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Eisenhower National Clearinghouse for Mathematics and Science Education, Columbus, OH. – 1995
This document is a comprehensive directory of Federal Offices, programs, and facilities for K-12 education in mathematics and science for the Southeast Region. The purpose of this directory is to assist educators, parents, and students in attaining the National Education Goals, particularly Goal 4: "By the year 2000, U.S. students will be…
Descriptors: Elementary Secondary Education, Federal Programs, Mathematics Curriculum, Mathematics Education
Eisenhower National Clearinghouse for Mathematics and Science Education, Columbus, OH. – 1995
This document is a comprehensive directory of Federal offices, programs, and facilities for K-12 education in mathematics and science for the Southwest Region. The purpose of this directory is to assist educators, parents, and students in attaining the National Education Goals, particularly Goal 4: "By the year 2000, U.S. students will be…
Descriptors: Elementary Secondary Education, Federal Programs, Mathematics Curriculum, Mathematics Education
Sevilla, Jennifer; Marsh, David D. – 1992
The purpose of this study is to examine patterns of implementation of an inquiry-oriented science program for elementary school students. Project SEED (Science for Early Education Development) is a hands-on science education program for elementary school students in grades kindergarten through 5th. Teachers in 20 elementary schools in Pasadena…
Descriptors: Elementary Education, Elementary School Teachers, Hands on Science, Inquiry
Peer reviewedMcCormick, Terence – Social Science Record, 1975
A five week outdoor summer science class emphasizing student involvement is described. (DE)
Descriptors: Course Content, Environmental Education, Learning Activities, Outdoor Education
Peer reviewedHough, Michael, Ed. – Australian Science Teachers Journal, 1977
Reviews various activities, interests, procedures, innovations, and courses in science education being conducted in the different Australian states. (SL)
Descriptors: Curriculum, Educational Innovation, Educational Programs, Instruction
Peer reviewedOrlich, Donald C. – Science and Children, 1985
Outlines and discusses elements for designing elementary school science programs, considering: goals and objectives; scope; sequence (arrangement dependent on logic, topic, hierarchy, developmental psychology, or combinations); instructional strategies; evaluation; and inservice education. Also suggests that textbooks serve as points to begin the…
Descriptors: Curriculum Development, Elementary Education, Elementary School Science, Inservice Teacher Education
Peer reviewedLast, Arthur M.; And Others – Journal of College Science Teaching, 1984
Describes an innovative freshman chemistry program in which course sequences have been designed to accommodate students with strong or weak chemistry backgrounds or with no previous chemistry at all. Includes information on courses offered, instructional strategies, and laboratory examinations. (JN)
Descriptors: Chemistry, College Science, Program Descriptions, Science Curriculum
Peer reviewedBrown, Carol Bentley – Journal of Chemical Education, 1985
Describes the science program at Incarnate Word, a private Catholic girls' college preparatory school in San Antonio (Texas). Focuses on the chemistry curriculum and the instructional strategies/materials (such as learning activity packets) used in the curriculum. (JN)
Descriptors: Catholic Schools, Chemistry, Females, High Schools
Peer reviewedBodey, D. W. – Physics Education, 1985
The Advanced Physics Project for Independent Learning (Appil) consists of 10 units based on three themes, namely, materials, forces and fields, and waves. Discusses the content and aims of the project, its emphasis on student-centered learning, managerial advantages, characteristics of the teacher's role, resource implications, and other topics.…
Descriptors: Curriculum Development, Independent Study, Physics, Program Administration
Peer reviewedGega, Peter C. – Science and Children, 1982
Four approaches may be used to convert an existing textbook science program into a district science program. These include correlated resource, chapter, lesson, and generalized approaches, each approach using an adopted textbook series as a base (determining subject scope/sequence) into which local aims and resources may be integrated. (Author/JN)
Descriptors: Curriculum Development, Educational Change, Elementary School Science, Elementary Secondary Education
Peer reviewedGardner, Marjorie H.; Yager, Robert E. – Science Teacher, 1983
Compares science education in the United States to that in Germany, France, Japan, People's Republic of China, Soviet Union, Thailand, and the United Kingdom. Includes a list of science education endeavors in each of these countries to stimulate discussion of how to improve the situation in the United States. (JN)
Descriptors: Educational Practices, Educational Quality, Elementary Secondary Education, Foreign Countries
Peer reviewedRawson, D. H. W.; Rawcliffe, C. T. – Education in Chemistry, 1980
Presents a discussion of the types of unit used in the various Technical Education Council Programs, and the consultation procedures with industry which are required for unit development. (Author/SA)
Descriptors: Chemistry, Consultation Programs, Industry, Paraprofessional Personnel
Crawford, Graham – SASTA Journal, 1980
Describes primary science education in Australia from the 1960s to the present. Suggests what changes should be made in the primary science curriculum and how these changes could be implemented. (DS)
Descriptors: Curriculum Development, Educational Assessment, Educational Change, Educational Trends
Peer reviewedForbes, Eric G. – European Journal of Science Education, 1981
Briefly describes and compares the state-of-the-art of undergraduate and graduate programs and research related to the history of science in the United States, USSR, West Germany, and Great Britain. (DS)
Descriptors: College Science, Foreign Countries, Higher Education, Research
Peer reviewedPerlmutter, Samuel H. – Journal of Chemical Education, 1981
Describes teaching an activity-oriented high school chemistry course during a six-week summer session, including personal experiences of the teacher, laboratory activities completed, examinations, parental involvement, and some innovations that worked. (JN)
Descriptors: Chemistry, Course Descriptions, Science Curriculum, Science Education


