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
ENHANCING SCIENCE LEARNING THROUGH A FOCUS ON MULTIPLE AND MULTI-MODAL REPRESENTATIONS OF CONCEPTS. This project draws on recent theoretical accounts of multiple and multi-modal representations of science understandings to devise, trial and evaluate new approaches to teaching and learning science concepts. These approaches, catering for diverse learning pathways, focus on student understanding that representations of scientific knowledge are multi-modal and interconnected. The project is signifi ....ENHANCING SCIENCE LEARNING THROUGH A FOCUS ON MULTIPLE AND MULTI-MODAL REPRESENTATIONS OF CONCEPTS. This project draws on recent theoretical accounts of multiple and multi-modal representations of science understandings to devise, trial and evaluate new approaches to teaching and learning science concepts. These approaches, catering for diverse learning pathways, focus on student understanding that representations of scientific knowledge are multi-modal and interconnected. The project is significant in providing an innovative way to engage upper primary and junior secondary students in regional and rural Australian contexts in learning science, and is expected to promote more effective learning and more positive student attitudes to the subject.Read moreRead less
Discovery Indigenous Researchers Development - Grant ID: DI0668285
Funder
Australian Research Council
Funding Amount
$48,570.00
Summary
Testing Ground: Investigating Indigenous Knowledge Programs and Indigenous Research Methodologies in Higher Education. This project will contribute to Australian social cohesion through the non-divisive Indigenous Knowledge approach to the teaching of Indigenous issues. Indigenous Knowledge Research is a new methodological development that will afford research in many cross-cultural contexts including those where literacy and numeracy skills are low. This research methodology has national and co ....Testing Ground: Investigating Indigenous Knowledge Programs and Indigenous Research Methodologies in Higher Education. This project will contribute to Australian social cohesion through the non-divisive Indigenous Knowledge approach to the teaching of Indigenous issues. Indigenous Knowledge Research is a new methodological development that will afford research in many cross-cultural contexts including those where literacy and numeracy skills are low. This research methodology has national and community significance because it fosters social cohesion in investigating problematic contexts through methods that bridge across groups and build community capacities to engage, identify and implement self-owned solutions. This research will facilitate the instigation of informational gathering structures in the most marginalized sectors of the Australian community.Read moreRead less
Designing technology-enriched pedagogy in secondary mathematics education. The Australian Government's "Agenda for Action" emphasises the need to foster innovation in mathematics teaching and teacher education, and encourages teachers to embrace technologies that enhance student learning. Yet international research shows that successful innovation in teaching with technology has been elusive. This project will develop new theoretical understanding of why technology-related innovation in secondar ....Designing technology-enriched pedagogy in secondary mathematics education. The Australian Government's "Agenda for Action" emphasises the need to foster innovation in mathematics teaching and teacher education, and encourages teachers to embrace technologies that enhance student learning. Yet international research shows that successful innovation in teaching with technology has been elusive. This project will develop new theoretical understanding of why technology-related innovation in secondary school mathematics teaching takes hold in some educational settings but not others. The findings will lead to practical recommendations for design of teacher professional development programs, and shed light on reasons why teachers may embrace or reject educational change.Read moreRead less
Scaffolding numeracy in the middle years: an investigation of a new assessment-guided approach to teaching mathematics using authentic assessment tasks. The project will investigate the efficacy of a new assessment-guided approach to improving student numeracy outcomes in Years 4 to 8. The project adds to existing knowledge through the development of a learning and assessment framework for multiplicative thinking and rational number in a form and language accessible to teachers. The project is i ....Scaffolding numeracy in the middle years: an investigation of a new assessment-guided approach to teaching mathematics using authentic assessment tasks. The project will investigate the efficacy of a new assessment-guided approach to improving student numeracy outcomes in Years 4 to 8. The project adds to existing knowledge through the development of a learning and assessment framework for multiplicative thinking and rational number in a form and language accessible to teachers. The project is innovative in that it will develop and use authentic assessment tasks, as opposed to written tests or individual interviews, to identify learner's needs in terms of the framework and inform subsequent teaching. This represents a significant contribution to the Commonwealth's goal of improving numeracy outcomes for all.Read moreRead less
Investigating ways to enhance teachers' science explanations and students' concept learning using cycles of reflective explanations. Explanation is central to learning because teachers explain phenomena to students and students are assessed on their explanations to other students and the teacher. Teacher explanations are not always effective and many lower secondary students provide descriptions when an explanation is needed. This projects aims for three outcomes: first, it researches teacher ....Investigating ways to enhance teachers' science explanations and students' concept learning using cycles of reflective explanations. Explanation is central to learning because teachers explain phenomena to students and students are assessed on their explanations to other students and the teacher. Teacher explanations are not always effective and many lower secondary students provide descriptions when an explanation is needed. This projects aims for three outcomes: first, it researches teacher explanations for teachers. Second, it researches student-student and student-teacher explanations to find which explanatory types maximise concept learning; and third, it evaluates a cycle of reflective explanations model for enhancing science teacher explanations.Read moreRead less
Crisis in chemistry: How do we best teach particle concepts for understanding? Fundamental chemistry knowledge is essential in the information age because citizens and professionals need to make informed decisions about GM technology, pollution and how to teach science. Chemistry learning is compromised by recurring intuitive and taught misconceptions about atoms and molecules. The widely documented misconceptions emphasise what students cannot do. This unique project studies students, teachers ....Crisis in chemistry: How do we best teach particle concepts for understanding? Fundamental chemistry knowledge is essential in the information age because citizens and professionals need to make informed decisions about GM technology, pollution and how to teach science. Chemistry learning is compromised by recurring intuitive and taught misconceptions about atoms and molecules. The widely documented misconceptions emphasise what students cannot do. This unique project studies students, teachers and international chemistry educators to develop a theoretical and practical model of what students can understand and do in primary, secondary and university chemistry with respect to atoms and molecules. The research will significantly improve chemistry teaching at the macroscopic, microscopic and symbolic levels.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
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
Implementing Engineering Experiences in the Middle School. Engineering and science are increasingly recognized as enablers for invention, innovation, and economic growth. Advances in these domains that improve society will increasingly depend on our ability to educate school students about the world of engineering prior to entering university. The study's national benefits include: exposing young students to the world of engineering and its rich career opportunities; showcasing engineering for ....Implementing Engineering Experiences in the Middle School. Engineering and science are increasingly recognized as enablers for invention, innovation, and economic growth. Advances in these domains that improve society will increasingly depend on our ability to educate school students about the world of engineering prior to entering university. The study's national benefits include: exposing young students to the world of engineering and its rich career opportunities; showcasing engineering for female students; promoting mathematics and science as key enabling subjects for engineering; addressing national research priorities including an environmentally sustainable Australia; and engaging engineers and educators, including undergraduates, in seminal collaborative research and resource development.Read moreRead less