Learning the complexity of scientific knowledge about climate change with computer modelling and visualization technologies. This project provides benefits to the national priorities of a environmentally sustainable Australia; and frontier technologies for building and transforming Australian industries. The project helpins students in Australia more deeply understand the sciences that underlie environmental sustainability. Learning with modelling and visualization technologies will help student ....Learning the complexity of scientific knowledge about climate change with computer modelling and visualization technologies. This project provides benefits to the national priorities of a environmentally sustainable Australia; and frontier technologies for building and transforming Australian industries. The project helpins students in Australia more deeply understand the sciences that underlie environmental sustainability. Learning with modelling and visualization technologies will help students learn important scientific knowledge and prepare them for the use of frontier technologies that are becoming infused into the practices of scientists and professionals in many fields. This project also directly contributes to the national Digital Education Revolution initiative.Read moreRead less
Special Research Initiatives - Grant ID: SR0354538
Funder
Australian Research Council
Funding Amount
$30,000.00
Summary
Enabling Sciences Education (EnSE) Research Network. The Network aims to ensure the long-term ability of Australians to excel in scientific and technological innovation at all levels of community activity. This will be achieved by establishing significant and ambitious research agendas for improving the teaching and learning of Mathematics, Science and Technology in primary, secondary and tertiary education sectors. Of significance will be the productive synergies flowing from uniting, across ....Enabling Sciences Education (EnSE) Research Network. The Network aims to ensure the long-term ability of Australians to excel in scientific and technological innovation at all levels of community activity. This will be achieved by establishing significant and ambitious research agendas for improving the teaching and learning of Mathematics, Science and Technology in primary, secondary and tertiary education sectors. Of significance will be the productive synergies flowing from uniting, across the three disciplines, Australia's most outstanding, experienced and dedicated researchers with new and mid-career colleagues. Expected outcomes include a diverse but cohesive and collaborative research community that provides international leadership in helping students achieve their full potential. Read moreRead less
Providing the Mathematical Foundation for an Innovative Australia within Reform Based Learning Environments. The focus of this project is the pedagogical change that The Review of Teaching and Teacher Education indicates must take place in order to lay the quantitative foundations for advancing innovation, science, technology, and mathematics, while satisfying the requirements of a reform-based learning environment. Professional learning directed at teachers' pedagogical content knowledge and be ....Providing the Mathematical Foundation for an Innovative Australia within Reform Based Learning Environments. The focus of this project is the pedagogical change that The Review of Teaching and Teacher Education indicates must take place in order to lay the quantitative foundations for advancing innovation, science, technology, and mathematics, while satisfying the requirements of a reform-based learning environment. Professional learning directed at teachers' pedagogical content knowledge and belief structures with respect to mathematics within an environment of curricular change, will be evaluated in evidence-based terms related to teacher change and student outcomes. Significance includes the context, the middle school years in rural district schools, and the influence of technology on pedagogy.Read moreRead less
The Effect of Historical-Investigative Teaching about Pendulum Motion on High School Students Understanding of the Nature of Science. This project will investigate the impact of historical investigative teaching about pendulum motion on students understanding of the nature of science - its methodology, its relationship to technology, and its interrelationship with society and culture. The project emerges from my well-reviewed book "Time for Science Education" (Kluwer,2000) that discusses the his ....The Effect of Historical-Investigative Teaching about Pendulum Motion on High School Students Understanding of the Nature of Science. This project will investigate the impact of historical investigative teaching about pendulum motion on students understanding of the nature of science - its methodology, its relationship to technology, and its interrelationship with society and culture. The project emerges from my well-reviewed book "Time for Science Education" (Kluwer,2000) that discusses the historical, methodological, technical and social aspects of the discovery of the laws of pendulum motion in the 17th Century. As the pendulum is a ubiquitous topic in primary and secondary school science programmes, the approach could make a significant contribution to raising public understanding of science.Read moreRead less
Intergenerational differences in numeracy practices: A study of contemporary practice. Young Australians have grown up in a technology-rich world where they are differently numerate. In this context, it is important to capitalize on the strengths that young Australians bring to work and education while ensuring quality outcomes for stakeholders in all sectors. This project will develop numeracy interventions that embody post-industrial times and evaluate their impact on numeracy learning for you ....Intergenerational differences in numeracy practices: A study of contemporary practice. Young Australians have grown up in a technology-rich world where they are differently numerate. In this context, it is important to capitalize on the strengths that young Australians bring to work and education while ensuring quality outcomes for stakeholders in all sectors. This project will develop numeracy interventions that embody post-industrial times and evaluate their impact on numeracy learning for young Australians; and the impact on reforming institutions such as schools, job selection agencies and workplaces. Expected outcomes include the development of numeracy interventions for key stakeholders that better prepare Australians for the changing labour markets and their inherent numeracy demands.Read moreRead less
New Dimensions of Group Literacy Tests for Schools: Multimodal reading comprehension in conventional and computer-based formats. Today's texts require readers to comprehend information from an extensive range of images integrated with print material. No assessment currently exists to test what new reading strategies students require to interpret the meanings made jointly through images and print in contemporary texts. To address this problem, this research will develop a model of image/text rel ....New Dimensions of Group Literacy Tests for Schools: Multimodal reading comprehension in conventional and computer-based formats. Today's texts require readers to comprehend information from an extensive range of images integrated with print material. No assessment currently exists to test what new reading strategies students require to interpret the meanings made jointly through images and print in contemporary texts. To address this problem, this research will develop a model of image/text relations. Such a model is foundational to the development of effective assessment tools, particularly group tests. For the first time, such tests will incorporate the comprehension strategies that students require to understand conventional and computer-based texts with their increased integration of images and print.Read moreRead less
Numeracy, Youth and Employment: A study of numeracy demands in contemporary workplaces in regional Queensland. In contemporary workplaces, the numeracy demands are varied, yet little is known about their form or skill requirements. In order for schools and other agencies to better prepare Australian youth for the demands of contemporary work, a clearer understanding of the intersection of numeracy and work is needed. This project seeks to identify the numeracy demands across a range of industr ....Numeracy, Youth and Employment: A study of numeracy demands in contemporary workplaces in regional Queensland. In contemporary workplaces, the numeracy demands are varied, yet little is known about their form or skill requirements. In order for schools and other agencies to better prepare Australian youth for the demands of contemporary work, a clearer understanding of the intersection of numeracy and work is needed. This project seeks to identify the numeracy demands across a range of industries in the Gold Coast region of Queensland. As well as examining the types of numeracy demands, the project identifies some of the best ways in which numeracy skills can be improved to meet the demands across those industries.Read moreRead less
Generating Science Content Knowledge through Digital Animation in a Knowledge-building Community of Preservice Teachers. Sustaining Australia's growth and prosperity is dependent on continuous innovation in the teaching of science. Yet science is one of the least taught subjects in the primary curriculum because teachers lack content knowledge and confidence. This research engages preservice primary teachers in using new technologies to develop their understanding of science content knowledge th ....Generating Science Content Knowledge through Digital Animation in a Knowledge-building Community of Preservice Teachers. Sustaining Australia's growth and prosperity is dependent on continuous innovation in the teaching of science. Yet science is one of the least taught subjects in the primary curriculum because teachers lack content knowledge and confidence. This research engages preservice primary teachers in using new technologies to develop their understanding of science content knowledge through digital animation and to collaborate with other preservice teachers interstate and internationally. The products and processes of digital animation will help maintain and expand Australia's base as a knowledge economy as well as provide a social benefit of improved science teaching in schools. Read moreRead less
Supporting personalised learning in secondary schools through the use of specific mathematics assessments that reveal thinking. This project will improve numeracy standards in secondary schools, by assisting teachers to personalise the teaching of each student. Through detailed research, the project will develop sophisticated assessments that clearly reveal students' mathematical thinking. On-line diagnosis will suggest teaching activities that can bring about desired conceptual changes. The eff ....Supporting personalised learning in secondary schools through the use of specific mathematics assessments that reveal thinking. This project will improve numeracy standards in secondary schools, by assisting teachers to personalise the teaching of each student. Through detailed research, the project will develop sophisticated assessments that clearly reveal students' mathematical thinking. On-line diagnosis will suggest teaching activities that can bring about desired conceptual changes. The effectiveness of the resources will be thoroughly tested, for impact on student achievement and the mathematics teaching skills of teachers, especially those working out-of-field. Rural schools will have equal access to these resources. Good numeracy provides the foundation for life-long learning, employment satisfaction and the economic competitiveness of Australia.Read moreRead less
Space to Grow: The Faulkes Telescope and improving science engagement in schools. Exceptional opportunities exist to engage, develop and enrich science students and their teachers through access to the cutting-edge Faulkes Telescopes (FTs). The FT South (sited in Australia) is the world's largest dedicated to educational use with Australia enjoying a 15% share as the host country of this exceptional educational initiative. Operated remotely via the internet, the FT provides natural links to ICT, ....Space to Grow: The Faulkes Telescope and improving science engagement in schools. Exceptional opportunities exist to engage, develop and enrich science students and their teachers through access to the cutting-edge Faulkes Telescopes (FTs). The FT South (sited in Australia) is the world's largest dedicated to educational use with Australia enjoying a 15% share as the host country of this exceptional educational initiative. Operated remotely via the internet, the FT provides natural links to ICT, on-line learning, physics, astronomy and mathematics. Given appropriate support, it can play a valuable role in re-engaging students in science and enhancing science education and literacy outcomes in Australian schools over the next 20 years.Read moreRead less