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Education in Science, 1979
The use of pesticides in the schools is discussed. Some potential hazards include seeds dressed with fungicide/insecticide mixtures, fumigation of animal houses and greenhouses, and storage and disposal of pesticides. (SA)
Descriptors: Agricultural Supplies, Biological Sciences, Guidelines, Health
Bonfadini, John E. – Industrial Education, 1976
A list of major topic headings describing Occupational Safety and Health Act requirements that have some significance for the industrial arts learning environment and possible equipment needs and considerations. A 30-item Laboratory Safety Evaluation Form is included. (HD)
Descriptors: Equipment Standards, Facility Requirements, Federal Legislation, Industrial Arts

Hensley, Lynn – Science Teacher, 2002
Considers important procedures and policies for new teachers to consider during the first few weeks of school. Focuses on organization, engaging students, learning outside the classroom, and lab activity safety. (DDR)
Descriptors: Beginning Teachers, Knowledge Base for Teaching, Laboratory Safety, Secondary Education

Maes, Alison – Science Teacher, 2002
Presents ideas to assist first year teachers in getting and staying organized. Includes file ideas, a basic supply list, and prompts for possible questions to ask as a new staff member. (DDR)
Descriptors: Beginning Teachers, Knowledge Base for Teaching, Laboratory Safety, Secondary Education

Beasley, Warren F. – Australian Science Teachers Journal, 1993
Presents an alternative approach to teaching laboratory chemistry that considers issues such as safety, waste disposal, and cost. Focuses on the micro-scale approach and discusses a number of positive benefits that can be gained from adopting this approach. (DDR)
Descriptors: Chemistry, Educational Change, Educational Strategies, Foreign Countries

Cronin-Jones, Linda L. – Science Teacher, 1990
Described is a demonstration science laboratory at the University of Florida. Discussed is laboratory design, including instructional space, lab stations, sink areas, safety areas, and a storage and distribution area. The impact of this type of design is cited. Diagrams and photographs are included. (CW)
Descriptors: Demonstration Centers, Facilities, Laboratories, Laboratory Equipment

Gannaway, Susan P. – Journal of Chemical Education, 1990
Findings from a survey of 20 liberal arts colleges which did not have graduate programs in chemistry are presented. Discussed are regulations, actions taken and costs of academic laboratories regarding the disposal of hazardous waste. (CW)
Descriptors: Chemistry, College Science, Faculty, Hazardous Materials

Rayner-Canham, Geoffrey; Layden, William – Journal of College Science Teaching, 1989
Describes a science presentation which promotes various ways to improve laboratory safety. Recommendations for storing chemicals include: minimize the type and amount of stocked materials, purchase certain chemicals in small quantities, and use plastic embedments. Cites several books for reference. (RT)
Descriptors: Chemistry, College Science, Hazardous Materials, Laboratory Equipment

Shmaefsky, Brian R. – Journal of College Science Teaching, 1993
Describes the use of practice weighings and handling of fluorescent compounds to assist in teaching students safe-handling techniques. (PR)
Descriptors: Chemistry, College Science, Hazardous Materials, Higher Education

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

Borrows, Peter; Vincent, Ray; Cochrane, Allen – School Science Review, 1998
Recommends beginning certain chemistry courses with revision and consolidation of mole calculations. Argues that by choosing examples related to health and safety, mole calculations can be made less academic while raising student awareness of important issues. (DDR)
Descriptors: British National Curriculum, Chemical Reactions, Chemistry, Concept Formation

Harris, Mary E. – Science Scope, 2002
Describes how latex-based creatures are made and used to explore various topics in inquiry-based middle school science. Provides a variety of sample data and includes sections on safety concerns and chemistry notes for the teacher. (DDR)
Descriptors: Biology, Chemistry, Data Analysis, Data Collection
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
Johnson, Donald M.; Schumacher, Leon G. – 1988
A study was conducted to determine the laboratory management competencies needed by secondary agriculture instructors. Information was gathered through an initial mailing to all postsecondary, college, and university agricultural mechanics specialists serving on the National Future Farmers of America Agricultural Mechanics Contest Committee,…
Descriptors: Agricultural Education, Agricultural Engineering, Competence, Competency Based Education
Dean, Robert A.; And Others – 1978
This safety guide for elementary school science teachers who plan science activities or laboratories for their students, presents information in the form of a flip chart that can be posted in the classroom and referred to in an emergency. Space is provided for emergency telephone numbers. A safety checklist is given for the teacher. Topics…
Descriptors: Educational Resources, Elementary Education, Elementary School Science, First Aid