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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)
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Furuto, Linda H. L. – International Journal for Mathematics Teaching and Learning, 2015
This study comes at an opportune moment for Japanese and U.S. educators, policymakers, and researchers given the trends of global policy and equity-based reform. Discussions of academic achievement in both societies allow us to examine accessibility in mathematics education in order to best prepare teachers to serve the needs of students.…
Descriptors: Foreign Countries, Mathematics Education, Equal Education, Educational Change
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Braathe, Hans Jorgen – International Journal of Educational Research, 2012
Late and limited organisational differentiation is a characteristic which has, until now, distinguished the structure of education -- including teacher education - in the Nordic countries from that of the rest of Europe. However, this tradition is now challenged by utilitarian ideologies, supported by international comparison tests such as PISA…
Descriptors: Foreign Countries, Teacher Education, Ideology, Discourse Analysis
Department for Education, 2011
The Government is committed to ensuring that the new National Curriculum compares favourably with the curricula in the highest performing jurisdictions, and sets rigorous requirements for pupil attainment which measure up to the highest standards set internationally. The Government is also committed to slimming the National Curriculum so that it…
Descriptors: Foreign Countries, Science Curriculum, Mathematics Curriculum, Evidence
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Aubusson, Peter – Australian Journal of Education, 2011
Science schooling enjoys high status. Scientific capability is perceived as critical in underpinning economic success in advanced societies. Science achievement, at all levels, has become a global competition in which nations want to be seen to triumph. Governments periodically pay close attention to science education with a view to ensuring it…
Descriptors: Foreign Countries, Futures (of Society), Educational Trends, Curriculum Development