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Undergraduate & Graduate Theses

Undergraduate Theses

4. Vanderbrink, C. (2022) Melt inclusions and their implications for magma residence time at Mount Meager, British Columbia.  B.Sc. Honours Thesis, 911³Ô¹Ï, Canada, pp. 47.

3. Harrington, E. (2016) Thermorheological Modeling of Venusian Canali. B.Sc. Honours Thesis, 911³Ô¹Ï, Canada, pp. 47.

2. Dewit, M. (2014) The geothermal potential of Nazko Cone, British Columbia. B.Sc. Honours Thesis, 911³Ô¹Ï, Canada, pp. 64.

1. Venugopal, S. (2014) Melt Inclusions and Their Implications of an Interconnected Magma Chamber Beneath Cerro Negro Volcano and Las Pilas-El Hoyo Complex, Nicaragua. B.Sc. Honours Thesis, 911³Ô¹Ï, Canada, pp. 71.

Graduate Theses

26. Aufrère, S.M. (2025) Short Fuse, Long Memory: Constraining the Timing of Magma Storage and Mobilisation at the Mount Meager Volcanic Complex (BC, Canada). Ph.D. Thesis, 911³Ô¹Ï, Canada. pp. 254.

25. Cosalan, P.S.A. (2025) Insights into the 2020 Taal Volcano Eruption: A Gravity Time Series Perspective. M.Sc. Thesis, 911³Ô¹Ï, Canada. pp. 154.

24. Pan, Y-Y. (2025) A Path Towards Resilience: Integrating Volcanic Hazards into Multi-Hazard Management in British Columbia, Canada. Ph.D. Thesis, 911³Ô¹Ï, Canada. pp. 251.

23. Anzieta, J.C. (2024) Application of Data Analysis and Machine Learning techniques to improve baseline Volcano and Mountain Hazards Monitoring. Ph.D. Thesis, 911³Ô¹Ï, Canada. pp. 160.

22. Calahorrano Di Patre, A.E. (2024) What is the gravity of the situation? Using geodesy to characterize unique volcanic systems. Ph.D. Thesis, 911³Ô¹Ï, Canada. pp. 163.

21. Coughlan, B.T. (2024) Rockfall hazard sssessment of the Stawamus Chief using multi-temporal remote sensing analysis. M.Sc. Thesis, 911³Ô¹Ï, Canada. pp. 166.

20. Montañez Muñoz, S. (2024) Gravity modeling of Lunar lava tubes: Insights from Ape Cave as a terrestrial analogue. M.Sc. Thesis, 911³Ô¹Ï, Canada. pp. 157.

19. Muhammad, M. (2024) Multidisciplinary Fusion: Structural Geology, Remote Sensing and Geotechnical Analysis for Geothermal Exploration and Natural Hazard Assessment in Southwestern British Columbia, Canada. Ph.D. Thesis, 911³Ô¹Ï, Canada. pp. 243.

18. Unnsteinsson, T. (2022) Modelling glaciovolcanic caves and chimneys. M.Sc. Thesis, 911³Ô¹Ï, Canada. pp. 234.

17. Dewit, M. (2020) Applications of terrestrial LiDAR, infrared thermography, and photogrammetry for mapping volcanic rocks in southern BC. M.Sc. Thesis, 911³Ô¹Ï, Canada. pp. 255.

16. Le Moigne, Y. (2020) Investigating Canada’s deadliest volcanic eruption and mitigating future hazards. Ph.D. Thesis, 911³Ô¹Ï, Canada. pp. 270.

15. Warwick, R. (2020) A comprehensive volcanic hazard assessment for Mount Meager Volcanic Complex, B.C., M.Sc. Thesis, 911³Ô¹Ï, Canada. pp. 112.

14. Venugopal, S. (2019) Magmatic sources to volcanic gas emissions: Insight from the Garibaldi Volcanic Belt, Western Canada. Ph.D. Thesis, 911³Ô¹Ï, Canada. pp. 240.

13. Calahorrano, A.E. (2019) Time-lapse gravity monitoring at Cotopaxi Volcano, Ecuador: A glimpse inside a restless colossus. M.Sc. Thesis, 911³Ô¹Ï, Canada, pp. 101.

12. Miller, C.A. (2017) Volcanic architecture and unrest processes: Insights from static and time-varying potential field models. Ph.D. Thesis, 911³Ô¹Ï, Canada, pp. 219.

11. Zurek, J.M. (2016) Multidisciplinary Investigation of the Evolution of Persistently Active Basaltic Volcanoes. Ph.D. Thesis, 911³Ô¹Ï, Canada, pp. 168.

10. MacQueen, P.G. (2013) Geophysical Investigations of Magma Plumbing Systems at Cerro Negro Volcano, Nicaragua. M.Sc. Thesis, 911³Ô¹Ï, Canada, pp. 212.

9. Sorge, J.D. (2011) Characterizing volcanic behaviour using thermal remote sensing and other time series data, 2000-2009, Volcán de Colima, Mexico. M.Sc. Thesis, 911³Ô¹Ï, Canada, pp. 208.

8. Vigouroux, N. (2011) Tracking the evolution of magmatic volatiles from the mantle to the atmosphere using integrative geochemical and geophysical methods. Ph.D. Thesis, 911³Ô¹Ï, Canada, pp. 254.

7. Zurek, J. (2010) Characterizing the plumbing systems of active volcanoes through potential field studies. M.Sc. Thesis, 911³Ô¹Ï, Canada, pp. 199.

6. Mauri, G. (2009) Multi-scale analysis of multiparameter geophysical and geochemical data from active volcanic systems. Ph.D. Thesis, 911³Ô¹Ï, Canada, pp. 436.

5. Nadeau, P.A. (2006) A Multi-Parameter Investigation of Volcanic Plume Behavior and Resultant Environmental Impact at a Persistently Degassing Volcano, Masaya, Nicaragua. M.Sc. Thesis, 911³Ô¹Ï, Canada, pp. 198.

4. de Zeeuw-van Dalfsen, E. (2004) A geophysical study of volcanic processes at a persistently active volcano and at two calderas in a state of unrest. Ph.D. Thesis, The Open University, UK, pp. 245.

3. Fournier, N. (2003) Shallow volcanic processes at persistently active volcanoes: multidisciplinary study at Poás volcano, Costa Rica. Ph.D. Thesis, The Open University, UK, pp. 121.

2. Williams-Jones, G. (2001) Integrated Geophysical Studies at Masaya Volcano, Nicaragua. Ph.D. Thesis, The Open University, UK, pp. 237.

1. Williams-Jones, G. (1996) The Distribution and Origin of Radon, CO2 and SO2 Gases at Arenal Volcano, Costa Rica. M.Sc. Thesis, Université de Montréal, Canada, pp. 135.