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Gudyanga, Remeredzayi – African Journal of Research in Mathematics, Science and Technology Education, 2020
There is a scarcity of studies that focus on how South African high school physical sciences teachers are grappling with chemical laboratory safety (CLS). This is despite the fact that the Curriculum and Assessment Policy Statements in the South African school system increased emphasis on laboratory activities in the physical sciences. Department…
Descriptors: Science Teachers, Chemistry, Science Laboratories, Laboratory Safety
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Schenk, Linda; Taher, Ivan A.; O¨berg, Mattias – Journal of Chemical Education, 2018
Chemical safety management is an iterative process where reviews of safety deficiencies (e.g., inspection notes) and failures (e.g., injuries) guide improvement efforts. The present work investigates safety in the school chemistry laboratory through two substudies. First, we interviewed 10 Swedish middle and high school chemistry teachers about…
Descriptors: Chemistry, Science Instruction, Elementary Secondary Education, Science Laboratories
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Ribeiro, M. Gabriela T. C.; Machado, Adelio A. S. C. – Journal of Chemical Education, 2013
Two new semiquantitative green chemistry metrics, the green circle and the green matrix, have been developed for quick assessment of the greenness of a chemical reaction or process, even without performing the experiment from a protocol if enough detail is provided in it. The evaluation is based on the 12 principles of green chemistry. The…
Descriptors: Science Instruction, College Science, Undergraduate Study, Secondary School Science
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Roy, Ken – Science Teacher, 2011
This column provides best safety practices for the science classroom and laboratory. In this month's issue, pregnancy policy in the laboratory is discussed. One can't ignore the fact that student and faculty pregnancies--and the resulting potential hazards in the science laboratory--exist at the high school level. Science teachers need to be…
Descriptors: Pregnancy, Science Laboratories, Science Teachers, Laboratory Safety
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Kaufman, Jim – Science Teacher, 2006
Choosing what eye and face protection to provide for the high school science laboratory is often a challenge. Science teachers and school administrators may not fully understand the relevant safety regulations and standards or be able to correctly identify the various types of eye protection devices. Although some schools have received training…
Descriptors: Science Laboratories, Human Body, Science Teachers, Laboratory Safety
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Roy, Ken – Science Education International, 2002
Explains how to maintain biosafety in high school level biotechnology and microbiology courses. Focuses on laboratory skills, biohazard containment, and defense perimeters. (YDS)
Descriptors: Biotechnology, High Schools, Laboratory Safety, Microbiology
Hoffmann, Sheryl K. – 2001
This paper discusses the risk assessment associated with microbiology instruction based on grade level, general control measures, appropriate activities for middle school and high school students, the preparation and sterilization of equipment, and safe handling techniques. Appended are instructions and figures on making wire loops and the…
Descriptors: High Schools, Laboratory Safety, Microbiology, Middle Schools
Brundage, Patricia; Palassis, John – Centers for Disease Control and Prevention, 2006
The guide presents information about ordering, using, storing, and maintaining chemicals in the high school laboratory. The guide also provides information about chemical waste, safety and emergency equipment, assessing chemical hazards, common safety symbols and signs, and fundamental resources relating to chemical safety, such as Material…
Descriptors: Laboratory Safety, Science Laboratories, Science Education, Chemistry
Council of State Science Supervisors, Washington, DC. – 1984
The purpose of this document is to identify potentially hazardous substances that may be in use in many school laboratories and to provide an inventory of these substances so that science teachers may take the initiative in providing for the proper storage, handling, use, and if warranted, removal of hazardous materials. The document consists of…
Descriptors: Biology, Cancer, Chemistry, Guidelines
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Swami, Piyush; Singh, Karan – Science Teacher, 1985
Indicates that the most dangerous laboratory hazards are the least dramatic ones and that hazardous chemicals are often used in laboratories without proper precautions. Selected sources of information essential for secondary schools and recommendations for safe practices and chemical use statistics from a study of Ohio high schools are given. (DH)
Descriptors: Chemistry, Hazardous Materials, High Schools, Laboratory Equipment
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Nagel, Miriam C., Ed. – Journal of Chemical Education, 1984
Outlines a cooperative effort in Iowa to eliminate dangerous or unwanted chemicals from school science storerooms. Also reviews the Council of State Science Supervisor's safety program and discusses how to prevent cuts and punctures from jagged glass tubing. (JN)
Descriptors: Chemistry, College Science, Hazardous Materials, High Schools
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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
Wahl, George H., Jr., Ed. – 1989
This document provides teachers with sources of useful information and new ideas about the high school chemistry laboratory program. Chapters included are: (1) "Introduction" describing the philosophy and specific objectives of this project; (2) "Importance of Laboratory Work"; (3) "Chemistry Lab Outline" listing…
Descriptors: Chemistry, Hazardous Materials, High Schools, Laboratory Equipment
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
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Rankin, W. T. – American Biology Teacher, 2000
Describes the Alabama Science in Motion Program (ASIM) which provides hands-on science laboratories to high school students. Discusses the benefits of the program for host teachers and its impact on students and preservice teachers. (YDS)
Descriptors: Biology, Curriculum Development, Hands on Science, High Schools