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Millar, Robin – School Science Review, 2014
The science curriculum to age 16 should be judged on how well it meets the needs of students who progress to A-level science courses and those (a larger number) who do not. To address the diversity of students' interests and aspirations, we need a clear view of the purposes of science education rooted in a view of the purposes of education itself.…
Descriptors: Science Curriculum, Curriculum Design, Science Education, Relevance (Education)
Millar, Robin – Curriculum Journal, 2011
This article considers the extent to which the English National Curriculum for science has influenced practice and learning outcomes, and briefly reviews the mechanisms through which this influence is exerted. It identifies and discusses three central issues for the review that is now in progress: the structure of the science curriculum; the…
Descriptors: Evidence, National Curriculum, Curriculum Development, Scientific Literacy
Shelly, Richard W.; Cannaday, John E., Jr. – NCSSSMST Journal, 1996
Describes a nontraditional, integrated science offering, the goal of which was to use acknowledged benchmarks for a transformed curriculum. Includes content outline, laboratory topics, teaching principles, student expectations, relevance of the discipline, and assessment. Specific suggestions for the transition include providing written materials…
Descriptors: Constructivism (Learning), Course Organization, Educational Change, Educational Objectives
Beauchamp, Wilbur L. – Office of Education, United States Department of the Interior, 1932
This investigation of the teaching of science in secondary schools is based upon the analysis of 58 courses in general science, 45 courses in biology, 27 courses in physics, and 30 courses in chemistry. The courses were obtained from schools in response to a request from the Office of Education for courses which had been revised since 1925. Some…
Descriptors: Educational History, National Surveys, School Statistics, Secondary Education

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