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Radford, Samantha A.; Hunter, Ronald E., Jr.; Barr, Dana Boyd; Ryan, P. Barry – Journal of Chemical Education, 2013
A laboratory experiment was developed to target analytical chemistry students and to teach them about insecticides in food, sample extraction, and cleanup. Micro concentrations (sub-microgram/mL levels) of 12 insecticides spiked into apple juice samples are extracted using liquid-liquid extraction and cleaned up using either a primary-secondary…
Descriptors: Science Instruction, Chemistry, Science Laboratories, Science Experiments
Love, Tyler S. – Technology and Engineering Teacher, 2015
Before giving students permission to construct and test their designs, students must understand how to use hazardous tools, machines, and chemicals in a safe manner. Students often complain that they have already seen the safety videos and passed the same safety tests in prerequisite Integrative STEM Education (I-STEM Ed) courses. Although they…
Descriptors: Teaching Methods, Instructional Innovation, STEM Education, Safety Education
Finch, Lauren E.; Hillyer, Margot M.; Leopold, Michael C. – Journal of Chemical Education, 2015
For most chemistry curricula, laboratory-based activities in quantitative and instrumental analysis continue to be an important aspect of student development/training, one that can be more effective if conceptual understanding is delivered through an inquiry-based process relating the material to relevant issues of public interest and student…
Descriptors: Chemistry, Statistical Analysis, Metallurgy, Hazardous Materials
Ribeiro, M. Gabriela T. C.; Yunes, Santiago F.; Machado, Adelio A. S. C. – Journal of Chemical Education, 2014
Two graphic holistic metrics for assessing the greenness of synthesis, the "green star" and the "green circle", have been presented previously. These metrics assess the greenness by the degree of accomplishment of each of the 12 principles of green chemistry that apply to the case under evaluation. The criteria for assessment…
Descriptors: Science Instruction, Chemistry, Science Laboratories, Graphs
Al-Azmi, Darwish; Karunakara, N.; Mustapha, Amidu O. – Physics Education, 2013
Ambient gamma dose rates in air were measured at different locations (indoors and outdoors) to demonstrate the ubiquitous nature of natural background radiation in the environment and to show that levels vary from one location to another, depending on the underlying geology. The effect of a lead shield on a gamma radiation field was also…
Descriptors: Radiation, Science Instruction, Measurement, Geology
Izadyar, Anahita; Kim, Yushin; Ward, Michelle M.; Amemiya, Shigeru – Journal of Chemical Education, 2012
The inexpensive and disposable electrode based on a double-polymer-modified pencil lead is proposed for upper-division undergraduate instrumental laboratories to enable the highly sensitive detection of perchlorate. Students fabricate and utilize their own electrodes in the 3-4 h laboratory session to learn important concepts and methods of…
Descriptors: Chemistry, Water, Plastics, Science Laboratories
MacNeil, Joseph; Gess, Samantha; Gray, Miranda; McGuirk, Maureen; McMullen, Sara – Journal of Chemical Education, 2012
Evidence suggests that student engagement in the material they are studying correlates well with better learning outcomes, and instrumental analysis modules structured to reflect student interests are of wide significance. The analysis of levels of dietary (Cu, Fe, Mn, Zn) and undesirable (Cd and Pb) metals in commercially available and wild…
Descriptors: Learner Engagement, Chemistry, Science Instruction, College Science
Hayes, David; Widanski, Bozena – Journal of Chemical Education, 2013
A laboratory experiment is described that introduces students to "real-world" hazardous waste management issues chemists face. The students are required to define an analytical problem, choose a laboratory analysis method, investigate cost factors, consider quality-control issues, interpret the meaning of results, and provide management…
Descriptors: Science Instruction, College Science, Secondary School Science, Undergraduate Study
Lang, Patrick T.; Harned, Andrew M.; Wissinger, Jane E. – Journal of Chemical Education, 2011
A new green oxidation procedure was developed for the undergraduate organic teaching laboratories using Oxone and a catalytic quantity of sodium chloride for the conversion of borneol to camphor. This simple 1 h, room temperature reaction afforded high quality and yield of product, was environmentally friendly, and produced negligible quantities…
Descriptors: Hazardous Materials, Organic Chemistry, Science Laboratories, College Science
Sauterer, Roger; Rayburn, James R. – American Biology Teacher, 2012
Introducing students to the process of scientific inquiry is a major goal of high school and college labs. Environmental toxins are of great concern and public interest. Modifications of a vertebrate developmental toxicity assay using the frog Xenopus laevis can support student-initiated toxicology experiments that are relevant to humans. Teams of…
Descriptors: Student Projects, Toxicology, Biology, Environmental Education
Grady, Julie R.; Madden, Andrew S. – Science Activities: Classroom Projects and Curriculum Ideas, 2010
Investigations that integrate concepts from geological sciences with biology and chemistry are rare. The authors present an investigation that introduces high school students to microbe-mineral interactions by tying together anaerobic respiration, reduction reactions, metal ion solubility, and groundwater pollution. During the investigation,…
Descriptors: Water, Pollution, Science Instruction, High School Students
Birdwhistell, Kurt R.; Nguyen, Andy; Ramos, Eric J.; Kobelja, Robert – Journal of Chemical Education, 2008
The acylation of ferrocene is a common reaction used in organic laboratories to demonstrate Friedel-Crafts acylation and the purification of compounds using column chromatography. This article describes an acylation of ferrocene experiment that is more eco-friendly than the conventional acylation experiment. The traditional experiment was modified…
Descriptors: Organic Chemistry, Heat, Science Laboratories, Science Instruction
Eby, Eric; Deal, S. Todd – Journal of Chemical Education, 2008
We developed an alternative electrophilic aromatic substitution reaction for the organic chemistry teaching laboratory. The experiment is an electrophilic iodination reaction of salicylamide, a popular analgesic, using environmentally friendly reagents--sodium iodide and household bleach. Further, we designed the lab as a guided-inquiry…
Descriptors: Spectroscopy, Organic Chemistry, Science Laboratories, Inquiry
Klingshirn, Marc A.; Wyatt, Allison F.; Hanson, Robert M.; Spessard, Gary O. – Journal of Chemical Education, 2008
We are currently in the process of incorporating green chemistry throughout the chemistry curriculum. In this article we describe how we applied the principles of green chemistry in one of our first-semester general chemistry courses, specifically in relation to the determination of the formula of a hydrate. We utilize a copper hydrate salt that…
Descriptors: Chemistry, Science Instruction, Conservation (Environment), Science Experiments
Roy, Ken – Science Scope, 2005
Asbestos has been used in the construction of elementary, middle, and high school ceilings, floor tile adhesives, pipe and structural beam insulations, science laboratory benches, wire gauss on ring stands, fume hood panels, general insulation, and more during the 1950s through early 1970s. Why? Primarily asbestos was selected because of its…
Descriptors: Cancer, Hazardous Materials, Science Laboratories, School Buildings