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Low, David; Wilson, Kate – Teaching Science, 2017
On entry to university, high-achieving physics students from all across Australia struggle to identify Newton's third law force pairs. In particular, less than one in ten can correctly identify the Newton's third law reaction pair to the weight of (gravitational force acting on) an object. Most students incorrectly identify the normal force on the…
Descriptors: Misconceptions, Scientific Concepts, Scientific Principles, Physics
Preston, Christine – Teaching Science, 2017
If you think of play as "the work of children" (Whitebread, Basilio, Kuvalja & Verma, 2012) then toys are surely the "tools of their trade". The involvement of scientific principles in how they work makes certain toys ideal stimuli for science investigations. This article describes a practical investigation suitable for…
Descriptors: Science Instruction, Teaching Methods, Toys, Young Children
Tho, Siew Wei; Lee, Tien Tien; Baharom, Sadiah – Teaching Science, 2018
Trends in contemporary science education emphasise the benefits of out-of-school learning experiences to help schools link science with everyday life (Tho, Chan, & Yeung, 2015). With the help of state-of-the-art technology, mobile devices--particularly smartphones--have the ability to work as data-logging tools for students to perform…
Descriptors: Educational Technology, Technology Uses in Education, Telecommunications, Handheld Devices
Low, David; Malik, Umairia; Wilson, Kate – Teaching Science, 2018
Large gender gaps in performance on questions involving projectile motion have been observed at high school and university level, even amongst high-achieving students. This gap is particularly problematic because projectile motion is typically one of the first topics formally taught in physics, and this may give girls an inappropriately negative…
Descriptors: Gender Differences, Science Instruction, Motion, Scientific Concepts
Rizik, Nadya; Taylor, Subhashni; Taylor, Neil; Sharma, Manjula – Teaching Science, 2018
Energy is one of the most complex yet central concepts taught in schools and is featured in the Australian Science Curriculum, as one of the six key organising ideas (Australian Curriculum, Assessment and Reporting Authority (ACARA), 2015). The literature portrays a multitude of complications associated with teaching energy (see Millar, 2005 for a…
Descriptors: Foreign Countries, Energy, Science Instruction, Scientific Concepts
Preston, Christine – Teaching Science, 2017
Familiar toys can be used to scaffold young children's learning about basic physics as well as guide scientific inquiry. Teachers looking for resources to engage young children and develop science inquiry skills need look no further than the toy box. In this two-part activity, children first construct a Lego® car and use it to explore the effects…
Descriptors: Scaffolding (Teaching Technique), Young Children, Toys, Physics
Tho, Siew Wei; Yeung, Yau Yuen – Teaching Science, 2014
A Smartphone is not only a mobile device that is used for communication but is also integrated with a personal digital assistant (PDA) and other technological capabilities such as built-in acceleration, magnetic and light sensors, microphone, camera and Global Positioning System (GPS) unit. This handheld device has become very popular with the…
Descriptors: Instructional Innovation, Technology Uses in Education, Handheld Devices, Investigations
Guha, Smita – Teaching Science, 2012
To teach young children, teachers choose topics in science that children are curious about. Children's inquisitive nature is reflected through the activities as they make repetitive sounds to find the cause and effect relationship. Teachers can make best use of those invaluable moments by incorporating those activities into science lessons on…
Descriptors: Scientific Concepts, Science Instruction, Young Children, Hands on Science
Wrigley, Colin – Teaching Science, 2012
Proteins are a diverse class of biochemical macromolecules, including substances as (apparently) unrelated as silk and sinew, hair and horn, feathers and flagella, enzymes and epidermis, gelatine (jelly) and gluten and gore, spider web, meat and fish muscle. Yet they are unified by being polymers of amino acids. Discovery of the nature of proteins…
Descriptors: Chemistry, Laboratory Experiments, Secondary School Curriculum, Science Activities
Hoban, Garry; Nielsen, Wendy; Shepherd, Alyce – Teaching Science, 2013
Students engage with science content when they are asked to explain and communicate their knowledge to others. In particular, encouraging students to create various digital media forms such as videos, podcasts, vodcasts, screencasts, digital stories and animations to explain science is usually engaging, especially if they have ownership of the…
Descriptors: Blended Learning, Multimedia Instruction, Multimedia Materials, Student Developed Materials
Ohlberger, Stephanie; Wegner, Claas – Teaching Science, 2013
Learning takes place mostly through communication. This is why teachers employ different types of interaction in the classroom in order to provide a varied environment for the students. Apart from the commonly used Student-Teacher-Talk or Teacher-Student-Talk, presentations or lectures may offer advantages with regard to the promotion of…
Descriptors: Interaction, Science Instruction, Teaching Methods, Questionnaires
Hackling, Mark; Byrne, Matt; Gower, Graeme; Anderson, Karen – Teaching Science, 2015
Aboriginal children experience social and educational disadvantage and many are not engaged with schooling or learning, which results in significantly lower levels of educational attainment. The Aboriginal Education Program delivered by Scitech to remote Western Australian schools has been shown to significantly increase student ratings of their…
Descriptors: Indigenous Populations, Disadvantaged Youth, Foreign Countries, Minority Group Students
Zeegers, Yvonne; McKinnon, Heather – Teaching Science, 2012
This paper describes one aspect of an ESL teacher's journey, in which her voluntary involvement in a series of science-based professional learning events inspired her to use language-based objectives to develop and teach an integrated unit of work with ESL students. Her willingness to modify her usual pedagogical practice and the inspiration she…
Descriptors: Teaching Methods, English (Second Language), Pedagogical Content Knowledge, Second Language Learning
Hackling, Mark; Barratt-Pugh, Caroline – Teaching Science, 2012
Australia's Early Years Learning Framework and leading international researchers argue for more intentional and purposeful teaching of science in the early years. This case study of exemplary practice illustrates intentional teaching of science materials which opened-up learning opportunities in literacy and number. Student-led hands-on…
Descriptors: Foreign Countries, Educational Change, Science Instruction, Peer Teaching
Larkin, Damian; King, Donna; Kidman, Gillian – Teaching Science, 2012
One way to integrate indigenous perspectives in junior science is through links between indigenous stories of the local area and science concepts. Using local indigenous stories about landforms, a teacher of Year 8 students designed a unit on geology that catered for the diverse student population in his class. This paper reports on the…
Descriptors: Active Learning, Foreign Countries, Geology, Culturally Relevant Education
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