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Showing 181 to 195 of 247 results Save | Export
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Education in Science, 1977
Presents a series of behavioral objectives for a 60 hour science unit designed to train laboratory technicians in safety, basic laboratory skills, laboratory service and fittings, and first aid. (SL)
Descriptors: Behavioral Objectives, Higher Education, Instruction, Laboratory Procedures
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Roy, Ken – Science Scope, 2003
Discusses the importance of laboratory safety in science classrooms. Urges middle school teachers to address class size in an effort to establish and maintain a safe working environment. Answers a teacher's question related to having newts and salamanders in the classroom. (SOE)
Descriptors: Class Size, Classroom Techniques, Hazardous Materials, Laboratory Safety
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Barrier, Regina – Science Teacher, 2005
An important part of the science classroom involves teaching students how to safely use tools, techniques, and procedures. As emphasized in the National Science Education Standards, "safety is a fundamental concern in all experiential science" and teachers must "teach students how to engage safely in investigations inside and outside the…
Descriptors: Laboratory Safety, Science Teachers, Cooperative Learning, Science Instruction
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Nurachman, Zeily; Hermawan, Jatnika; Rachmayanti, Yanti; Baradja, Lubna – Biochemistry and Molecular Biology Education, 2003
Laboratory demonstration, as well as biochemistry lecture, has been used to complement explanation of biochemical processes. The laboratory demonstration is very useful in teaching biochemistry to students who lack background in biology. The experimental model of fibrinolysis described here presents a complex biological reaction in simplified…
Descriptors: Student Interests, Biochemistry, Science Instruction, Science Laboratories
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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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Brown, Walter R. – Science and Children, 1974
Describes precautions that should be taken and procedures that should be followed to minimize the risk of accidents in the school science laboratory. (JR)
Descriptors: Accident Prevention, Elementary School Science, Laboratory Procedures, Laboratory Safety
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Renfrew, Malcolm M., Ed. – Journal of Chemical Education, 1982
Results of on-site inspections of 11 New York colleges, laboratories and storage facilities are summarized according to: (1) chemical storage and disposal; (2) safety equipment; (3) ventilation; (4) general housekeeping; and (5) safety education. (Author/SK)
Descriptors: Accident Prevention, Chemistry, College Science, Higher Education
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McKusick, Blaine C. – Science, 1981
A National Research Council report has recommended practices for safe handling and disposal of hazardous chemicals in laboratories. They are a practical alternative to detailed regulations on individual chemicals. Topics discussed include physical hazards, chemical hazards, chronic hazards, laboratory ventalation, protective equipment,…
Descriptors: Accident Prevention, Chemistry, College Science, Hazardous Materials
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Moore, Davis S., Ed. – Education in Science, 1994
Describes the prosecution efforts regarding a chemistry teacher when one of the teacher's students was injured in an explosion in an attempt to make gun powder. In a different section, discusses nonscientists in science laboratories and the responsibilities of competent persons. (PR)
Descriptors: Elementary Secondary Education, Higher Education, Laboratory Safety, Legal Responsibility
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Obi, Samuel C. – Tech Directions, 2004
Most, if not all, industrial technology (IT) programs have laboratories or workshops. Often equipped with modern equipment, tools, materials, and measurement and test instruments, these facilities constitute a major investment for IT programs. Improper use or over use of program facilities may result in dirty lab equipment, lost or damaged tools,…
Descriptors: Trade and Industrial Education, Laboratory Safety, Laboratory Equipment, Laboratory Procedures
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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
Council of State Science Supervisors, VA. – 2000
This document provides information on the most commonly asked science safety questions by science teachers primarily at the secondary school level. Topics include the legal responsibilities of a science teacher, a general safety checklist, proper labeling and storing of chemicals, purchasing of new chemicals and disposing of old chemicals, a…
Descriptors: Animals, Chemistry, Hands on Science, Hygiene
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Johnson, James S. – Journal of Chemical Education, 1981
Presents general and specific guidelines for handling carcinogens. Additional topics include: definition of potential occupational carcinogens; classification of carcinogens; inventory requirements; signs and labels for materials and laboratories; decontamination and disposal procedures; medical surveillance for employees working with controlled…
Descriptors: Cancer, Chemistry, College Science, Guidelines
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Vetter, Edwin A. – American Biology Teacher, 1989
Provides a set of guidelines for infection control of the Acquired Immune Deficiency Syndrome and the serum hepatitis viruses during blood typing procedures. Emphasizes that disposal of blood contaminated materials should comply with local health department recommendations. (RT)
Descriptors: Acquired Immune Deficiency Syndrome, Biology, College Science, Communicable Diseases
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DeCoster, Patricia A. – Science Teacher, 1992
Describes techniques to avoid the time crunch and safety hazards associated with fitting labs into 45-minute periods. The author presents information on organizing people and things, adapting labs, and cleanup management. The author cautions against rushing a science lab to the point of compromising safety or student understanding. (PR)
Descriptors: Educational Planning, Elementary Secondary Education, Laboratory Safety, Lesson Plans
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