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DiCesare, Frank; And Others – Perspectives in Computing, 1985
A general laboratory course featuring microcomputer interfacing for data acquisition, process control and automation, and robotics was developed at Rensselaer Polytechnic Institute and is now available to all junior engineering students. The development and features of the course are described. (JN)
Descriptors: Automation, Course Descriptions, Curriculum Development, Engineering Education
Peer reviewed Peer reviewed
Burnett, Louis E. – Advances in Physiology Education, 1991
The development of a curriculum that integrates laboratory, field, and nonlaboratory experiences in an undergraduate biology department is described. Some of the laboratory experiences provided students in a Principles of Biology course and how other parts of the upper division curriculum are structured around these key experiments are discussed.…
Descriptors: Biology, Course Descriptions, Curriculum Development, Higher Education
Peer reviewed Peer reviewed
Dowling, John, Jr. – American Journal of Physics, 1975
Presents the advantages and disadvantages associated with the canned computer lab from the educational and software aspects. Summarizes two years of experience with canned labs and gives an example of a program and a typical student output. (GS)
Descriptors: College Science, Computer Assisted Instruction, Curriculum Development, Higher Education
Peer reviewed Peer reviewed
Crawford, F. W.; Ilic, D. B. – American Journal of Physics, 1976
The evolution of a laboratory oriented undergraduate plasma physics course is described. Brief accounts of the 14 experiments utilized in the course are provided. (CP)
Descriptors: College Science, Course Descriptions, Curriculum Development, Higher Education
Peer reviewed Peer reviewed
Bergeson, Haven E. – American Journal of Physics, 1975
Describes a one-quarter introductory electronics course in which the students use a variety of inexpensive integrated circuits to design and construct a large number of useful circuits. Presents the subject matter of the course in three parts: linear circuits, digital circuits, and more complex circuits. (GS)
Descriptors: College Science, Course Content, Course Descriptions, Curriculum Development
Peer reviewed Peer reviewed
Raw, Isaias; And Others – Journal of College Science Teaching, 1975
Describes a chemistry curriculum for college freshmen that uses laboratory study of the chemical composition of meals eaten by students as the central activity from which theoretical and practical learning are derived. Presents a meal analysis flow diagram and a table of concepts included in the program. (GS)
Descriptors: Chemistry, College Science, Course Content, Curriculum Development
Peer reviewed Peer reviewed
Carroll, M.; And Others – School Science Review, 1975
Describes the apparatus of a chemistry kit that also contains a pupil's manual and a teacher's guide. (LS)
Descriptors: Chemistry, Curriculum Development, Developing Nations, Educational Media
Peer reviewed Peer reviewed
Munn, R. W.; Pratt, A. C. – Education in Chemistry, 1975
Feeling that projects in chemistry could be used effectively to enhance appreciation of chemistry, a project-based course for the first-year sixth formers was developed in 1973 and because of its success another was organized. Projects from both courses are described. (EB)
Descriptors: Chemistry, Curriculum Development, Instruction, Laboratory Experiments
Peer reviewed Peer reviewed
Chaplin, G. B. B. – Physics Education, 1976
Provides the syllabus for an advanced level (A-level) electronics course in which communication computer and feedback systems are analyzed. (CP)
Descriptors: Course Descriptions, Curriculum Development, Electronics, Instructional Materials
Peer reviewed Peer reviewed
Sundberg, Marshall – Bioscience, 1991
Reviews the work of the Commission on Undergraduate Education in the Biological Sciences (CUEBS) from 1964 to 1972. Suggests that now is the appropriate time to reassess their efforts, to build on their successes, and to use their experience to attack some of the continuing problems facing biology education. (21 references) (KR)
Descriptors: Biology, Curriculum Development, Educational Change, Evaluation
2000
This CD-ROM consists of simulation software that allows students to conduct countless experiments using 20 Java simulators and curriculum units that explore light and color, forces and motion, sound and waves, static electricity and magnetism, current electricity, the nature of matter, and a unit on underpinnings. Setups can be designed by the…
Descriptors: Acoustics, Computer Simulation, Curriculum Development, Electricity
Peer reviewed Peer reviewed
Zoller, Uri – Journal of Chemical Education, 1979
A description is given of a chemically-oriented curriculum on "Smoking and Cigarette Smoke" for science and nonscience oriented high school students. Laboratory activity is emphasized. (SA)
Descriptors: Chemistry, Curriculum Development, Decision Making, Health Education
Peer reviewed Peer reviewed
McIntosh, William J.; Caprio, Mario W. – Journal of College Science Teaching, 1990
Reported is a profile of nonmajor instruction determined through a nationwide survey of college and university professors who teach introductory courses to non-science majors. The purpose of the survey was to identify the critical issues and problems that exist related to this population of students. (KR)
Descriptors: College Curriculum, College Science, Curriculum Development, Curriculum Evaluation
Peer reviewed Peer reviewed
Mathias, Lon J.; Storey, Robson, F. – Journal of Chemical Education, 1986
Describes the Mississippi Governor's School, an intensive three-week summer school for gifted high school students. Explains format of major courses, use of the American Chemical Society computer course in polymer chemistry, discussion sections, and hands-on laboratory. (JM)
Descriptors: Academically Gifted, Admission Criteria, Chemistry, Computer Assisted Instruction
Peer reviewed Peer reviewed
Howard, Robert E.; And Others – Journal of Chemical Education, 1989
Describes a year long laboratory program for third, fourth, and fifth graders. States the goal of the program is to demonstrate what chemistry is, how it is done, and why it is fun and interesting. Provides a syllabus of the experiments and lists educational objectives. (MVL)
Descriptors: Chemical Reactions, Chemistry, Curriculum Development, Elementary Education
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