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Showing 1 to 15 of 27 results Save | Export
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Whannell, Robert; Quinn, Fran; Taylor, Subhashni; Harris, Katherine; Cornish, Scott; Sharma, Manjula – Teaching Science, 2018
Australian science curricula have promoted the use of investigations that allow secondary students to engage deeply with the methods of scientific inquiry, through student-directed, open-ended investigations over an extended duration. This study presents the analysis of data relating to the frequency of completion and attitudes towards long…
Descriptors: Science Instruction, Inquiry, Secondary School Students, Secondary School Science
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Liston, Maeve; Hennessy, Niamh – Teaching Science, 2018
The aim of this research was to explore the use of children's stories as a methodology in the primary science curriculum. This paper reports on a pilot project involving the design and development of science lessons integrating the book, 'We're All Going on a Bear Hunt', with children ranging in age from 6-8 years old in two different primary…
Descriptors: Elementary School Students, Elementary School Science, Scientific Literacy, Science Process Skills
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Wines, Chris; Pfeiffer, Linda; Scott, Amanda; Woolcott, Geoff – Teaching Science, 2018
This article illustrates an enhancement and lesson-delivery process used to engage classroom students in primary school science lessons. In the enhancement process, university educators and pre-service teachers collaborated with local experts to prepare lessons based in local or regional contexts. Lessons were designed to enable students to think…
Descriptors: Learner Engagement, Active Learning, Inquiry, Elementary School Science
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Hicks, Sylvia; MacDonald, Shane; Martin, Ela – Teaching Science, 2017
The term scientific literacy is increasingly used by governments and teaching bodies, stemming from a growing international concern by scientists and government, who recognize the economic significance of developing scientific skills (McGregor & Kearton, 2010). However, in a society that requires students to be scientifically literate,…
Descriptors: Scientific Literacy, Science Process Skills, Skill Development, STEM Education
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Hilton, Annette; Hilton, Geoff – Teaching Science, 2016
In many scientific contexts, students need to be able to use mathematical knowledge in order to engage in scientific reasoning and problem-solving, and their understanding of scientific concepts relies heavily on their ability to understand and use mathematics in often new or unfamiliar contexts. Not only do science students need high levels of…
Descriptors: Science Instruction, Mathematics Skills, Mathematical Concepts, Problem Solving
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Preston, Christine – Teaching Science, 2016
Young children love to draw, and should be encouraged to explore drawing as a communication tool. Drawing is a means by which children can express their thoughts, interests and feelings, long before they learn to write. We know that: "children's drawings are vehicles for expression and communication" (Chang, 2012, p. 187). This form of…
Descriptors: Early Childhood Education, Young Children, Science Education, Science Instruction
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Teaching Science, 2016
Science teachers, whether in primary or secondary schools, are in the front line for creating a more scientifically literate community. This article describes the STEM X Academy, a program created with the following goals: (1) demystify Science, Technology, Engineering, and Mathematics (STEM); (2) help teachers transform their teaching with…
Descriptors: Science Teachers, Science Education, STEM Education, Program Descriptions
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Tytler, Russell; Symington, David – Teaching Science, 2015
There is considerable evidence suggesting that students in rural schools lag behind their city counterparts in measures of science literacy and attitude to science learning. If we are to address this situation we need to build as full a picture as we can of the key features of what is a complex and varied rural schooling context. In this article…
Descriptors: Foreign Countries, Science Instruction, Rural Schools, Educational Innovation
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Moore, Simon; Dawson, Vaille – Teaching Science, 2015
Science education involves students learning explanations of natural phenomena which are neither obvious nor intuitive. Generally, they have been arrived at and refined by years of dedicated inquiry on the part of large scientific communities. At the same time, these phenomena often concern the objects of everyday experience regarding which…
Descriptors: Physics, Scientific Concepts, Science Education, Science Instruction
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Murcia, Karen – Teaching Science, 2013
Nanotechnology is guided by the assumption that with the ability to shape or re-shape at the molecular level, we could manipulate the physical world. Some speculate that this ability will be the beginning of the next technological revolution. Hence, an aim of secondary science education should be the development of scientifically literate citizens…
Descriptors: Secondary School Students, Student Attitudes, Science Curriculum, Curriculum Development
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Marsack, Peter; Shepherd, Lee-Anne; Bartlett, Anni – Teaching Science, 2013
Australia State of the Environment 2011 (SoE 2011) is a comprehensive review of the Australian environment, providing an independent and authoritative snapshot of the state of our continent. The report presents relevant and useful information to the public and decision makers to improve understanding of environmental issues and support better…
Descriptors: Science Teachers, Educational Resources, Teaching Guides, Environmental Education
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Downs, Nathan; Larsen, Kim; Parisi, Alfio; Schouten, Peter; Brennan, Chris – Teaching Science, 2012
A practical exercise for developing a simple cost-effective solar ultraviolet radiation dosimeter is presented for use by middle school science students. Specifically, this exercise investigates a series of experiments utilising the historical blue print reaction, combining ammonium iron citrate and potassium hexacyanoferrate to develop an…
Descriptors: Chemistry, Foreign Countries, Science Curriculum, Investigations
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Peter Hudson – Teaching Science, 2012
Curricula integration presents possibilities for broadening and deepening students' learning, yet more models are required for teachers to engage effectively in curricula integration. Utilising other subject areas to enhance science learning can extend the science curriculum, particularly in primary schools. Linking standards from subject areas…
Descriptors: Foreign Countries, Learning Experience, Science Curriculum, Science Activities
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Van Rooy, Wilhelmina; Moore, Leah – Teaching Science, 2012
This article discusses using students' analysis of media coverage of the March 2011 Japanese earthquake, tsunami and nuclear events to develop their knowledge and understanding of geological concepts and related socio-scientific issues. It draws on news reported at that time, identifies themes in those reports, and suggests how this event can be…
Descriptors: News Reporting, Foreign Countries, Criticism, Scientific Literacy
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Hudson, Peter – Teaching Science, 2012
As indicated in a previous Teaching Science article, effective planning for curricula integration requires using standards from two (or more) subject areas (e.g., Science and English, Science and Art or Science and Mathematics), which also becomes the assessment foci for teaching and learning. Curricula integration of standards into an activity…
Descriptors: Teaching Methods, Science Education, Foreign Countries, Pedagogical Content Knowledge
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