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Hanssmann, Charles O. – Journal of Chemical Education, 1980
Pinpoints common areas of neglect in considering science safety. Familiar hazards are discussed, with special consideration of improper chemical storage, old and unlabeled chemicals, and faulty circuits and equipment. An appendix lists basic safety rules and presents a checklist for general laboratory safety. (CS)
Descriptors: Accident Prevention, Check Lists, Chemistry, Laboratory Safety

Schumann, Donna N. – Science and Children, 1981
Suggests the use of spores and spore-producing structures to show adaptations facilitating spore dispersal and dispersal to favorable environments. Describes several activities using horsetails, ferns, and mosses. Lists five safety factors related to use of mold spores in the classroom. (DS)
Descriptors: Biological Sciences, Botany, Elementary School Science, Elementary Secondary Education

Education in Science, 1980
Presents two articles which are part of a series concerned with safety in school science in the United Kingdom. The two articles deal with restricted chemicals and experiments. (HM)
Descriptors: Chemistry, Laboratory Procedures, Laboratory Safety, Resource Materials

Reich, Arthur R.; Harris, L. E. – Journal of Chemical Education, 1979
Presented is an inspection form developed for use by college students to perform laboratory safety inspections. The form lists and classifies chemicals and is used to locate such physical facilities as: fume hoods, eye-wash fountains, deluge showers, and flammable storage cabinets. (BT)
Descriptors: Chemistry, College Science, Design Requirements, Fire Protection

Wilbraham, A. C. – Journal of Chemical Education, 1979
Discusses fire safety and fire control in the chemistry laboratory. The combustion process, extinguishing equipment, extinguisher maintenance and location, and fire safety and practices are included. (HM)
Descriptors: Chemistry, Elementary Secondary Education, Fire Protection, Fire Science Education

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

Dominic, Sheryl – Journal of Chemical Education, 1995
Describes an approach to a demonstration of the Golden Penny Experiment for high school students in which the teacher assumes the disguise of an alchemist and invites the students to devise ways of determining whether the penny has really turned to gold. (DDR)
Descriptors: Chemical Analysis, Chemical Reactions, Chemistry, Demonstrations (Science)

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

Adams, John B., Jr. – Journal of Chemical Education, 1989
Described is a procedure by which the performance of chemical hoods can be tested. This procedure uses a mixture of dry ice and water to create a "smoke" for use in the test. Implications for sash design, performance evaluations and testing under standard and nonstandard conditions are discussed. (CW)
Descriptors: Chemistry, College Science, Higher Education, Laboratory Equipment

Crellin, John R. – School Science Review, 1989
Discusses the relative danger from toxicity of some typical chemicals. Notes that some materials in solutions have low toxicity, but in dust form have high toxicity. Suggests that more chemical compounds should be treated as the dangerous compounds they are. Lists common compounds found in the lab. (MVL)
Descriptors: Accident Prevention, Chemistry, Laboratory Safety, Poisoning

Isom, Steve; Lail, Charles – Science Teacher, 1989
Explains strategies for motivating and getting student's attention in science. Presents a laboratory procedure for generating hydrogen using an Erlenmeyer flask and a one-holed stopper apparatus to fill a balloon which is used to produce a dramatic explosion. Safety precautions are cited. (RT)
Descriptors: Chemistry, Laboratory Procedures, Laboratory Safety, Motivation Techniques

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
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
Oregon State Dept. of Education, Salem. – 1994
This document contains guidelines that help Oregon schools meet the components of Oregon Administrative Rule 581-22-706, Emergency Plans and Safety Programs. The standard mandates that Oregon schools shall maintain a comprehensive safety program for all employees and students. School districts may alter the guidelines provided in this guidebook to…
Descriptors: Disabilities, Elementary Secondary Education, Emergency Programs, Fire Protection
Horn, Toby Mogollon; Frame, Kathy, Ed. – 1993
This document describes ways to work with DNA and host organisms in precollege classrooms. The guidelines are intended to assist the teacher who already has training in working with microbes, DNA, and associated chemicals. The contents of the guidelines include: (1) Permitted DNA molecules, vectors, and recommended host organisms for constructing…
Descriptors: Bacteria, Biochemistry, DNA, High Schools