Using multiple representations for systematic assessment to improve learning in secondary school science. Coupled with the priority of future prosperity and health of Australia; this project aims to establish a body of research that facilitates excellence in assessing learning. Research studies have identified concerns about the nature and effectiveness of assessment practices. This project, by taking an innovative perspective on assessment issues in secondary science, when student future plans ....Using multiple representations for systematic assessment to improve learning in secondary school science. Coupled with the priority of future prosperity and health of Australia; this project aims to establish a body of research that facilitates excellence in assessing learning. Research studies have identified concerns about the nature and effectiveness of assessment practices. This project, by taking an innovative perspective on assessment issues in secondary science, when student future plans geminate, has the potential to lay the foundation for more effective learning, increased retention into post-compulsory science and enhanced science literacy. By focusing on effective representational assessment strategies, the project has the capacity to enhance teachers' pedagogy and student learning, resulting in a more scientific literate society.Read moreRead less
The connectivity of pore theory - does it influence microbial community composition and function? Climate change scenarios indicate that Australia will be directly affected by an increase in greenhouse gas emissions. Soil microbial activity is responsible for a large proportion of such emissions; therefore it is important that we understand how such changing climate patterns are likely to influence key microbial populations in soil, particularly those involved in the production of greenhouse ga ....The connectivity of pore theory - does it influence microbial community composition and function? Climate change scenarios indicate that Australia will be directly affected by an increase in greenhouse gas emissions. Soil microbial activity is responsible for a large proportion of such emissions; therefore it is important that we understand how such changing climate patterns are likely to influence key microbial populations in soil, particularly those involved in the production of greenhouse gases. This research interfaces two disciplines, earth and biological sciences, and will establish a new international collaboration that will ensure Australia is at the forefront of a rapidly developing research field.Read moreRead less