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Lim, Kieran F.; Long, John M.; White, Peta J.; Bentley, Ian D. – Teaching Science, 2019
The Advancing Science and Engineering through Laboratory Learning (ASELL) for Schools program has been instrumental in getting schools across Australia to reconsider the effectiveness of the laboratory learning activity (LLA) in science education. In Victoria, the ASELL for Schools project has collaborated with another nationally funded program,…
Descriptors: Science Laboratories, Science Education, Teaching Methods, Interdisciplinary Approach

Childress, Vincent W. – Technology Teacher, 2005
Intermodal transportation is the moving of people or cargo using more than one mode of transportation. When a person drives to the airport, stands on a conveyor to move through the terminal, and flies to another city, then he or she is using intermodal transportation. Moving cargo in the first half of the twentieth century was a time-consuming and…
Descriptors: Transportation, Industry, Academic Standards, Science Education
Jones, Natalie; Hughes, Wyn – 1982
This unit, developed by the Third World Science Project, is designed to add a multicultural element to existing science syllabi (for students aged 11-16) in the United Kingdom. The project seeks to develop an appreciation of the: boundless fascination of the natural world; knowledge, skills, and expertise possessed by men/women everywhere;…
Descriptors: Chemical Industry, Cultural Activities, Developing Nations, Elementary School Science

Normile, Dennis – Science, 1994
Describes a collaboration between 10 private companies and 10 professors from 4 universities in an effort to keep researchers on the cutting edge of both the science that underlies future generations of electronic devices and the accompanying fabrication techniques. (ZWH)
Descriptors: Higher Education, Industry, School Business Relationship, Science Education
Hayes, Laurie, Ed. – Chemecology, 1991
Discusses solvent abuse, or the inhalation of chemically intoxicating vapors from consumer products that are otherwise safe when used as intended. Presents a list of products typically abused by children, the statistics which indicate that this problem is on the rise, and the physical warning signs that parents and teachers should not overlook.…
Descriptors: Behavior Disorders, Chemical Industry, Elementary Secondary Education, Inhalants

Jackson, A. T. – Journal of Biological Education, 1985
Scientific ideas of the biological laboratory are turned into economic realities in industry only after several problems are solved. Economics of scale, agitation, heat transfer, sterilization of medium and air, product recovery, waste disposal, and future developments are discussed using aerobic respiration as the example in the scale-up…
Descriptors: Biochemistry, Biology, Chemical Engineering, College Science

Archer, A. C. – Physics Education, 1984
Offers guidelines for school visits to various industries. In addition, points out that industry would like students to know what it is like to work in a factory and that industrial applications should be incorporated into physics courses. (JN)
Descriptors: Educational Objectives, Field Trips, Industry, Physics

Young, J.; Hilyard, N. C. – Physics Education, 1984
Describes the types of industrial studies course offerings available in higher education. Also discusses the bachelor of science program in industrial studies at Sheffield City Polytechnic. The program, which focuses on science-based industry, places equal emphasis on technological and business inputs. (JN)
Descriptors: College Science, Course Content, Course Descriptions, Higher Education

Kremers, Howard E. – Journal of Chemical Education, 1985
The 17 rare earth elements account for one-fifth of the 83 naturally occurring elements and collectively rank as the 22nd most abundant "element." Properties of these elements (including their chemical similarity), their extraction from the earth, and their uses are discussed. (JN)
Descriptors: Chemical Industry, Chemical Reactions, Chemistry, College Science
Rogers, Diana, Ed. – 1994
This document was developed in cooperation with secondary teachers and solid waste management professionals. The goal is to integrate steel recycling, natural resource conservation, and solid waste management into science learning. Basic concepts from the following chemistry units have been used to design the lessons and activities: transition…
Descriptors: Chemistry, Instructional Materials, Metal Industry, Recycling

Davis, J. David; And Others – Journal of Chemical Education, 1986
Recognizing that the vast majority of students will enter the chemical industry, an optional four-course sequence related to industrial chemistry was introduced. Program details are given along with information on how it was integrated into the curriculum of a small school with minimal staff size changes and limited facitlities. (JN)
Descriptors: Chemical Industry, Chemistry, College Science, Higher Education

Science Teacher, 1985
Describes (in five separate articles) successful programs across the country in which business and education have paired up for the benefit of both. They include an intensive six-week summer program in which students join an Iowa State University research team (funded by the Iowa Utility Commission). (JN)
Descriptors: Demonstration Programs, Industry, School Business Relationship, Science Education

Chaplin, M. F. – Journal of Biological Education, 1984
Enzyme technology has a well-established industrial base, with applications that have survived competition. The most prominent applications of enzymes in biotechnology are examined with an explanation of some theoretical background. Topics include extending an enzyme's useful life, partition and diffusion, industrial uses, and therapeutic uses.…
Descriptors: Biochemistry, Chemical Industry, College Science, Enzymes

Lennox, John; Biaha, Thomas – American Biology Teacher, 1991
A quantitative laboratory exercise based upon the procedures copper manufacturers employ to increase copper production is described. The role of chemoautotrophic microorganisms in biogeologic process is emphasized. Safety considerations when working with bacteria are included. (KR)
Descriptors: Bacteria, Chemical Reactions, Geology, Industry

Staskiewicz, Bernard A.; And Others – Journal of Chemical Education, 1984
Describes an undergraduate polymer laboratory program in which the laboratory simulates an industrial organization. The goals of the program are to foster an understanding of the properties of polymers and how they change, their preparation, and industrial application. (JN)
Descriptors: Chemistry, College Science, Higher Education, Industry