23 molecular-modeling-or-molecular-dynamic-simulation Fellowship positions at Monash University
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profile through laboratory experimentation, advanced microstructural characterisation and thermodynamic and kinetic modelling, and you are motivated to contribute to high quality publications and to
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valuable asset, so we work to grow and diversify the skills and successes of our staff. We invite you to apply to join us as part of our dynamic learning programs and high-quality research environment
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retention, models of care and healthy populations. These roles involve collaborating with a distributed team of rural health researchers to grow research capacity, attract strategic funding and deliver
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multidisciplinary environments where your analytical expertise will shape impactful research outcomes? The Monash University Accident Research Centre (MUARC) is looking for a dynamic and driven Research Fellow to
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them The Opportunity Monash University’s Faculty of Pharmacy and Pharmaceutical Sciences is seeking a talented Research Fellow to join the Drug Delivery Disposition and Dynamics (D4) group in an ARC
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or nanomaterial synthesis. You thrive in collaborative environments, communicate your ideas clearly, and are eager to contribute to a dynamic, interdisciplinary team pushing the boundaries of materials
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. This collaborative initiative between Monash University’s SensiLab and RMIT University’s Tectonic Formation Lab aims to develop new design methodologies that control the spontaneous dynamics of emergent systems with
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Natural language processing and modeling Forensic audio analysis and/or speech processing As the successful candidate you will be responsible for: Translating research into practice by working with AiLECS
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in the vibrant world of Indonesian history at Monash University's Faculty of Arts. Join one of Australia's most dynamic arts faculties, renowned for its strengths in humanities, performing arts
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thermalization in graphene metamaterials. The Research Fellow will work closely with a team of researchers to design and simulate graphene metamaterials for strong light-matter interactions in the mid-infrared