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Nathan Ruhl; Bailey Sanders – Journal of Biological Education, 2024
The discovery of frog abnormalities by students on a school field trip in 1995 sparked hundreds of scientific studies in search of the cause of abnormality. This Socio-Scientific Issue has been used as an inquiry-based learning exercise for training in the practice of science, but it is also well-suited to teaching the nature of science. Our goal…
Descriptors: Zoology, Animals, Anatomy, Biology

Young, Jay A. – Science Teacher, 1997
Highlights the importance of considering the hazards, precautions, and emergency procedures pertinent to the safe handling of chemicals before introducing students to the laboratory. Discusses safety hazards depending on the chemical's properties including flammability, corrosivity, toxicity, and reactivity; eye protection; and physical hazards.…
Descriptors: Chemistry, Hazardous Materials, Laboratory Safety, Safety Equipment

Young, Jay A. – Science Teacher, 1997
Discusses the importance of involving students in assessing the risks versus the benefits of specific laboratory activities, completing accident/incident reports, and performing periodic safety inspections. Concludes that involving students enhances their awareness of both hazards and precautions that must be taken. Provides them another avenue…
Descriptors: Hazardous Materials, Laboratory Safety, Science Activities, Science Laboratories

Science Teacher, 1997
Presents a checklist as a guide for preparing a set of safety rules that has been adapted from the U.S. Consumer Products Safety Commission's publication titled "School Science Laboratories: A Guide to Some Hazardous Substances". Addresses work habits; safety wear; facilities and equipment; purchasing, use, and disposal of chemicals; and…
Descriptors: Hazardous Materials, Laboratory Safety, Science Activities, Science Laboratories

Nash, John J.; And Others – Journal of Chemical Education, 1996
Presents the details of a waste treatment experiment that enables students to employ much of the chemistry they have learned in class to solve a real chemical problem. Heightens students' awareness of the potential environmental impact associated with the waste they have generated. Contains 21 references. (JRH)
Descriptors: Chemistry, Hazardous Materials, Higher Education, Science Experiments

Berman, William – Science Teacher, 1984
Discusses the role of dissection in science courses, examining essential lessons students can learn (such as developing an abiding respect for all forms of life, including the animal being dissected). Also presents a list of tips related to classroom dissection and comments on formaldehyde and formalin substitutes. (JN)
Descriptors: Biology, Dissection, Hazardous Materials, Science Activities

Everett, T. Stephen – Journal of Chemical Education, 1997
Compares the precision, accuracy, and response of a cooking probe to a standard mercury thermometer in side-by-side heating in temperature baths, simple and fractional distillations, and melting point determination. (DDR)
Descriptors: Chemistry, Educational Strategies, Hazardous Materials, Higher Education

Forlin, Peter – Australian Science Teachers Journal, 1995
Provides a framework that incorporates the diverse elements of risk management in science education into a systematic process and is adaptable to changing circumstances. Appendix contains risk management checklist for management, laboratory and storage, extreme biological and chemical hazards, protective equipment, waste disposal, electrical…
Descriptors: Hazardous Materials, Laboratory Safety, Models, Risk Management

Dougan, David – Science Teacher, 1994
Presents a model, ChemSafe, that was developed to address and solve the allied problems of chemical purchase, storage, use, and disposal in schools. (ZWH)
Descriptors: Chemistry, Hazardous Materials, Laboratory Safety, Legal Responsibility
Wallace, Sarah C. – Vocational Education Journal, 1990
The Future Workers' Education Project incorporates a lung health and safety curriculum developed by the American Lung Association into the vocational curriculum. The objective is to teach entry workers how to identify occupational lung hazards and to prevent or reduce exposure to them. (SK)
Descriptors: Hazardous Materials, Occupational Safety and Health, Safety Education, Secondary Education

Kendler, Barry S.; Pirone, Dominick J. – American Biology Teacher, 1994
Informs biology teachers about lead contamination by providing an overview of the subject. Emphasis is placed on the sources of lead exposure, followed by ways in which a discussion of lead could be incorporated into the biology curriculum. (ZWH)
Descriptors: Biology, Hazardous Materials, Lead Poisoning, Science Activities
Wray, Thomas K. – 1994
Chemical demonstrations can and do enhance an otherwise potentially dull subjects--the properties of hazardous materials. This book contains the recipes for presenting several chemical demonstrations. Demonstrations are designed to be relatively easy to perform and present minimal hazards if done properly. The book contains an introduction, safety…
Descriptors: Chemistry, Demonstrations (Science), Environmental Education, Hazardous Materials

Sanderson, Phil – School Science Review, 1989
Described is a simple test tube method developed lead analysis of samples of roadside soil. The relationship between the results and the traffic flow indicate car exhausts are the major source of lead pollution. Materials and procedures are detailed. An example of results is provided. (Author/CW)
Descriptors: Air Pollution, Chemistry, Environmental Education, Hazardous Materials

Johnson, James; Bear, Robert L. – Journal of Environmental Health, 1995
A multifaceted program, Goals 2000: Educate America," has as one of its top priorities the development of skills standards for certain key occupations. This articles examines the development of standards for Hazardous Materials Management Technology technicians. (LZ)
Descriptors: Environmental Education, Federal Programs, Hazardous Materials, Industrial Personnel
HAZWRAP, The Hazardous Waste Remedial Actions Program. – 1994
This brochure contains an engineering activity for upper elementary, middle school, and high school students that examines the transportation of radioactive waste. The activity is designed to inform students about the existence of radioactive waste and its transportation to disposal sites. Students experiment with methods to contain the waste and…
Descriptors: Engineering, Environmental Education, Hazardous Materials, Intermediate Grades