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Showing 91 to 105 of 194 results Save | Export
Alderson, Karen L., Comp. – 1992
Asbestos is a naturally occurring mineral found in several forms and because of its temperature-resisting properties, flexibility, and strength, it was widely used in the construction industry, automobile industry, and textile industry. Asbestos becomes dangerous when it crumbles and breaks releasing fibers that can cause asbestosis and certain…
Descriptors: Asbestos, Cancer, Ceilings, Construction Materials
Peer reviewed Peer reviewed
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
Peer reviewed Peer reviewed
Sollimo, Vincent J. – Journal of College Science Teaching, 1985
A 2-week unit on toxic chemical waste disposal is used in a physical science course for nonscience majors. Descriptions of the unit, supplementary student activities, and student library project are provided. Also provided are selected student responses to a five-question survey on the unit. (JN)
Descriptors: Chemistry, College Science, Hazardous Materials, Higher Education
Los Angeles Unified School District, CA. Office of Secondary Instruction. – 1984
Developed to increase student and teacher awareness of safe laboratory conditions, this guide provides information and suggestions for maintaining a safe laboratory environment. Section 1 contains a listing of potentially hazardous chemicals commonly used in secondary school science classes and section 2 lists potentially hazardous chemicals…
Descriptors: Accident Prevention, Chemical Analysis, Chemistry, Hazardous Materials
Peer reviewed Peer reviewed
Kerr, Richard A. – Science, 1988
Describes the origin, occurrence, and effects of radon gas. Cites studies which attribute 5,000 to 20,000 deaths per year to radon exposure and the synergistic effect between radon and smoking. Explains ways to reduce risks. (RT)
Descriptors: Air Pollution, Cancer, Environmental Influences, Environmental Research
Peer reviewed Peer reviewed
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
Peer reviewed Peer reviewed
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
Peer reviewed Peer reviewed
Tomboulian, Paul; Parrot, Katie – Journal of Chemical Education, 1997
Describes the environmental health major and the toxic substance control specialization at Oakland University in Michigan. Also includes degree requirements and course descriptions. (DKM)
Descriptors: Chemistry, College Science, Course Descriptions, Degree Requirements
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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
Peer reviewed Peer reviewed
Flannery, Maura C. – American Biology Teacher, 1990
Discussed are applications of biochemistry. Included are designed drugs, clever drugs, carcinogenic structures, sugary wine, caged chemicals, biomaterials, marine chemistry, biopolymers, prospecting bacteria, and plant chemistry. (CW)
Descriptors: Biochemistry, Biology, Chemistry, College Science
Peer reviewed Peer reviewed
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
American Chemical Society, Washington, DC. – 1985
Practical information on how to implement a chemical-related safety program is outlined in this publication. Highlights of the federal Occupational Safety and Health Administrations (OSHA) Hazard Communication Standard are presented and explained. These include: (1) hazard communication requirements (consisting of warning labels, material safety…
Descriptors: Accident Prevention, Chemical Industry, Communications, Environmental Standards
Benke, Mary Schaefer – Asbestos Issues '88, 1988
Debates whether children are more susceptible to asbestos-related disease than adults. Addresses the issue of low-level exposure and disease. Discusses the regulatory measures taken by the Environmental Protection Agency (EPA) and Congress to protect children from the potential threat of asbestos exposure. (CW)
Descriptors: Air Pollution, Asbestos, Cancer, College Science
Peer reviewed Peer reviewed
Armour, Margaret-Ann – Journal of Chemical Education, 1988
Describes simple, efficient techniques for treating hazardous chemicals so that nontoxic and nonhazardous residues are formed. Discusses general rules for management of waste chemicals from school laboratories and general techniques for the disposal of waste or surplus chemicals. Lists specific disposal reactions. (CW)
Descriptors: Chemistry, College Science, Hazardous Materials, Laboratory Safety
Peer reviewed Peer reviewed
Fleischman, Marvin – Chemical Engineering Education, 1988
Presents a philosophical commentary on the need and rationale for incorporating safety and health into the chemical engineering curriculum. Proposes safety and health assessments as useful teaching methods. Describes an approach to bringing safety and health into undergraduate engineering curricula. Gives examples of integration of these curricula…
Descriptors: Chemical Engineering, Chemistry, College Science, Engineering Education
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