Social and geographical location and its impact on mathematics teaching and learning. Too many students from poor urban backgrounds or from rural communities are at risk of underperforming in school mathematics. This project identifies the critical factors that contribute to this failure and seeks to develop improved practices to enable greater access to school mathematics.
For the sake of the argument: developing students' inferential arguments in statistics. Data adds power and persuasion to arguments in every aspect of life: work, citizenship or personal. This international collaboration will infuse argumentation skills into the learning of school statistics. New knowledge developed in this project will forge a citizenry, workforce and scientists savvy in creating and critiquing data-based arguments.
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
Processing mathematics tasks: the nature and role of visual and non-visual reasoning in digital and non-digital environments. Within the next four years, it is likely that the National Assessment Plan for Literacy and Numeracy (NAPLAN) will be administered in a digital mode. This project identifies differences between the delivery of mathematics assessment in pencil-and-paper and computer-based modes. Primary students' mathematics reasoning is compared across these modes and to cohorts from Sing ....Processing mathematics tasks: the nature and role of visual and non-visual reasoning in digital and non-digital environments. Within the next four years, it is likely that the National Assessment Plan for Literacy and Numeracy (NAPLAN) will be administered in a digital mode. This project identifies differences between the delivery of mathematics assessment in pencil-and-paper and computer-based modes. Primary students' mathematics reasoning is compared across these modes and to cohorts from Singapore.Read moreRead less
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.
Enhancing proportional reasoning, a fundamental but elusive cornerstone of numeracy, through educational technology applications. This project targets numeracy; a national education priority and global measure of education quality. This project will fill an identified research gap about the specific mathematics content to support rich numeracy practices, thus enhancing the professional capacity of teachers of all disciplines to attain this national goal. High numeracy increases work and life cho ....Enhancing proportional reasoning, a fundamental but elusive cornerstone of numeracy, through educational technology applications. This project targets numeracy; a national education priority and global measure of education quality. This project will fill an identified research gap about the specific mathematics content to support rich numeracy practices, thus enhancing the professional capacity of teachers of all disciplines to attain this national goal. High numeracy increases work and life choices, strengthening the social and economic fabric and global competitiveness of Australian society. High numeracy supports access to science, technology, engineering and mathematics; areas in which current enrolments are in decline. This project will define the essence of numeracy for the 21st century, support evidence-based policy decisions and influence classroom practice.Read moreRead less
Engaging Students during the Early Years of Secondary School. This project aims to design, test and share sustainable strategies to support teachers and enable students from low socioeconomic communities to achieve success. The greatest decreases in students’ interest and effort occur when they transition into secondary school, with students from low socioeconomic communities at greatest risk of disengagement. What can teachers do to engage their students during this key life transition? This pr ....Engaging Students during the Early Years of Secondary School. This project aims to design, test and share sustainable strategies to support teachers and enable students from low socioeconomic communities to achieve success. The greatest decreases in students’ interest and effort occur when they transition into secondary school, with students from low socioeconomic communities at greatest risk of disengagement. What can teachers do to engage their students during this key life transition? This project plans to identify teacher behaviours that motivate students in their first year at secondary school. Using an experimental design with a representative sample of 150 teachers and 1500 students in low socioeconomic areas across three states, the project plans to test whether an online professional learning program for teachers can improve student engagement and achievement. This cost-effective and scalable intervention is designed for widespread dissemination to Australian teachers.Read moreRead less
Discovery Early Career Researcher Award - Grant ID: DE160100830
Funder
Australian Research Council
Funding Amount
$365,071.00
Summary
Supporting children's early mathematics development. This project aims to investigate how implementation of cognitively demanding mathematics tasks in the early years may change number development and mathematics achievement. By focusing on children’s use of strategy, the project seeks to link classroom mathematics with underpinning cognitive processes. It also plans to use eye tracking technology to identify connections between explicit mathematics strategies and intuitive cognitive behaviours. ....Supporting children's early mathematics development. This project aims to investigate how implementation of cognitively demanding mathematics tasks in the early years may change number development and mathematics achievement. By focusing on children’s use of strategy, the project seeks to link classroom mathematics with underpinning cognitive processes. It also plans to use eye tracking technology to identify connections between explicit mathematics strategies and intuitive cognitive behaviours. It is expected this project will have important implications for teaching practice in the early years of school, by providing new understanding of how engaging in demanding tasks influences children’s flexible use of strategy and subsequent achievement. This would inform practitioners and policy-makers about the supports required to establish strong mathematics foundations in children.Read moreRead less
Modelling with design: learning innovation across primary science, technology, engineering and mathematics (STEM). This project aims to introduce a new approach to advancing mathematics learning and problem solving across grades four to six. This project expects to generate new knowledge by building on primary school students’ science, technology, engineering and mathematics (STEM) competencies across several years. The project will establish critical foundations for advancing core mathematics ....Modelling with design: learning innovation across primary science, technology, engineering and mathematics (STEM). This project aims to introduce a new approach to advancing mathematics learning and problem solving across grades four to six. This project expects to generate new knowledge by building on primary school students’ science, technology, engineering and mathematics (STEM) competencies across several years. The project will establish critical foundations for advancing core mathematics content and multidisciplinary problem-solving knowledge. Expected outcomes include evidencebased findings and resources to inform ways to stimulate, sustain, and improve achievement across the STEM disciplines.Read moreRead less
Transforming children's mathematical and scientific development: a longitudinal study. An innovative program promoting young children's mathematical and scientific reasoning will be evaluated from grades one to three This study will determine whether an intervention capitalising on children's natural capacity for learning impacts their general cognitive development and problem solving skills at an optimum age.