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Wiebe, Eric N. – Engineering Design Graphics Journal, 1991
Describes an introductory graphics course developed to expose undergraduates in the use of computer-based graphics as both a problem-solving and communication tool within engineering, the sciences, and other technical areas. Discusses course strategy, classroom setup, course content, and various software packages utilized in the course. (Author/KR)
Descriptors: Computer Assisted Instruction, Computer Graphics, Computer Simulation, Course Content

DeTure, Linda R.; And Others – Journal of Science Teacher Education, 1990
Design and implementation of two courses that will better prepare teachers to teach science in the elementary school are described. An interdisciplinary course in chemistry and biology and a companion science methods course were developed and taught by faculty members from the biology, chemistry, and education departments of Rollins College. An…
Descriptors: Affective Behavior, Biology, Chemistry, Course Descriptions

Caceres, L.; And Others – Chemical Engineering Education, 1992
Proposes that inclusion of waste water treatment subjects within the chemical engineering curriculum can provide students with direct access to environmental issues from both a biotechnological and an ethical perspective. The descriptive details of water recycling at a copper plant and waste water stabilization ponds exemplify this approach from…
Descriptors: Chemical Engineering, Conservation (Environment), Course Content, Course Descriptions
Sutter, Gary R. – NCSSSMST Journal, 1998
Describes a course that bridges the gap between pure science and pure technology called Pre-Engineering. This course gives junior and senior students a chance to investigate the possibility of choosing engineering as a major in college as well as to experience hands-on activities, projects, laboratories, problem solving, and computer simulations…
Descriptors: College Bound Students, Computer Simulation, Cooperative Learning, Course Descriptions

Allchin, Douglas; Anthony, Elizabeth; Bristol, Jack; Dean, Alan; Hall, David; Lieb, Carl – Science and Education, 1999
Describes an interdisciplinary science laboratory course for non-majors that uses the history of science as a curricular guide. Profiles two sample projects that consider the importance of teachers to classroom dynamics and the institutional political context. (Author/WRM)
Descriptors: Classroom Environment, Course Descriptions, Higher Education, Instructional Innovation
Bussard, Ellen – 1982
A 3-year project was developed to increase students' abilities to perform competently as professional engineers. The project sought to infuse into existing courses concern for, practice with, and development of three competencies critical to professional success: problem-solving, communication, and value clarification. Eight elementary and…
Descriptors: Communication (Thought Transfer), Competence, Course Content, Course Descriptions
Pedersen, Jon E.; McCurdy, Donald W. – 1990
This study examined how the science methods program at the University of Nebraska, Lincoln affected pre-service elementary teachers' attitudes toward teaching science. A pretest/posttest design was used to evaluate the change in attitude over the course of the semester. Results of the study indicated that the methods course positively influenced…
Descriptors: College Science, Course Descriptions, Elementary Education, Elementary School Science
Baker, Claude D.; And Others – 1990
The importance of experiential aspects of biological study is addressed using multi-dimensional classroom and field classroom approaches to student learning. This document includes a guide to setting up this style of field experience. Several teaching innovations are employed to introduce undergraduate students to the literature, techniques, and…
Descriptors: Biology, College Science, Computer Assisted Instruction, Course Descriptions
Los Angeles Unified School District, CA. Office of Secondary Instruction. – 1984
Biological Science Grade 7, a one semester course in the Los Angeles Unified School District, provides students with opportunities for a comprehensive study of living organisms using an investigative approach. This course outline is designed to assist teachers in planning and implementing daily and weekly lessons and in meeting course objectives.…
Descriptors: Biology, Cognitive Processes, Course Content, Course Descriptions
American Nuclear Society, La Grange Park, IL. – 1986
This document presents a course in the science of nuclear energy, units of which may be included in high school physics, chemistry, and biology classes. It is intended for the use of teachers whose students have already completed algebra and chemistry or physics. Included in this paper are the objectives of this course, a course outline, a…
Descriptors: Behavioral Objectives, Biology, Chemistry, Course Content
United Nations Educational, Scientific, and Cultural Organization, Bangkok (Thailand). Regional Office for Education in Asia and Oceania. – 1980
Presented are syllabi and course outlines which demonstrate how certain curricula of national development programs such as agriculture and health can become useful vehicles for disseminating population education concepts. The descriptions are intended to help instructors identify entry points into which population education topics can be…
Descriptors: Adults, Course Descriptions, Curriculum Development, Developing Nations

Daly, John M.; Sarquis, Jerry L. – Journal of Chemical Education, 1987
Presents a topical outline for a course in chemistry for students in the health professions, as recommended for use by a committee of the American Chemical Society. States that there are several appropriate texts written for courses of this type. (TW)
Descriptors: Chemistry, College Science, Course Content, Course Descriptions
Nelson, Clayton C.; And Others – Engineering Education, 1986
Describes a statics course developed at Texas A&M University in the engineering curriculum which utilizes computer-assisted instruction. Discusses the organization and management of the team that developed the course, the selection of the hardware and software used, and the implementation model and lesson prototype developed for the course.…
Descriptors: College Science, Computer Assisted Instruction, Computer Uses in Education, Course Descriptions

Wuensch, Bernhardt J. – Journal of Chemical Education, 1988
Provides a framework of the disciplines of materials science and engineering as they have developed. Discusses the philosophy, content, and approach to teaching these courses. Indicates the range of crystallographic topics contained in the materials science and engineering curriculum at the Massachussetts Institute of Technology. (CW)
Descriptors: Atomic Structure, Chemistry, College Science, Course Content

Kabel, Robert L. – Chemical Engineering Education, 1988
Introduces some ideas on teaching scaleup in chemical engineering. Discusses the instructional modes and the general and specific topics. Provides two examples of an experiment with equipment and safety issues. Shows the list of actual individual and team projects in an appendix. (YP)
Descriptors: Chemical Engineering, Chemical Industry, College Instruction, Course Content