Exploration Rover Spirit in Gusev Crater between Sol 14 and Sol 470. Students used PCA to reduce 15 of these into 3 components, which,…
Descriptors: Earth Science, Chemistry, Data, Factor Analysis
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