How many types of reasoning are there and how do they develop? This project will identify the fundamental components of human reasoning and examine how they change during the primary and junior high school years. It lays the foundation for the development of better methods for teaching children and adults how to reason.
Ready, steady, go: Infant motor development and cognition. This project aims to examine the changes in and relationships between cognition and motoric abilities during infancy. The project will utilise well-established and innovative measures of memory flexibility and motor development to generate new knowledge about the complex relationship between action, perception, and cognition. The expected outcomes will provide significant benefits such as increased scientific and public knowledge on earl ....Ready, steady, go: Infant motor development and cognition. This project aims to examine the changes in and relationships between cognition and motoric abilities during infancy. The project will utilise well-established and innovative measures of memory flexibility and motor development to generate new knowledge about the complex relationship between action, perception, and cognition. The expected outcomes will provide significant benefits such as increased scientific and public knowledge on early development and an evidence base on the normal stages of infant development, relevant for health policy.Read moreRead less
Discovery Early Career Researcher Award - Grant ID: DE210101881
Funder
Australian Research Council
Funding Amount
$407,390.00
Summary
Building STEM capacity through literacy engagement in spatial reasoning. This project aims to improve boys and girls' spatial reasoning in preschool (when gender differences emerge) by utilizing an activity that both genders equally access: book reading. Spatial reasoning is critical to achievement in science, technology, engineering and mathematics (STEM). This project will address disproportionate outcomes in spatial reasoning and STEM achievement, particularly among females, by identifying ef ....Building STEM capacity through literacy engagement in spatial reasoning. This project aims to improve boys and girls' spatial reasoning in preschool (when gender differences emerge) by utilizing an activity that both genders equally access: book reading. Spatial reasoning is critical to achievement in science, technology, engineering and mathematics (STEM). This project will address disproportionate outcomes in spatial reasoning and STEM achievement, particularly among females, by identifying effective kinds of spatial learning opportunities for the preschool context. Expected outcomes include an innovative approach to improving spatial reasoning through literacy engagement. This provides significant benefits by creating pathways into STEM and informing targeted interventions.Read moreRead less
Development of cognitive functions in adult populations. Cognitive functioning has significant social, health and economic effects in the form of either benefits from improved functioning or costs due to cognitive decline. In the latter regard, an aging population presents major challenges to society. The proposed project will investigate the effects of different training regimes on cognition and a range of related outcomes, including transfer of skills, personality change and social functioning ....Development of cognitive functions in adult populations. Cognitive functioning has significant social, health and economic effects in the form of either benefits from improved functioning or costs due to cognitive decline. In the latter regard, an aging population presents major challenges to society. The proposed project will investigate the effects of different training regimes on cognition and a range of related outcomes, including transfer of skills, personality change and social functioning, on a highly innovative brain training App being developed in collaboration with the Australian Broadcasting Corporation. Read moreRead less
The seeds of literacy in infancy: empirical specification of the acoustic determinants of language acquisition. Reading is one of the most difficult skills we learn, and while the process is largely forgotten by adults, any minor difficulty can have lasting effects. This project will follow speech, vocabulary and reading in infants at or not at risk for dyslexia from six months to five years with implications for parent-child interaction and language delay intervention.
Enhancing language learning via auditory training and parent-infant interaction. This project aims to improve adult language learning. Most adults struggle to pronounce foreign speech, because their native processing skills cannot process foreign sounds. During infancy, native sound perception is tuned through listening to variants of speech sounds while interacting with care-givers. This project aims to show that adults can reprogram their processing skills if placed in the rich environment ava ....Enhancing language learning via auditory training and parent-infant interaction. This project aims to improve adult language learning. Most adults struggle to pronounce foreign speech, because their native processing skills cannot process foreign sounds. During infancy, native sound perception is tuned through listening to variants of speech sounds while interacting with care-givers. This project aims to show that adults can reprogram their processing skills if placed in the rich environment available to infants. Rigorous testing will show whether auditory training improves processing of foreign speech sounds in adults and children and leads to successful understanding and pronunciation of foreign words. This project could benefit many Australian monolingual families who have not fully engaged with neighbouring cultures due to a language barrier.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
Giving instructional animations a helping hand. Computer-based instructional animations have not produced the positive learning outcomes that might be expected considering the advances in technology. The project will demonstrate that animations can be highly effective when learning about human movement and further enhanced by the inclusion of human gestures. It will directly investigate how learning is supported when humans observe manual actions, make gestures, or both. The project will identif ....Giving instructional animations a helping hand. Computer-based instructional animations have not produced the positive learning outcomes that might be expected considering the advances in technology. The project will demonstrate that animations can be highly effective when learning about human movement and further enhanced by the inclusion of human gestures. It will directly investigate how learning is supported when humans observe manual actions, make gestures, or both. The project will identify some key conditions under which animations may facilitate effective learning of both mechanical and human movement knowledge, and will develop principles for the design of best-practice instructional materials in e-learning environments.Read moreRead less
Memory consolidation - Integrating cognitive science and neuroscience approaches to how we remember and how we forget. How can we forget what happened yesterday, but vividly remember our first kiss? Neuroscientists think the brain has a special mechanism to strengthen memories with time, but many psychologists disagree. The project aims to bring the brain and the mind closer together, using the cutting-edge combination of brain imaging and psychological modelling.
Discovery Early Career Researcher Award - Grant ID: DE140100750
Funder
Australian Research Council
Funding Amount
$395,106.00
Summary
Associative learning and fluid intelligence: Computational and neurogenetic analyses. This project investigates genetic contributions to associative learning, one of our most fundamental abilities. Associative learning allows us to navigate in our environment, predict future events and make appropriate decisions. Electrophysiological measures will be used to study learning processes precisely and to investigate their relationship to polymorphisms in genes that regulate neural function. This rese ....Associative learning and fluid intelligence: Computational and neurogenetic analyses. This project investigates genetic contributions to associative learning, one of our most fundamental abilities. Associative learning allows us to navigate in our environment, predict future events and make appropriate decisions. Electrophysiological measures will be used to study learning processes precisely and to investigate their relationship to polymorphisms in genes that regulate neural function. This research will further understanding of the mechanisms that generate individual differences in learning ability and will have applications for educational techniques and behavioural interventions.Read moreRead less