ACKNOWLEDGEMENTS The authors extend their appreciation to the executives of the Resource Centre of Excellence for their continued support and commitment to advancing innovative geotechnical capabilities. We also thank the Decision Science team for their technical expertise and collaborative contribution throughout the development of this work. Finally, we acknowledge the WAIO Geotechnical Team for their trust, operational insight, and dedication, which were essential to the successful execution of this project. REFERENCES Bergmann, M., Schäpke, N., Marg, O., et al. (2021). Transdisciplinary sustainability research in real world labs: Success factors and methods for change. Sustainability Science. Calderon, J., & Barnes, R. (2025). Threshold assessment of low displacement rates through slow movement analysis. Slope Stability in Mining. Calderon, J., & Barnes, R. (2025). Automatic multi-stage slow movement analysis for early warning monitoring systems in surface mining. Kotarba, J. A., Molldrem, S., Bhavnani, S. K., Spratt, H., & Kan, J. (2023). Exploring team dynamics during the development of cross disciplinary teams. Journal of Clinical and Translational Science. National Research Council. (2015). Enhancing the effectiveness of team science. National Academies Press. John Read, P. S. (2009). Guidelines for Open Pit Slope Design. Collingwood, VIC, Australia: CSIRO Publishing. Leoni, L., Coli, N., Farina, P., Coppi, F., Michelini, A., Costa, T., & Costa, F. (2015). On the use of ground-based synthetic aperture radar for long-term slope monitoring to support the mine geotechnical team. Ninth Symposium on Field Measurements in Geomechanics (pp. 789-796). Perth: 2015. Peryoga, T., Setiadi, B., Ursulic, A., Ziusudras, S., & Earle, J. (2023). Investiganting potential long-term geotechnical risks with slow movement analysis. Slope Stability in Mining (pp. 793-802). Perth: Australian Centre for Geomechanics.
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