Secondary and university mathematics: do they speak the same language? This project seeks innovative reasons for low progression rates of students in mathematical sciences subjects in Australia. It will examine students' symbol use at university and explore how it differs from the use at school. It will also examine links between students' response to increased symbolic load and their confidence to continue studying subjects with high mathematical content at university. Theoretical outcomes are ....Secondary and university mathematics: do they speak the same language? This project seeks innovative reasons for low progression rates of students in mathematical sciences subjects in Australia. It will examine students' symbol use at university and explore how it differs from the use at school. It will also examine links between students' response to increased symbolic load and their confidence to continue studying subjects with high mathematical content at university. Theoretical outcomes are expected to include new applications of epistemology and didactics theories and identification of key components of symbol load (for example, symbolic density, symbol familiarity) to describe how mathematical practices change with educational level. Practical outcomes are expected to include advice for educators with examples across the mathematical sciences.Read moreRead less
Reasonable Adjustments to Maths for Students with Intellectual Disabilities. Reasonable adjustments to secondary mathematics – parents want it, students need it, the Australian law requires it – but how do teachers achieve it? The aim of this project is to find ways to adjust, teach and assess secondary mathematics for students with intellectual and developmental disabilities. The significance of this study is in solving a problem facing teachers who are required by law to teach mathematics with ....Reasonable Adjustments to Maths for Students with Intellectual Disabilities. Reasonable adjustments to secondary mathematics – parents want it, students need it, the Australian law requires it – but how do teachers achieve it? The aim of this project is to find ways to adjust, teach and assess secondary mathematics for students with intellectual and developmental disabilities. The significance of this study is in solving a problem facing teachers who are required by law to teach mathematics without evidence informed approaches. Expected outcomes are an evidence-base for reasonable adjustments to secondary mathematics and approaches and strategies for teachers for inclusive practices. If ways for teaching year-level mathematics to learners with intellectual disability are developed, many more students may benefit.
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Investigating the relationship between teacher expectations, student persistence and the learning of mathematics. There is a culture in many classrooms in which teachers are encouraged by students to pose easy tasks. The project will explore what is needed to encourage students to embrace challenges and to persist even when tasks are difficult. The outcome will be enhanced mathematics learning and improved student confidence.
Enriching mathematics and science learning: an interdisciplinary approach. This international, longitudinal project aims to investigate the effectiveness of an innovative interdisciplinary learning approach in mathematics and science. Through collaborating primary schools in Australia and the United States of America (USA), it will investigate how students’ invention and transformation of representational systems can connect to support deeper reasoning and learning. The project will form the ba ....Enriching mathematics and science learning: an interdisciplinary approach. This international, longitudinal project aims to investigate the effectiveness of an innovative interdisciplinary learning approach in mathematics and science. Through collaborating primary schools in Australia and the United States of America (USA), it will investigate how students’ invention and transformation of representational systems can connect to support deeper reasoning and learning. The project will form the bases for new curricular designs that leverage students’ representational practices across science, technology, engineering and mathematics (STEM) disciplines to promote more robust and generative knowledge.Read moreRead less
Statistical literacy in the education workplace: Barriers and enablers for school personnel making data-driven decisions. Using quantitative data to monitor workplace processes and improve quality requires both strong statistical literacy and commitment to such decision-making processes. This study of data usage by school personnel will contribute to the success of the National Assessment Program that monitors progress towards the National Goals for Schooling in the 21st Century. It will provide ....Statistical literacy in the education workplace: Barriers and enablers for school personnel making data-driven decisions. Using quantitative data to monitor workplace processes and improve quality requires both strong statistical literacy and commitment to such decision-making processes. This study of data usage by school personnel will contribute to the success of the National Assessment Program that monitors progress towards the National Goals for Schooling in the 21st Century. It will provide evidence from which to enhance professional learning in data interpretation for both pre- and in-service teachers. The resulting research template has application for examining (a) statistical literacy needs in other sectors and (b) workers' perceptions of quantitative data used to inform decision-making. This will enhance the smart use of data in the workplace.Read moreRead less
Collaborative learning in Australia and China. This project aims to investigate aspects of learning for which “the social” is the most fundamental and useful level of explanation, modelling and instructional intervention. Interactive problem solving and learning are priorities in contemporary education, but have proven difficult to research. This project will use Australian and Chinese research facilities to investigate social interactions and classroom learning by strategically orchestrating co ....Collaborative learning in Australia and China. This project aims to investigate aspects of learning for which “the social” is the most fundamental and useful level of explanation, modelling and instructional intervention. Interactive problem solving and learning are priorities in contemporary education, but have proven difficult to research. This project will use Australian and Chinese research facilities to investigate social interactions and classroom learning by strategically orchestrating conditions for collaborative problem solving and knowledge construction by mathematics students in two very different cultures and pedagogical traditions. Outcomes from this project are expected to identify and optimise the function of social interaction in learning.Read moreRead less
Exploring mathematical sequences of connected cumulative challenging tasks. This project aims to enhance the mathematics outcomes of Australian students by researching teaching approaches that utilise sequences of cognitively challenging tasks that build connections between key mathematical ideas whilst developing depth, flexibility and transfer of knowledge. The project expects to build new understandings in the ways in which mathematics is learned by 5-8 year-olds and will provide mathematics ....Exploring mathematical sequences of connected cumulative challenging tasks. This project aims to enhance the mathematics outcomes of Australian students by researching teaching approaches that utilise sequences of cognitively challenging tasks that build connections between key mathematical ideas whilst developing depth, flexibility and transfer of knowledge. The project expects to build new understandings in the ways in which mathematics is learned by 5-8 year-olds and will provide mathematics leaders and teachers with the strategies and tools to improve student learning. Outcomes include a series of empirically-tested sequences of challenging tasks for use by all education sectors, new approaches to teacher learning and improved student mathematics learning that will benefit Australia's social and economic needs.Read moreRead less
Using mathematics to solve real world problems. This project aims to identify, apply and refine teaching approaches that help secondary students learn mathematical modelling, using mathematics to solve real world problems. The study will investigate the mathematical, cognitive, social and environmental factors that "enable" Year 10/11 students to develop mathematical representations of a real world problem. This project expects to generate theoretical and practical insights into how these enable ....Using mathematics to solve real world problems. This project aims to identify, apply and refine teaching approaches that help secondary students learn mathematical modelling, using mathematics to solve real world problems. The study will investigate the mathematical, cognitive, social and environmental factors that "enable" Year 10/11 students to develop mathematical representations of a real world problem. This project expects to generate theoretical and practical insights into how these enablers promote successful modelling, tasks that support students' development as modellers, and effective teaching approaches that promote student capability and interest in mathematics.Read moreRead less
Primary teachers' adaptive expertise in interdisciplinary maths and science. This project aims to investigate the development of primary teachers’ adaptive expertise in interdisciplinary mathematics and science. As a critical component of quality teaching, adaptive expertise is essential for teachers to innovate their teaching to enhance student learning and interest, yet little is known about its development. The project aims to explore how adaptive expertise can be fostered through classroom i ....Primary teachers' adaptive expertise in interdisciplinary maths and science. This project aims to investigate the development of primary teachers’ adaptive expertise in interdisciplinary mathematics and science. As a critical component of quality teaching, adaptive expertise is essential for teachers to innovate their teaching to enhance student learning and interest, yet little is known about its development. The project aims to explore how adaptive expertise can be fostered through classroom innovations purposefully co-designed by teachers and researchers in the context of interdisciplinary mathematics and science. Expected outcomes include a better theoretical understanding of adaptive expertise in the context of interdisciplinary mathematics and science to benefit teacher learning and improve student outcomes.Read moreRead less
Numeracy@Home: Enhancing the capacity of parents to support the learning of their children. Numeracy@Home aims to enhance the actions that families can implement at home, in collaboration with educators, in order to enhance children’s learning in and positive dispositions toward the development of numeracy. The project: articulates the key numeracy learning goals for families; identifies the actions of families that successfully support the development of numeracy at home; identifies the charact ....Numeracy@Home: Enhancing the capacity of parents to support the learning of their children. Numeracy@Home aims to enhance the actions that families can implement at home, in collaboration with educators, in order to enhance children’s learning in and positive dispositions toward the development of numeracy. The project: articulates the key numeracy learning goals for families; identifies the actions of families that successfully support the development of numeracy at home; identifies the characteristics of successful numeracy programs for families; and designs, implements and evaluates a program based on the findings of Phases 1 to 3. Together with industry partners, Numeracy@Home aims to lead to better outcomes for families and their children, particularly those who are marginalised and experience disadvantage.Read moreRead less