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Love, Tyler S.; Roy, Ken R. – Technology and Engineering Teacher, 2018
Markerspaces and areas to conduct collaborative STEM activities are becoming increasingly popular in schools, libraries, media centers, and community centers. These are numerous examples of rooms that were originally designed as traditional classrooms being converted into markerspaces or collaborative STEM work areas. This also involved the use of…
Descriptors: Shared Resources and Services, STEM Education, Safety, Laboratories
Tyler S. Love; Kenneth Russell Roy – International Technology and Engineering Educators Association, 2022
For decades safety has been an integral component of STEM (science, technology, engineering, and mathematics) and CTE (career and technical education) instruction. Given today's litigious society, safety in P-12 STEM education and CTE has received greater attention. This in part is the result of the rise in popularity of collaborative learning…
Descriptors: STEM Education, Safety, Vocational Education, Preschool 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

Sievers, Dennis – Science Teacher, 1984
Provides safety considerations related to chemistry experiments and demonstrations. Includes procedures for a volcano demonstration (which does not use ammonium dichromate) and three clock reactions, a list of hazardous chemicals, and a list of questions to help decide whether the risk of an experiment is acceptable for a class. (JN)
Descriptors: Chemistry, Demonstrations (Educational), Laboratory Safety, Safety

Hart, Charles – Journal of Chemical Education, 1989
Discusses the selection of gloves for the chemistry laboratory. Provides checklists for the purposes of the gloves, and the factors including permeation rate, breakthrough time, friction, and cost. Lists eight rules for preventing skin exposure and minimizing area contamination. Lists six references. (YP)
Descriptors: Check Lists, Chemistry, Guides, Higher Education

Orton, R. J. J. – School Science Review, 1985
Summarizes advice from the Laboratory Safeguards Subcommittee of the Association for Science Education related to flames and heat, hazardous chemicals, electricity and dangerous voltages, and mechanical hazards. Knowledge is cited as the key to preventing accidents in physics laboratories. (DH)
Descriptors: Accident Prevention, Electricity, Hazardous Materials, High Schools
American Chemical Society, Washington, DC. – 1985
This booklet provides guidelines for safety in the chemical laboratory. Part I, "Guides for Instructors and Administrators," includes safety rules, safety practices and facilities, preparation for emergencies, safety committees, accident reporting, fire insurance, and listings of some hazardous chemicals. Part II, "Student Guide to…
Descriptors: Chemistry, College Science, Hazardous Materials, Higher Education
Bedenbaugh, John H., Ed.; Bedenbaugh, Angela O., Ed. – 1988
This handbook is based on a list of essential topics that should be mastered by the student who subsequently plans to pursue college chemistry. Chapters include: (1) "Introduction" (describing a position paper and the background of the handbook); (2) "Essential General Topics and Objectives"; (3) "Testing Students"…
Descriptors: Chemistry, Guides, High Schools, Laboratory Equipment

Berry, Keith O. – Journal of Chemical Education, 1989
Discusses the presentations of chemical demonstrations, hands-on experiments, and magic shows. Presents 12 guidelines to follow when presenting chemical demonstrations. Points out the obligations of the presenters for the safety concerns of the general public. Notes information available from the American Chemical Society. (MVL)
Descriptors: Accident Prevention, Chemistry, Laboratory Procedures, Laboratory Safety

Zwaard, A. W.; And Others – Journal of Chemical Education, 1989
Presents a programed method that inventories and classifies hazards. 8iscusses the following topics: (1) student and hazard source, (2) elimination of the source, (3) adaptation of the source, (4) isolation of the source, (5) adjustment of the surroundings, (6) isolation of man, and (7) personal protective equipment. (MVL)
Descriptors: Accident Prevention, Chemistry, College Science, Hazardous Materials

Rothchild, Robert – Journal of Chemical Education, 1988
Suggests the use of small canopy hoods that provide flexibility of vertical and horizontal adjustment over the lab bench as a replacement for permanent hoods. Includes many safety related instances where canopy hoods should be used. (MVL)
Descriptors: Accident Prevention, Chemistry, Classrooms, College Science

Gerlovich, Jack A.; Miller, Jim – Journal of Chemical Education, 1989
Described is a plan used in Iowa to remove stockpiled, unwanted chemicals from storeroom shelves. Points out that the plan takes 12-15 months to complete. Notes the average cost per district was $575. (MVL)
Descriptors: Chemistry, Hazardous Materials, Laboratory Safety, Occupational Safety and Health

Hanson, David – Chemical and Engineering News, 1989
Estimates that about 30,000 universities, colleges, and high schools produce a total of 4000 metric tons of hazardous waste annually. Discusses the difficulties that academic institutions have in disposing of small amounts of waste. Lists college courses with the potentially hazardous wastes usually produced. (MVL)
Descriptors: Chemical Industry, Chemistry, College Science, Conservation (Environment)
Texley, Juliana; Kwan, Terry; Summers, John – National Science Teachers Association (NJ3), 2004
Just as high school science is more complex than it is at lower grade levels, so are the safety issues teachers face in their classes and labs. Reduce the risks to people and place with Investigating Safely, the third and most advanced and detailed volume in NSTA's unique series of safety guidebooks for science teachers. Some of the guides 11…
Descriptors: Safety, Laboratory Safety, Secondary School Science, High Schools

Journal of Chemical Education, 1989
Presents the results of a chemistry program held at Purdue University from July 31-August 4, 1988. Topics reported include: chemistry's past, present, and future; new directions in chemical education, demonstrations and laboratories; and instructional strategies. Lists the 391 papers given at the conference and the 22 workshops. (MVL)
Descriptors: Chemistry, College Science, Computer Uses in Education, Conference Proceedings
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