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Showing 1 to 15 of 17 results Save | Export
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Peacock, Alan; Dunne, Mick – Primary Science, 2014
In this "Primary Science" interview, science educators Alan Peacock and Mick Dunne reflect on their own experiences of what science was like in England before a National Curriculum was introduced. Among the topics covered are: earliest memories of science in school, teaching science before 1988 (pre-science curriculum for primary…
Descriptors: Science Education, Science Education History, Science Curriculum, Teacher Attitudes
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Cardellini, Liberato – Journal of Chemical Education, 2013
After providing some glimpses of his private life, Peter Fensham, a leading figure of the prestigious Faculty of Education, Monash University (and now emeritus professor at Queensland University, Brisbane, Australia), gives some suggestions about the conditions that help students to learn meaningfully. He began his career in the field of physical…
Descriptors: Interviews, Science Education, Constructivism (Learning), Foreign Countries
Fulgham, Susan M.; Shaughnessy, Michael F. – Educational Technology, 2014
Susan M. Fulgham and Michael F. Shaughnessy, Contributing Editors for this journal, present their interview with Marcia C. Linn, Professor of Development and Cognition, specializing in education in mathematics, science, and technology, in the Graduate School of Education at the University of California, Berkeley. Linn is currently investigating…
Descriptors: Interviews, Formative Evaluation, Summative Evaluation, Alternative Assessment
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Manthey, Seth; Brewe, Eric – CBE - Life Sciences Education, 2013
University Modeling Instruction (UMI) is an approach to curriculum and pedagogy that focuses instruction on engaging students in building, validating, and deploying scientific models. Modeling Instruction has been successfully implemented in both high school and university physics courses. Studies within the physics education research (PER)…
Descriptors: Physics, Self Efficacy, Curriculum Design, Biology
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Duncan, Douglas K.; Arthurs, Leilani – Astronomy Education Review, 2012
Student attitudes about learning science and student ideas about the nature of science were compared at the end of two astronomy courses taught in Fall 2007, a course with a traditional astronomy curriculum and a transformed course, whose traditional astronomy curriculum was supplemented by an embedded curriculum that explicitly addressed the…
Descriptors: Majors (Students), Student Attitudes, Scientific Principles, Astronomy
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Treacy, Páraic; O'Donoghue, John – International Journal of Mathematical Education in Science and Technology, 2014
Attempts at integrating mathematics and science have been made previously but no definitive, widely adopted teaching model has been developed to date. Research suggests that hands-on, practical, student-centred tasks should form a central element when designing an effective model for the integration of mathematics and science. Aided by this…
Descriptors: Classroom Techniques, Models, Integrated Curriculum, Mathematics Curriculum
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Teo, Tang Wee – Journal of Curriculum Studies, 2012
"Potemkin schools" is used as the phrase to capture what a US science, technology, engineering, and mathematics (STEM) public speciality high school becomes as a result of its institutional branding. By way of an examination of the efforts of one teacher drawn into school branding through his "inquiry-based reform" of an Advanced Chemistry course,…
Descriptors: Curriculum Development, Educational Change, Science Instruction, Science Curriculum
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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
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Duncan, Ravit Golan; El-Moslimany, Hebbah; McDonnell, Janice; Lichtenwalner, Sage – Journal of Technology and Teacher Education, 2011
The development of inquiry and project-based materials is challenging in many ways, not the least of which is the design of supports for teachers implementing such materials. We report on the design of educative and just-in-time teacher supports for an online project-based unit in ocean science. The teacher supports were visible as tabs on the…
Descriptors: Student Projects, Oceanography, Active Learning, Teacher Attitudes
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Coppola, Brian P.; And Others – Journal of Chemical Education, 1997
Describes an undergraduate chemistry curriculum that capitalizes on the strengths of mechanistic organic chemistry. Enables students to grasp the conceptual unity that allows professional chemists to understand unfamiliar results according to few well-defined principles. Describes some instructional strategies that evolved from efforts to connect…
Descriptors: Chemistry, Concept Mapping, Educational Strategies, Evaluation
Clearing, 1995
Reports the results of a survey that assesses the breadth of implementation of environmental education in local public schools, the integration of environmental education within the existing school curriculum, and the impact environmental education has had on the school. (DDR)
Descriptors: Educational Change, Elementary Secondary Education, Environmental Education, Interviews
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Coyle, Harold P. – Mercury, 1994
Explains the philosophy that forms the basis of a high school physical science course based on astronomy and the activity-based textbook that accompanies it. Cites specific examples of misconceptions related to astronomy and recommends various diagnostic and concept change strategies. (DDR)
Descriptors: Astronomy, Cognitive Structures, Concept Formation, Course Content
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Powell, J. P.; Cracknell, G. – Research in Science and Technological Education, 1987
Studies the interviews of 24 professional scientists to seek their views on the long range effects of their initial training. Analyzes the interviews for content, teaching, and types of learning experience. Concludes with a discussion of the implications of the findings for science education. Argues for a reduction in content. (CW)
Descriptors: Academic Achievement, College Faculty, College Science, Foreign Countries
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Renaud, Jessica; Squier, Christopher; Larsen, Sarah C. – Journal of Chemical Education, 2006
A communicating science module was introduced into an advanced undergraduate physical chemistry laboratory course. The module was integrated into the course such that students received formal instruction in communicating science interwoven with the chemistry laboratory curriculum. The content of the communicating science module included three…
Descriptors: Audiences, Chemistry, Laboratory Experiments, Undergraduate Students
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Warwick, Paul; Siraj-Blatchford, John – International Journal of Science Education, 2006
The development of a science education that includes a focus upon the nature of science suggests the need for "pedagogic tools" that can be used to engage children with the procedural understandings that are central to the scientific approach to enquiry. This paper reports on a collaborative action research project that focused on the…
Descriptors: Case Studies, Action Research, Foreign Countries, Elementary School Students
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