Using explanatory frameworks to enhance students' metacognitive capabilities in science. The success and continuation of science programs in secondary schools and universities is dependent on foundational improvements in teaching and learning. This proposal is designed to address this national concern by fostering potential science talent by encouraging more students to study and enjoy science in a meaningful way. Through the development of carefully analysed explanatory frameworks, science teac ....Using explanatory frameworks to enhance students' metacognitive capabilities in science. The success and continuation of science programs in secondary schools and universities is dependent on foundational improvements in teaching and learning. This proposal is designed to address this national concern by fostering potential science talent by encouraging more students to study and enjoy science in a meaningful way. Through the development of carefully analysed explanatory frameworks, science teachers and university lecturers will enable students to develop their metacognitive capabilities so that they are able to think logically about science concepts rather than memorise basic facts which are easily forgotten. Expected practical benefits are students who are better able to learn and communicate, especially in science.Read moreRead less
Thinking Australia: A cognitive acceleration program to raise high school students' achievement in science. The outcome of the Thinking Australia project will be a cognitive acceleration program consistent with the national science curriculum, contextualised in cutting edge science and delivered with modern technologies. The program will be theory driven, evidence based and consistent with neuroscience research. The national benefit will include improved outcomes on international tests, improved ....Thinking Australia: A cognitive acceleration program to raise high school students' achievement in science. The outcome of the Thinking Australia project will be a cognitive acceleration program consistent with the national science curriculum, contextualised in cutting edge science and delivered with modern technologies. The program will be theory driven, evidence based and consistent with neuroscience research. The national benefit will include improved outcomes on international tests, improved quality of science education and thinking skills for Australia's future scientists and citizens, improved student attitudes, and increased enrolments in school science. Developing and fostering human talent is essential to promoting an innovative culture and economy.Read moreRead less
Beyond the Beaker: Maximising the Impact of a Science Careers Program on High School Students' Attitudes towards Science. The falling numbers of young people choosing to pursue the study of science has become a matter of national debate and societal concern. Australia's international competitiveness is increasingly dependent on high-level, science-based technical skills, knowledge and innovation. This research will inform the national impetus required from government, business and education sect ....Beyond the Beaker: Maximising the Impact of a Science Careers Program on High School Students' Attitudes towards Science. The falling numbers of young people choosing to pursue the study of science has become a matter of national debate and societal concern. Australia's international competitiveness is increasingly dependent on high-level, science-based technical skills, knowledge and innovation. This research will inform the national impetus required from government, business and education sectors to take action by providing research-informed models about how to positively influence students' attitudes towards science and science subject selection. These models will provide critical information about how to secure the next generation of scientists in Australia and a science skilled and knowledgeable workforce and general population.Read moreRead less
The Impact of the Kids' Science State Initiative on Scientific Literacy in the Western Australian Community. This research will investigate how participation in the Kids' Science State initiative in Western Australia (a partnership between Scitech Discovery Centre in Perth and the Rio Tinto WA Future Fund) impacts on children, teachers, parents and other community members in terms of promoting scientific literacy. Working in the Pilbara and Albany regions and the metropolitan area, the research ....The Impact of the Kids' Science State Initiative on Scientific Literacy in the Western Australian Community. This research will investigate how participation in the Kids' Science State initiative in Western Australia (a partnership between Scitech Discovery Centre in Perth and the Rio Tinto WA Future Fund) impacts on children, teachers, parents and other community members in terms of promoting scientific literacy. Working in the Pilbara and Albany regions and the metropolitan area, the research will determine the most effective ways to deliver educational resources that promote primary teachers? confidence and willingness to teach science and engage the community in science-related activities. The outcomes will represent a substantial investment in human capital.Read moreRead less
Drawing science diagrams to enhance students’ scientific creativity. This project aims to explore the potential benefits of engaging high school students in drafting their own science diagrams. The project integrates theories of creativity and multi-modal visual literacy, to generate a comprehensive analytical framework to help education researchers identify and nurture scientific creativity. This framework, along with supplemental teaching and learning resources, is expected to support the dev ....Drawing science diagrams to enhance students’ scientific creativity. This project aims to explore the potential benefits of engaging high school students in drafting their own science diagrams. The project integrates theories of creativity and multi-modal visual literacy, to generate a comprehensive analytical framework to help education researchers identify and nurture scientific creativity. This framework, along with supplemental teaching and learning resources, is expected to support the development of creative scientific minds across a wide student population so they can successfully address complex future challenges.Read moreRead less
Improving assessment in science through the use of students' perceptions. The aim of the project is to focus on students as the clients and generate information resulting in an improvement in the assessment of science at middle school level. It brings together three components of educational research not previously conceptualised in the one study: students' perceptions of assessment tasks, students' perceptions of teacher-student interactions, and students' attitudes towards science. The current ....Improving assessment in science through the use of students' perceptions. The aim of the project is to focus on students as the clients and generate information resulting in an improvement in the assessment of science at middle school level. It brings together three components of educational research not previously conceptualised in the one study: students' perceptions of assessment tasks, students' perceptions of teacher-student interactions, and students' attitudes towards science. The current international emphasis on outcomes-based education has focused attention on assessment as a crucial component in student learning and makes this research timely. Understanding the relationships among the three research components will lead to improvements in teaching and learning science.Read moreRead less
Learning and Teaching Genetics in a Biotechnological World: A Multidimensional Investigation of Conceptual Change. The aim of this research is to investigate students' and experts' understandings of fundamental concepts of genetics. The aim also is to investigate teaching strategies that will develop appropriate concepts for living in a biotechnological world. This is significant because genetics is critical content knowledge for general scientific literacy. This is the first research to investi ....Learning and Teaching Genetics in a Biotechnological World: A Multidimensional Investigation of Conceptual Change. The aim of this research is to investigate students' and experts' understandings of fundamental concepts of genetics. The aim also is to investigate teaching strategies that will develop appropriate concepts for living in a biotechnological world. This is significant because genetics is critical content knowledge for general scientific literacy. This is the first research to investigate how children's theories of genetics develop and it brings together two successful theoretical approaches. The outcomes of this qualitative research will be detailed descriptions and interpretations of what children already know about genetics, what they should know, and effective teaching strategies for conceptual change.Read moreRead less
Teaching and Learning Science, Mathematics and Technology in Integrated Middle School Contexts. Integration is proposed as a significant curriculum reform strategy for Australian schools at the beginning of the century, particularly for early adolescents. Despite the claimed advantages for integrating school subjects, there is an absence of substantive empirical research to show if and/or how students learn in integrated settings. The proposed study addresses this research gap directly, by exami ....Teaching and Learning Science, Mathematics and Technology in Integrated Middle School Contexts. Integration is proposed as a significant curriculum reform strategy for Australian schools at the beginning of the century, particularly for early adolescents. Despite the claimed advantages for integrating school subjects, there is an absence of substantive empirical research to show if and/or how students learn in integrated settings. The proposed study addresses this research gap directly, by examining the teaching context and the characteristics of student learning in integrated science, mathematics and technology classrooms. This project employs detailed and elaborated case studies of six middle school classrooms to develop sophisticated understandings about the connection between integrated pedagogy and student learning and motivation.Read moreRead less
Advancing future primary teachers' engagement in science inquiry learning. Australia's challenges in regard to scientific literacy and growth of student enrolments in science need to be addressed at multiple levels, starting with the preparation of future primary teachers. Promoting children's early interest in inquiry-based science is essential, yet a challenge for many teachers. This project examines the complex and dynamic interplay of cognitive, metacognitive and emotional processes in futur ....Advancing future primary teachers' engagement in science inquiry learning. Australia's challenges in regard to scientific literacy and growth of student enrolments in science need to be addressed at multiple levels, starting with the preparation of future primary teachers. Promoting children's early interest in inquiry-based science is essential, yet a challenge for many teachers. This project examines the complex and dynamic interplay of cognitive, metacognitive and emotional processes in future primary teachers' engagement in collaborative inquiry-based science activities. A comprehensive intervention based on these insights aims to determine how scaffolding productive engagement can improve the quality of primary teachers' preparation for inquiry-based science.Read moreRead less
Using immersive virtual reality to enhance students’ science visualisation. This project aims to investigate the potential of advanced visualisation technology, immersive virtual reality, as a collaborative learning environment to support students to explore their ideas and learn a core chemistry concept, molecular structures and functions. Incorporating both data analytics and qualitative video analysis, the project will establish a deep understanding of how students learn about the molecular w ....Using immersive virtual reality to enhance students’ science visualisation. This project aims to investigate the potential of advanced visualisation technology, immersive virtual reality, as a collaborative learning environment to support students to explore their ideas and learn a core chemistry concept, molecular structures and functions. Incorporating both data analytics and qualitative video analysis, the project will establish a deep understanding of how students learn about the molecular world within an immersive virtual reality environment in relation to the learners’ experience, chemistry content, visual representations, learning tasks, and design features. The project will recommend evidence-driven design considerations for learning resources development and further educational research with advanced technologies.Read moreRead less