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| Practitioners | 23 |
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| Researchers | 3 |
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Alberta Dept. of Education, Edmonton. – 1986
The major program components of the Biology 30 curriculum are outlined in this document. These key elements include: (1) process skills; (2) psychomotor skills; (3) attitudes; and (4) concepts (subject matter). Each of the components has been assigned an emphasis rating (expressed in a percentage) and a priority rating (designated by a ranking of…
Descriptors: Biology, Course Descriptions, Course Organization, Grade 12
Silverman, Robert M. – 1983
An introductory human anatomy course designed to provide the basic understanding of human structure necessary for further study in allied health and related fields is described. First, a general course description provides an overview; discusses the courses' place within the science curriculum, noting that it does not meet the general education…
Descriptors: Anatomy, Course Content, Course Descriptions, Course Objectives
Peer reviewedLetcher, Stephen V. – Physics Teacher, 1989
Describes a group-based mastery learning program emphasizing mandatory passing of an examination at the end of each unit. A student has four chances to earn a grade of 85 percent on each examination. Reports results for three semesters and includes evaluations from students and the instructor. Eight references are listed. (YP)
Descriptors: Academic Achievement, College Science, Course Organization, Higher Education
Alberta Dept. of Education, Edmonton. – 1986
The major program components of the Chemistry 30 curriculum are outlined in this document. These key elements include: (1) process skills; (2) psychomotor skills; (3) attitudes; and (4) concepts (subject matter). Each of the components has been assigned an emphasis rating (expressed in a percentage) and a priority rating (designated by a ranking…
Descriptors: Chemistry, Course Descriptions, Course Organization, Foreign Countries
Alberta Dept. of Education, Edmonton. – 1986
The major program components of the Physics 30 curriculum are outlined in this document. These key elements include: (1) process skills; (2) psychomotor skills; (3) attitudes; and (4) concepts (subject matter). Each of the components has been assigned an emphasis rating (expressed in a percentage) and a priority rating (designated by a ranking of…
Descriptors: Course Descriptions, Course Organization, Foreign Countries, Grade 12
Daugs, Donald R. – 1986
The proposed changes and plans for a new science methods course in an elementary teacher education program at Utah State University are discussed in this paper. The course uses a hands-on individualized curriculum which emphasizes an interactive student and teacher problem solving and helping relationship. Information presented in this paper…
Descriptors: College Science, Course Descriptions, Course Organization, Elementary Education
Peer reviewedUlanski, Stanley Leon – Journal of Geological Education, 1987
Reports on an analysis of student evaluations of an introductory college-level physical geology course over a five year period. Indicates that instructional and pedagogical traits were assessed as being of importance in contributing to the satisfaction of the students with the course. (TW)
Descriptors: College Science, Course Evaluation, Course Organization, Geology
Peer reviewedStephens, George Christopher; And Others – Journal of Geological Education, 1987
Describes a six-week, six-credit, field-based physical and historical geology course offered by Lehigh University (Pennsylvania) in conjunction with its standard summer field studies program. Stresses the advantages of integrating physical and historical geology concepts in a field setting. (TW)
Descriptors: College Science, Course Content, Course Descriptions, Course Organization
New York State Education Dept., Albany. – 1986
Developed to complement existing elementary science programs, the materials in this first volume of New York's Elementary Science Supplement to the Syllabus emphasize a direct experience, hands-on approach for children of ages 4 through 7. Major sections include: (1) guidelines for program activities (explaining the organizational format of the…
Descriptors: Course Organization, Elementary School Science, Enrichment Activities, Experiential Learning
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
Peer reviewedBond, Douglas – Journal of Chemical Education, 1989
Discusses changes made since the publication of "A Nation at Risk." Presents a chemistry course in which scientific literacy is a major emphasis. Provides methodology for the course and a listing of the topics for instruction. Notes several criticisms of the approach. (MVL)
Descriptors: Chemical Nomenclature, Chemical Reactions, Chemistry, Course Content
Peer reviewedLocke, David C.; Grossman, William E. L. – Analytical Chemistry, 1987
Reports on the results of a survey of college level instructors of quantitative analysis courses. Discusses what topics are taught in such courses, how much weight is given to these topics, and which experiments are used in the laboratory. Poses some basic questions about the curriculum in quantitative analysis. (TW)
Descriptors: Chemical Analysis, Chemistry, College Science, Content Analysis
Peer reviewedJournal of Dental Education, 1984
The American Association of Dental Schools' guidelines for oral biology curriculum cover its scope, primary educational goals, prerequisites, sequencing, faculty, course content in each subarea (oral tissues and systems and oral diagnostic methodology), and specific behavioral objectives. (MSE)
Descriptors: Anatomy, Behavioral Objectives, Biology, Course Content
Peer reviewedSchearer, W. R. – Journal of Chemical Education, 1988
Presents a flexible teaching method for organic chemistry that retains the advantages of lecturing but eliminates the necessity of having to cover all of the material in class. Describes the organization, preparation, and use of study sheets. Discusses how class activities can be used with this method. (CW)
Descriptors: Advance Organizers, Chemistry, College Science, Course Organization
Peer reviewedBorcherds, P. H. – Physics Education, 1986
Describes an optional course in "computational physics" offered at the University of Birmingham. Includes an introduction to numerical methods and presents exercises involving fast-Fourier transforms, non-linear least-squares, Monte Carlo methods, and the three-body problem. Recommends adding laboratory work into the course in the…
Descriptors: College Mathematics, College Science, Computation, Course Content
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