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Love, Tyler S.; Roy, Ken R. – Technology and Engineering Teacher, 2017
"Safety Spotlight" encourages the submission of questions from Technology and Engineering (T&E) Educators, and this month's question involves the risks of placing hazardous equipment (e.g., 3D printer, laser cutter, CNC router, etc.) in a non-technology & engineering lab under the supervision of teachers not certified to teach…
Descriptors: Laboratory Safety, Laboratory Procedures, Hazardous Materials, Equipment
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
Qualley, Charles A. – 1986
This book provides information about health and safety hazards in art classrooms. The book outlines a practical plan for an art room safety program. It includes recommendations for providing protective equipment and enlisting students' active participation. Included are sample worksheets and checklists, explanations of legal liability, and…
Descriptors: Accident Prevention, Art Education, Art Materials, Elementary Secondary Education
Online Submission, 2006
The goal of this K-12 science safety resource is to bring together information needed by administrators, planners, teachers and support staff to help them make sound decisions regarding science safety. The document identifies areas for decision making and action at a variety of levels. It supports planning and action by providing information on…
Descriptors: Foreign Countries, Facility Guidelines, Elementary Secondary Education, Safety Equipment
Oltman, Debra L. – 1990
Exposure to certain art materials can damage the human body. Some of these materials are identified together with factors that influence exposure, including duration, frequency, and environmental conditions. Responsibility for providing a safe working environment for the creation of visual arts in the classroom lies with the instructor, principal,…
Descriptors: Adhesives, Art Education, Art Materials, Ceramics
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Ewing, Galen W. – Journal of Chemical Education, 1990
Safety issues specifically related to the analytical laboratory are discussed including hazardous reagents, transferring samples, cleaning apparatus, eye protection, and equipment damage. Special attention is given to techniques which not only endanger the technician but also endanger expensive equipment. (CW)
Descriptors: Accident Prevention, Chemical Analysis, Chemistry, College Science
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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
National Association of Chemical Distributors, Arlington, VA. Educational Foundation. – 1997
This multimedia kit includes a teacher's manual, video, and activity packet. The unique interactive course uses safe, controlled dynamic experiments to teach kids about chemistry, the proper handling of chemicals, and responsible product stewardship. Students are asked to hypothesize about chemical substances, collect and analyze data, and share…
Descriptors: Chemical Reactions, Chemistry, Consumer Protection, Elementary Education
Case, Christine L. – 1989
The Centers for Disease Control (CDC) recommends that schools prepare or adapt a biosafety manual, and that instructors develop a list of safety procedures applicable to their own lab and distribute it to each student. In this way, safety issues will be brought to each student's attention. This document is an example of such a manual. It contains…
Descriptors: Biological Sciences, College Science, Educational Facilities Planning, Emergency Programs
Kirk, Albert S., Ed. – 1988
This guide is intended to alert occupational/technology teachers, teacher educators, school administrators, and industrial education supervisors to the need and importance of a strong and active safety program. Responsibilities are detailed for all individuals involved. Teacher liability is addressed. A section on emergency procedures covers…
Descriptors: Accident Prevention, Administrator Responsibility, Design Requirements, Disabilities
Keller, Thomas E. – 1989
A hands-on approach to science is highly desirable because an inquiry approach to science greatly promotes learning. However when students and teachers manipulate glassware, chemical, and other materials, accidents will happen. Because of this, risk management and safety procedures become an important, integral part of the science curriculum. This…
Descriptors: Accident Prevention, Biology, Chemistry, Elementary School Science
North Carolina State Dept. of Public Instruction, Raleigh. Div. of Vocational Education. – 1990
This manual is designed to involve both teachers and students in planning and controlling a safety system for technology education classrooms. The safety program involves students in the design and maintenance of the system by including them in the analysis of the classroom environment, job safety analysis, safety inspection, and machine safety…
Descriptors: Accident Prevention, Course Content, Design Requirements, Elementary Secondary Education
Oklahoma State Dept. of Vocational and Technical Education, Stillwater. Curriculum and Instructional Materials Center. – 1989
This teacher's guide was developed to help teachers (especially in Oklahoma) promote safe practices on the job. As a supplement to existing programs in the requirements for job safety, this book can also promote same basic safety attitudes and help support basic safety concepts, with an emphasis on accident prevention. The guide contains eight…
Descriptors: Accident Prevention, Behavioral Objectives, Environmental Standards, Fire Protection