College of Science & Engineering
Sophia Love
- Doctor of Philosophy (Natural and Physical Sciences)
- sophie.love@jcu.edu.au
Elle Robertson
- Doctor of Philosophy (Agriculture, Environmental and Related Studies)
- elle.robertson@jcu.edu.au
Romain Vaucher
- Senior Lecturer, Sedimentology
- romain.vaucher@jcu.edu.au
Jenny Fisher
- Associate Dean, Learning and Teaching
- jenny.fisher@jcu.edu.au
Ambili Narayanan
- Doctor of Philosophy (Natural and Physical Sciences)
- ambili.narayanan@my.jcu.edu.au
Sarfaraz Ali
- Postdoctoral Research Fellow
- sarfaraz.ali@jcu.edu.au
Mikaeylah Davidson
- Postdoctoral Research Fellow
- mikaeylah.davidson@jcu.edu.au
Liuxin Chen
- Adjunct Lecturer
- liuxin.chen@jcu.edu.au
Rafael Cabral Carvalho
- Lecturer, Marine Geoscience
- rafael.cabralcarvalho@jcu.edu.au
Tom Lloyd
- Postdoctoral Research Fellow, Global Ecosystems
- tom.lloyd@jcu.edu.au
Geology and ore genesis of the Dover Castle Sn + polymetallic ore field, North Queensland (Old ID 26398)
Recent exploration work in the Dover Castle mining district in North Queensland has defined economically significant polymetallic (Sn-W-Zn-Ag-Pb-In) resources. Geological understanding of how these diverse metal associations occur at economic levels is currently poor, as is the knowledge of potential for further minerlisation at depth. This project will provide crucial baseline geological data, including geochronology, mineralogy, geochemistry, and igneous and hydrothermal alternation characterisation, to better understand the origin of the mineralisation, and the geological controls on its location. This project outcomes will allow more focussed mineral exploration targeting to improve the probability of discovery of further economically significant resources.
On the evolutionary rescue of Antarctic marine fauna – did the IPCC AR6 get it right? (Old ID 29003)
The Intergovernmental Panel on Climate Change Sixth Assessment Report (IPCC-AR6) proposed Southern Ocean biodiversity to be rescued under designated refugia with assisted migration. These arbitrary refugia are defined by areas south of 70°S in West Antarctica, and Prydz Bay in East Antarctica. The decisions should instead be informed via species’ current genetic fitness across the Southern Ocean, a direct measure of extinction risk and success potential for assisted migration. By quantifying genetic fitness, this project 1) demonstrates whether IPCC-AR6’s conservation proposal accelerates species extinction, and 2) establishes genetic-informed refugia and translocation pathways that ensures animal evolutionary resilience under climate change.
Improving capacity for emerging infectious diseases research and surveillance in the Indo-Pacific (Old ID 29009)
Through this initiative, a One-Health approach will be used to improve emerging infectious diseases research and surveillance in a selected country in the Indo-Pacific, thereby improving national and regional biosecurity. In collaboration with an identified regional partner, a Research Fellow will be recruited to be embedded in the partner organisation to progress a co-designed research agenda, and help develop local capacity.
Invasive Fish in Aquatic Habitats, Torres Strait Island (Old ID 21581)
This project will assess and evaluate movement of invasive freshwater fish species from PNG to Torres Strait Islands. This project aims to understand the mechanisms of this migration (people, or environmental), and will examine ways to reduce the risk of pest freshwater fish species reaching northern Australian waters. A large component of this project is to prepare education material (websites, brochures) and conduct a range of workshops with Rangers community and schools. The success of this project is through a combination of scientific surveys and education.
Research to inform yellow crazy ant management in the Wet Tropics (Old ID 26714)
Continuation and consolidation of four years of scientific activities to support yellow crazy ant eradication in the Wet Tropics (data analysis, monitoring non-target effects of baiting, probability of detection).
On the physiology of plant transpiration (Old ID 27163)
The aim is to better understand plant water use (transpiration): to determine the relative roles of the environment, both aerial [absorbed radiation, both long and short wave, humidity, windspeed and temperature] and below ground [e.g. soil moisture content and resistance to root penetration], and of the plant [stomata, water pathways inside the leaf, and root water status] in controlling transpiration rate. The project will improve formulae describing the environmental and biological aspects of transpiration. A novel technique will be developed to measure the water potential distribution within the leaf. Results will inform breeders of the abilities of different plants to transpire rapidly when demand is high, or to conserve water.
National Assessment of Climate-Driven Species Redistribution using Citizen Science Data (Old ID 27400)
This project will develop a report card assessing Australian marine species to determine species that have undergone recent changes in distribution, either shifting into each State, or into new areas within States. This report card will draw upon citizen science databases and use a robust decision tree analysis developed by our team to outline which species are shifting, and with what degree of certainty. Project objectives are to 1. draw upon citizen scientists to identify climate-driven changes within the Australian marine estate; and 2. communicate to and engage with the public on issues of climate change and biodiversity using their own citizen science information. The report card can be used to drive public interest in the NESP Hub and in the status of biodiversity in Australia.
Resolving the blue-ringed octopus fauna of Australia: taxonomy, phylogeny and human health (Old ID 23007)
Despite renowned toxicity and human fatalates, knowledge of the blue-ringed octopuses (genus Hapalochlaena) remains poor. Their taxonomy requires through revision: four species are currently considered valid, yet preliminary investigations by the applicants identify a total of at least 15 species worldwide, of which over half occur in Australia. This project aims to use taxonomic and molecular tools to: (1) revise the genus; (2) identify and describe Australian species; (3) describe distributions, habitats and biology; (4) investigate phylogeny and biogeography; and (5) provide crucial identification and health hazard information to scientific and wider audiences.
Ecoacoustic data analysis (Old ID 27596)
It is now possible to collect and store vast amounts of environmental sound, or bioacoustic data. The promise of environmental recording is that it could allows us to monitor populations of vocal fauna (birds, mammals and amphibians), but there is so much data, it is not possible for expert human listeners to listen to and identify each species. Thus, artificial intelligence, or AI methods would be useful. However, ecologists also lack the large amounts of labelled data required to easily create convolutional neural networks typically used for such tasks. To develop new AI approaches for monitoring fauna, we require skilled people. This grant is intended to support a post-doctoral fellow to conduct this work.
Developing Partnerships Towards Quantifying the Impacts of Climate Change on the Ocean Ecosystem Economy of the Pacific (Old ID 29030)
This project will support the initial work of developing relationships with Pacific Island stakeholders and identifying opportunities for co-designing research based on climate changerelated priorities and needs of the Pacific Island Nations. In addition, this project aims to identify existing climate-related programs and initiatives in the Pacific that our team can build upon when designing our long-term research programs. The funding will be used for travel-related costs.
Organic matter, sodicity and soil structure
- 1998
- Oxford University Press
- Researchers:Paul Nelson
Start Date:
10 Nov 2024
Start Date:
31 Mar 2025
Title:
Bengali
Reseracher:
Khandakar Faisal Ibn Murad
(Doctor of Philosophy (Engineering and Related Technologies))
Title:
English
Reseracher:
Khandakar Faisal Ibn Murad
(Doctor of Philosophy (Engineering and Related Technologies))
Start Date:
01 Jan 2024
Start Date:
01 Jan 2014
Start Date:
01 Jan 2024
End Date:
01 Jan 2027
Start Date:
01 Jan 2003
Title:
PhD, James Cook University
End Date:
01 Jan 2010
Start Date:
01 Jan 2024
End Date:
01 Jan 2024
