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Vlaardingerbroek, Barend – Teaching Science, 2011
Pseudoscience is a ubiquitous aspect of popular culture which constitutes a direct challenge to science, and by association, to science education. With the exception of politically influential pseudosciences trying to impose themselves on official curricula such as creationism, science education authorities and professional organisations seem…
Descriptors: Popular Culture, Comparative Analysis, Science Education, Science Instruction
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Skamp, Keith – Teaching Science, 2011
The new Australian national science curriculum includes chemistry content at the primary level. Chemistry for young students is learning about changes in material stuff (matter) and, by implication, of what stuff is made. Pedagogy in this area needs to be guided by research if stepping stones to later learning of chemical ideas are to facilitate…
Descriptors: Learning Strategies, Chemistry, Science Curriculum, Elementary School Science
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Fitzgerald, Mike; Brand, Lance – Tech Directions, 2011
The separation of content between science, math, engineering, and technology education should not exist. Working with the relationship between these content areas enhances students' efforts to learn about the physical world--and the Bungee Jump offers one great way to go about it. This article describes an activity called the Egg Bungee Jump which…
Descriptors: Plastics, Science Activities, Musicians, Physical Sciences
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Smith, Emma; Cooke, Sandra – International Journal of Science and Mathematics Education, 2011
The recruitment and training of scientists is an area of international concern. Much of the research and policy focus around this issue in the UK has been on how science is taught in schools and in particular on the structure of the school science curriculum. Much less attention has been devoted to the undergraduate student experience and the…
Descriptors: Undergraduate Students, Comparative Analysis, Sciences, Student Experience
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Aikenhead, Glen S. – Cultural Studies of Science Education, 2010
In the context of educational soundness, a case is made for distinguishing between two overlapping concepts: academic science and relevant science. In the context of political reality, a case is made for a science educator to hone strategies that co-opt, circumvent, or marginalize political adversaries before they do the same to you.
Descriptors: Science Curriculum, Science Education, Science Teachers, Politics of Education
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Çil, Emine; Çepni, Salih – International Education Studies, 2014
International examination results have already influenced many countries to make radical reforms in education system. According to these results countries have been categorized as high, middle and low achievement in education. Turkey has also taken these results into consideration quite seriously and started to investigate to what extent there are…
Descriptors: Science Achievement, Foreign Countries, Science Curriculum, Test Items
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Charlwood, Kevin E. – PRIMUS, 2014
Building an Actuarial Science program designated as advanced requires dedicated faculty, support from the administration, and a core group of strong students. Washburn University may serve as a model for those wishing to start or enhance such a program at their institution. We face three main ongoing challenges: first, the hiring and retention of…
Descriptors: Risk Assessment, College Programs, Program Descriptions, Faculty Recruitment
Kiray, S. Ahmet – Online Submission, 2012
The aim of this study is to develop an integrated scientific and mathematical model that is suited to the background of Turkish teachers. The dimensions of the model are given and compared to the models which have been previously developed and the findings of earlier studies on the topic. The model is called the balance, reflecting the…
Descriptors: Foreign Countries, Integrated Curriculum, Mathematics Curriculum, Science Curriculum
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Kidman, Gillian – EURASIA Journal of Mathematics, Science & Technology Education, 2012
In Australia we are at a crossroads in science education. We have come from a long history of adopting international curricula, through to blending international and Australian developed materials, to the present which is a thoroughly unique Australian curriculum in science. This paper documents Australia's journey over the past 200 years, as we…
Descriptors: National Curriculum, Inquiry, Active Learning, Foreign Countries
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Benke, Gertraud – Cultural Studies of Science Education, 2012
This paper looks at the distinctions between science classrooms and the robotics competition described in the article "Examining the mediation of power in a collaborative community: engaging in informal science as authentic practice" written by Anton Puvirajah, Geeta Verma and Horace Webb. Using the framework of "productive disciplinary…
Descriptors: Informal Education, Student Interests, Robotics, Competition
American Educator, 2012
A solid science education program begins by clearly establishing what well-educated youngsters need to learn about this multifaceted domain of human knowledge. The first crucial step is setting clear academic standards for the schools--standards that not only articulate the critical science content students need to learn, but that also properly…
Descriptors: Elementary Secondary Education, State Standards, Academic Standards, Science Education
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Aydin, Sevgi; Boz, Yezdan – Educational Sciences: Theory and Practice, 2012
As a review study, the present study was carried out in order to introduce PCK construct to researchers and evaluate which aspects of PCK were studied in our country, and, finally, make recommendations in light of the analysis of the studies for further research. For this purpose, ERIC database, YOK (Higher Education Council) database were…
Descriptors: Pedagogical Content Knowledge, Science Teachers, Science Education, Foreign Countries
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Pallant, Amy; Pryputniewicz, Sarah; Lee, Hee-Sun – Science Teacher, 2012
Scientists, and science in general, move from the unknown to increasing levels of certainty. Teaching students about science means encouraging them to embrace and investigate the unknown, make reliable scientific claims, justify those claims with evidence, and evaluate the quality of the evidence. In all areas of science--and especially in…
Descriptors: Science Education, Space Sciences, Secondary School Science, High Schools
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Ojha, Anu; Hill, Sarah – School Science Review, 2012
This article outlines the Space Academy programme led by the National Space Centre from 2008 to 2011 with the stated goals of harnessing the inspirational contexts of space and climate change to support GCSE, A-level and vocational students in their curriculum studies as well as to enhance STEM teacher effectiveness and increase the awareness of…
Descriptors: Climate, Teacher Effectiveness, Vocational Education, Science Education
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Smith, Mark – School Science Review, 2012
This article describes how the Science Department at Shoeburyness High School in Essex introduced a space-themed year 8 (ages 12-13) science course to increase student engagement and motivation. As well as discussing the rationale for such curriculum change, it describes the processes of planning and resourcing the course, and the barriers that…
Descriptors: Learner Engagement, Curriculum Development, Science Curriculum, Science Departments
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