Conceptual Understanding and Problem-solving Approaches in the Presence of Graphics Calculators. The objectives of the project are to identify how students conceptualise mathematical relationships and formulate problem solutions, when graphics calculators are utilised. Graphics calculators are now common in schools and research is needed to provide sound bases for teaching and assessment. Investigation will centre on upper-secondary applied mathematics subjects because they are studied by a high ....Conceptual Understanding and Problem-solving Approaches in the Presence of Graphics Calculators. The objectives of the project are to identify how students conceptualise mathematical relationships and formulate problem solutions, when graphics calculators are utilised. Graphics calculators are now common in schools and research is needed to provide sound bases for teaching and assessment. Investigation will centre on upper-secondary applied mathematics subjects because they are studied by a high proportion of students for university entrance, are relevant to a wide range of careers and have received relatively little research attention in relation to calculator use. The project will yield, for school and research communities, new knowledge of mathematics learning with graphics calculators.Read moreRead less
Misperceptions in mathematics and music education: A computer-enabled diagnostic and remediation investigation involving metacognition. This project investigates the new and significant problem of misperceptions confounding learning in mathematics and music education. Supported by international and Australian industry partners, it builds on case studies of misperceptions by school and university students in both disciplines, to ascertain the extent that misperceptions occur in the wider school p ....Misperceptions in mathematics and music education: A computer-enabled diagnostic and remediation investigation involving metacognition. This project investigates the new and significant problem of misperceptions confounding learning in mathematics and music education. Supported by international and Australian industry partners, it builds on case studies of misperceptions by school and university students in both disciplines, to ascertain the extent that misperceptions occur in the wider school population. It breaks new ground by using mathematics to remediate music and vice versa. Aided by computer software, links are made between linear transformations in mathematics (a national curriculum topic) and commonly used techniques in music composition. Intra- and inter-disciplinary metacognitive techniques will be developed to remediate the misperceptions.Read moreRead less
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