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Showing 1 to 15 of 19 results Save | Export
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Pence, Harry E. – Journal of Chemical Education, 2021
This paper describes the course outline for a three credit hour nonlaboratory course in Environmental Health Chemistry which was taught from 1981 until 2008 at the State University of New York College at Oneonta. The purpose of this paper is to share the lecture outline in the hopes that it might be useful to others who are preparing to teach…
Descriptors: Science Instruction, College Science, Environment, Public Health
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Dunn, Anna L.; Payne, Andrew; Clark, Peter R.; McKay, Christopher; Williams, Glynn D.; Wheelhouse, Katherine; Arendt, Kevin; Dixon, Frank; Shilcrat, Susan – Journal of Chemical Education, 2021
Awareness of best safety practices in the industrial sector will allow students in chemistry and chemical engineering programs to apply these approaches to their own safety assessments. Process safety is a critical function within the pharmaceutical industry to ensure safety when performing reactions. An introduction to process safety and a series…
Descriptors: Chemistry, Science Instruction, Teaching Methods, Chemical Engineering
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Adawe, Abdolahi Mohamed – Science Education International, 2021
Chemicals used in academic teaching laboratories, research institutions, and industrial facilities are mostly dual-use chemicals. They provide many desired benefits but at the same time may cause adverse effects to human health and environments. In the case of Somalia, there are gaps in terms of chemical security (CS) awareness and…
Descriptors: Foreign Countries, Science Instruction, Chemistry, Science Laboratories
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Vanderveen, Jesse R.; Jessop, Philip G. – Journal of Chemical Education, 2021
Selecting less hazardous chemicals is a core tenet of green chemistry but is difficult to teach in practice. The upper-year undergraduate or graduate level exercise described here empowers students to make such decisions themselves. Students are tasked with finding the greenest chemical for a specific purpose described in a hypothetical scenario,…
Descriptors: Teaching Methods, Decision Making, Chemistry, Hazardous Materials
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Tsokou, Aimilia M.; Howells, Alix; Stark, Moray S. – Journal of Chemical Education, 2019
The ability to handle chemicals safely is a key aspect of the learning development of students studying chemistry; however, there have been no previously reported investigations of the quantity of chemicals spilled by students during lab experiments. Therefore, the first part of this article reports the assessment of the volume of chemicals…
Descriptors: Chemistry, Hazardous Materials, Accidents, Safety
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Schwarzman, Megan R.; Buckley, Heather L. – Journal of Chemical Education, 2019
For the last seven years, an interdisciplinary course known as "Greener Solutions", offered by the University of California, Berkeley Center for Green Chemistry, has brought together graduate students in chemistry, environmental health, and engineering to understand each other's disciplines, and to work together to develop safer…
Descriptors: Chemistry, Interdisciplinary Approach, Science Instruction, Course Descriptions
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Short, Daniel B.; Badger, Paul D. – School Science Review, 2013
The chemistry behind practical special effects in the film and television industry is discussed, along with examples of commonly used chemical demonstrations that simulate them in the laboratory. (Contains 3 figures.)
Descriptors: Chemistry, Film Production, Television, Science Instruction
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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
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Miller, Roxanne Greitz – Science Scope, 2008
Commonly referred to as CFLs, compact fluorescent light bulbs are rapidly replacing traditional incandescent light bulbs for residential use. However, controversy and even comic parody have arisen surrounding CFL use. CFLs contain small amounts of mercury, and several public forums and news agencies have been announcing that the breakage of a CFL…
Descriptors: Lighting, Energy Conservation, Hazardous Materials, Poisoning
Forlin, Peter – 1995
Chemical reactivity is a major area of risk in high school laboratories. This paper reports on a study that has provided a research-based framework for risk management in Australian chemical education. The chemical practice model of risk management is considered with respect to kinetic factors; catalysts; concentrations and proportions;…
Descriptors: Chemistry, Foreign Countries, Hazardous Materials, High Schools
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Lunn, George; Sansone, Eric B. – Journal of Chemical Education, 1994
Provides specific procedures for the disposal of a variety of highly reactive chemicals and reports the results of a study of their safe disposal. Disposal of some problematic sulfur-containing compounds are included. Procedures are based on a combination of literature review and author development. (LZ)
Descriptors: Chemistry, Hazardous Materials, Laboratory Procedures, Laboratory Safety
1971
This manual describes safety procedures which should be observed in the chemistry laboratory. Accidents which may occur when working with chemicals such as peroxides, phosphorus, heavy metals, acids, etc., need special treatment. Quite suitable descriptions of such treatment are listed for each kind of possible accident in the laboratory.…
Descriptors: Chemistry, Guides, Hazardous Materials, Laboratory Manuals
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Roy, Ken – Science Education International, 2006
More science laboratories are being built because of larger enrollments in academics and schools. There is an increase in hands-on/process science effected by the renewed interest in and priority of science education. New science curricula like Biotechnology and Advanced college type program courses are being introduced with the use of exotic…
Descriptors: Science Teachers, Safety, Science Instruction, Legal Responsibility
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Compton-Lilly, Catherine – Science and Children, 2002
Details how a lead safety project funded in the Toyota Tapestry Grant program provided students with the resources to test for and discover lead present in their recently renovated school. Discusses how the lead safety project played out across grade levels within the school. (DDR)
Descriptors: Chemical Analysis, Elementary Education, Environmental Education, Hazardous Materials
Washington State Dept. of Ecology, Olympia. – 1988
This booklet provides a guide for the safe use and disposal of toxic chemicals found around the home. Toxicity ratings given to compounds are explained along with the amount needed for a probable fatal dose for a 150-pound person. Each category of hazardous waste is provided with typical examples of the toxicants, a toxicity rating, several…
Descriptors: Accident Prevention, Daily Living Skills, Environmental Education, Hazardous Materials
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