15 parallel-computing-numerical-methods-"Multiple" Fellowship positions at Macquarie University
Sort by
Refine Your Search
-
project, within our established research program in applied AI. You will work on shaping, developing, and evaluating a cutting-edge AI platform that enhances clinical decision-making. The research will be
-
industry project, within our established research program in applied AI. You will work on shaping, developing, and evaluating a cutting-edge AI platform that enhances clinical decision-making. The research
-
Observatory of Japan (NAOJ, under JSPS-KAKENHI International Leading Research (ILR) program; 22K21349) co-funded position offers a unique opportunity to work at the intersection of astronomy, optics, and
-
statutory and regulatory analysis across multiple Australian states and international jurisdictions. Policy analysis and evaluation, particularly energy, agricultural, and water regulation. Empirical research
-
an advanced AI-augmented digital platform (AiCT-Med) powered by cutting edge machine learning models trained on multiple large, aged care datasets from providers across Australia. The platform is designed
-
, the same researcher could build hundreds or thousands of strains in parallel using our robotic platforms. The Australian Genome Foundry is capable of synthesizing complete eukaryotic chromosomes and
-
(or thesis submitted) in robotics, mechatronics, aerospace engineering, or a related field. Demonstrated expertise in robotic systems, UAV platforms, and embedded computing. Strong track record of publications
-
medical researchers to improve healthcare for and with people with intellectual disability. In this role, you will apply implementation science methods to explore the use of patient-reported experience
-
, contribute to method development, and support the supervision and training of research students The Role An exciting opportunity for a Postdoctoral position exists in the School of Natural Sciences
-
time manually, the same researcher could build hundreds or thousands of strains in parallel using our robotic platforms. The Australian Genome Foundry is capable of synthesizing complete eukaryotic