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Dyrli, Odvard Egil – Learning, 1981
During the late sixties and early seventies a new nontextbook, lab-centered approach was used in science instruction in elementary grades. With the arrival of the eighties, science curriculum has come full circle, and new science textbooks with corresponding curriculum guides are being adopted. (JN)
Descriptors: Curriculum Development, Elementary Education, Elementary School Science, Science Curriculum
Peer reviewedHenson, R. C.; Stumbles, A. M. – School Science Review, 1979
Discusses how modern mathematical language can be used to develop chemical ideas in class. Examples for the application of Venn Diagrams and Flow Diagrams in teaching chemistry in the Nuffield courses are presented. (HM)
Descriptors: Chemistry, College Science, Higher Education, Instruction
Peer reviewedCole, Tom; Tribe, Michael – Journal of Biological Education, 1979
The analysis of data from a survey of lecturers and students in 13 universities/university colleges, together with evidence from other independent sources, shows that the introduction in the sixth form of a common core biology syllabus with specialist options is desirable. (Author/MA)
Descriptors: Biology, Core Curriculum, Curriculum Design, Curriculum Evaluation
Peer reviewedSolomon, Joan – Physics Education, 1981
A teacher's viewpoints and comments on the core syllabus for A-level physics which appeared in the May 1980 issue of "Physics Education" are presented. (SK)
Descriptors: Core Curriculum, Course Content, Course Descriptions, Curriculum Development
Peer reviewedChambers, R. G. – Physics Education, 1981
Summarizes a university professor's viewpoints and comments on the advantages and disadvantages of the core syllabus for A-level physics presented in the May 1980 issue of "Physics Education." (SK)
Descriptors: Core Curriculum, Course Content, Course Descriptions, Curriculum Development
Peer reviewedTebbutt, M. J. – Physics Education, 1981
Summarizes the viewpoints and comments of a science educator on the core syllabus for A-level physics which appeared in the May 1980 issue of "Physics Education," including the nature of the syllabus, its lack of clarity or detail, and its lack of scope. (SK)
Descriptors: Core Curriculum, Course Content, Course Descriptions, Curriculum Development
Peer reviewedChemical and Engineering News, 1981
Describes a study of currently available introductory chemistry textbooks for nonchemistry majors. Investigators (one philosopher and one chemist) read books and noted instances of value judgments and content. Findings include uniformity in factual content, and an abundance of value judgments on social, political, and economic issues. (DS)
Descriptors: Chemistry, College Science, Higher Education, Instructional Materials
Peer reviewedHalliday, J. S. – Physics Education, 1981
Analyzes the relationship between learning objectives and assessment items for Technical Education Council physics courses. Suggests improvements. (SK)
Descriptors: College Science, Course Evaluation, Course Objectives, Evaluation Methods
Peer reviewedLucas, Keith B. – Science Education, 1981
Discusses five major objectives projected for science education based on current literature regarding science curriculum and development. Literature sources include "Small is Beautiful,""Education and the Spirit of Science," and the works of two curriculum developers, Theodore Brameld and Ralph Tyler. (CS)
Descriptors: College Science, Curriculum Development, Educational Objectives, Elementary School Science
Peer reviewedCervellati, R.; Perugini, D. – Journal of Chemical Education, 1981
Freshmen college students (N=290) were asked, "What is an atomic orbital?" as a measure of their knowledge after completing high school chemistry. Results suggest that high school chemistry be divided into two levels: (1) procedures and interpretations of classical chemistry and (2) introduction of elementary quantum chemical concepts.…
Descriptors: Atomic Structure, Chemical Bonding, Chemistry, College Students
Peer reviewedScience and Children, 1981
Reviews four science curriculum materials. "Human Issues in Science" presents social consequences of science and technological developments. "Experiences in Science" contains duplicating masters to supplement basic science programs. "Outdoor Areas as Learning Laboratories" includes activities for local environments. "The Science Cookbook" uses…
Descriptors: Elementary Education, Elementary School Science, Environmental Education, Filmstrips
Huebner, Jay S. – Aviation/Space, 1980
Describes an upper-division science course offered at the University of North Florida, Colonization of Space. The course presents several current issues in the areas of physical science and includes topics in science and technology likely to influence the future lives of present college students. (CS)
Descriptors: College Science, Course Descriptions, Current Events, Futures (of Society)
Peer reviewedScience, 1980
Describes North Carolina's state supported residential high school for highly able students in science and mathematics. The school is viewed as a training ground for leading scientists and mathematicians to improve science and mathematics instruction in all the state's schools. Emphasis is on expanded courses in science and mathematics. (Author/DS)
Descriptors: Academically Gifted, Experimental Schools, High Schools, Mathematics Curriculum
Peer reviewedCohen, Sheldon H. – Journal of Chemical Education, 1980
Outlines a five-week chemistry program designed by university faculty for junior high students with a strong interest in science. (CS)
Descriptors: Chemistry, Course Descriptions, Elective Courses, Junior High Schools
Peer reviewedKenney, C. N. – Chemical Engineering Education, 1980
Describes a course, including content, reading list, and presentation on chemical reactors at Cambridge University, England. A brief comparison of chemical engineering education between the United States and England is also given. (JN)
Descriptors: Chemical Industry, Chemical Reactions, Chemistry, College Science


