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Peer reviewedLederman, Norman G.; Zeidler, Dana L. – Science Education, 1987
Reports on a study to test the validity of the assumption that a teacher's conception of the nature of science directly influences his/her classroom behavior. Recommends a redirection in science education to promote more adequate conceptions of the nature of science in secondary schools. (TW)
Descriptors: Cognitive Development, Cognitive Structures, Misconceptions, Science and Society
Peer reviewedTerry, John – Journal of Biological Education, 1987
Discusses the feasibility of using fermenters in secondary school laboratories. Includes discussions of equipment, safety, and computer interfacing. Describes how a simple fermenter could be used to simulate large-scale processes. Concludes that, although teachers and technicians will require additional training, the prospects for biotechnology in…
Descriptors: Biochemistry, Biology, Computer Uses in Education, Computers
Peer reviewedTamir, Pinchas – Journal of Research in Science Teaching, 1988
Reports on a study of the cognitive preferences of twelfth grade students in Israel. Results indicated that, during the last ten years, Israeli students have become more oriented toward application. (TW)
Descriptors: Academic Achievement, Cognitive Style, Foreign Countries, Grade 12
Peer reviewedBlank, Rolf K. – Journal of Research in Science Teaching, 1988
Summarizes the results of a symposium of the National Research Council on the state of research knowledge on teacher quality. Identifies four areas where additional research is needed. (TW)
Descriptors: Elementary School Mathematics, Elementary School Science, Elementary Secondary Education, Mathematics Education
Peer reviewedMerritt, Susan M. – Mathematics and Computer Education, 1988
Argues that education in computer science in secondary schools has not kept pace with curriculum developments for college programs. Suggests definitions to be agreed upon and ways to close the gap between secondary and college programs. (PK)
Descriptors: Articulation (Education), Computer Literacy, Computer Science, Computer Science Education
Peer reviewedEckert, Roger E.; Ybarra, Robert M. – Chemical Engineering Education, 1988
Describes a senior level chemical engineering course at Purdue University that parallels an industrial process development department. Stresses the course organization, manager-engineer contract, evaluation of students, course evaluation, and gives examples of course improvements made during the course. (CW)
Descriptors: Chemical Engineering, Chemistry, College Science, Course Content
Peer reviewedScience and Children, 1988
Reviews six software packages for use with school age children ranging from grade 3 to grade 12. Includes "The Microcomputer Based Lab Project: Motion, Sound"; "Genetics"; "Geologic History"; "The Microscope Simulator"; and "Wiz Works" all for Apple II and "Reading for Information: Level…
Descriptors: Biological Sciences, Computer Software Reviews, Computer Uses in Education, Courseware
Mitchell, Jeff; Owen, Sarah – Clearing, 1988
Describes some of the aspects of the environmental education program at a K-12 school located in the Coast Range of Oregon. Discusses activities relating to wildlife biology, forestry, beekeeping, pesticides, and land use. (TW)
Descriptors: Biology, Ecology, Elementary School Science, Elementary Secondary Education
Peer reviewedLynch, Alan; Jenison, Roland – Engineering Design Graphics Journal, 1987
Demonstrates one method for finding parallel tangents to a cylinder based on geometric properties of the three dimensional representation of the cylinders. Uses rotational transformations to obtain a three dimensional view. Provides a starting point for those studying geometric methods as a lead into computer assisted drafting. (CW)
Descriptors: College Science, Computer Graphics, Computer Uses in Education, Drafting
Peer reviewedShanley, Edward S. – Journal of Chemical Education, 1988
Highlights aspects of safety that are unfamiliar to most laypersons and to many chemists as well. Presents findings that may lend themselves to presentation in chemistry classes. Details flammability tests, vapor space hazards, and the special case of gasoline containers. Provides experimental data relating vent area and internal pressure. (CW)
Descriptors: Accident Prevention, Chemistry, College Science, Fire Protection
Peer reviewedStreitberger, H. Eric – Journal of Chemical Education, 1988
Presents a method to teach science, technology, and society issues under an extra credit format. Describes a seven-stage format for the choice, debate, and evaluation of an issue by the students. Stresses the value of this project in terms of increased student skills and awareness. (CW)
Descriptors: Chemistry, College Science, Debate, Higher Education
Peer reviewedWorthy, Ward – Chemical and Engineering News, 1987
Describes the "Project 1-2-3" levitation kit used to demonstrate superconductivity. Summarizes the materials included in the kit. Discusses the effect demonstrated and gives details on how to obtain kits. Gives an overview of the documentation that is included. (CW)
Descriptors: Chemistry, Engineering, Instructional Materials, Laboratory Procedures
Loui, Michael C. – Engineering Education, 1987
Questions the differences between computer science and computer engineering. Reviews the body of knowledge pertaining to both fields. Asserts that they are essentially the same, and that computer science is a genuine intellectual discipline. (TW)
Descriptors: College Science, Computer Literacy, Computer Science, Computer Uses in Education
Children & Animals, 1987
Presents a set of teaching activities which deal with the pet overpopulation problem while improving students' persuasive writing skills. Includes activities that focus on how people can solve problems by working together. The activities range from songs to a computer simulation. (TW)
Descriptors: Computer Assisted Instruction, Computer Simulation, Courseware, Elementary Education
Peer reviewedBaxter, Martin W. – Physics Education, 1987
Describes an accurate system for measuring speeds and frequencies with a microcomputer. Explains how the system can give a reasonable graphical representation of velocity and acceleration against time. Gives examples of graphs produced by the program and provides an address to obtain the software for their application. (CW)
Descriptors: College Science, Computer Assisted Instruction, Computer Graphics, Courseware


