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Hakusan, Japan
Official, Hiking or trail map
Hakusan volcanic disaster prevention map (mobile version for climbers)
Gifu Prefecture Hakusan Volcano Disaster Prevention Council. (2018). Hakusan volcanic disaster prevention map (mobile version for climbers).

Mauna Loa, United States
Official, Insert/poster-size map with accompanying report
Hawaiian Ocean View Estates, Kapuʻa, and Miloliʻi Inundation Zones
Sheet 7 in: Trusdell, F.A. & Zoeller, M.H. (2017). Lava inundation zone maps for Mauna Loa, Island of Hawaiʻi, Hawaii. U.S. Geological Survey, Scientific Investigations Map 3387, 12 p., 10 sheets. https://doi.org/10.3133/sim3387

Vesuvius, Italy
Figure in a journal article
Hazard footprints of flow depth for rain-triggered lahars at four selected locations (simulation groups) on Somma-Vesuvius and surroundings (Italy) computed with the deterministic lahar model LaharFlow
Figure 9 in: Tierz, P., Woodhouse, M.J., Phillips, J.C., Sandri, L., Selva, J., Marzocchi, W., & Odbert, H.M. (2017). A framework for probabilistic multi-hazard assessment of rain-triggered lahars using Bayesian belief networks. Frontiers in Earth Science, 5 (73). https://doi.org/10.3389/feart.2017.00073

Soufrière Hills, Montserrat [United Kingdom]
Official, Figure on website
Hazard Level System
Montserrat Volcano Observatory (MVO). (Year Unknown). Hazard Level System. Soufrière Hills Volcano, Monsterrat, Hazards Level System.

Soufrière Hills, Montserrat [United Kingdom]
Official, Figure on website
Hazard Level System Soufriere Hills Volcano, Monsterrat: Hazard Levels and Access Restrictions 4 November 2011
Montserrat Volcano Observatory (MVO). (2011) Hazard Level System. Soufriere Hills Volcano, Monsterrat: Hazard Levels and Access Restrictions 4 November 2011. http://www.mvo.ms/pub/Hazard_Level_System/HLS-20111104.pdf

Soufrière Hills, Montserrat [United Kingdom]
Official, Figure on website
Hazard Level: 1
Montserrat Volcano Observatory (MVO). (Year Unknown). Hazard Level. Retrieved 29 March, 2022, from http://www.mvo.ms/

Ruapehu, New Zealand
Figure in a journal article
Hazard map (average) at a probability of 1%
Figure 10 in: Strehlow, K., Sandri, L., Gottsmann, J. H., Kilgour, G., Rust, A. C., & Tonini, R. (2017). Phreatic eruptions at crater lakes: occurrence statistics and probabilistic hazard forecast. Journal of Applied Volcanology, 6(1), 4. https://doi.org/10.1186/s13617-016-0053-2

Ruapehu, New Zealand
Figure in a journal article
Hazard map (average) at a probability of 1% conditional to an eruption
Figure 9 in: Strehlow, K., Sandri, L., Gottsmann, J. H., Kilgour, G., Rust, A. C., & Tonini, R. (2017). Phreatic eruptions at crater lakes: occurrence statistics and probabilistic hazard forecast. Journal of Applied Volcanology, 6(1), 4. https://doi.org/10.1186/s13617-016-0053-2

Etna, Italy
Figure in a journal article
Hazard map by lava flow inundation at Mt. Etna, based on 28,908 simulations of lava flow paths starting from 4,818 different potential vents.
Figure 3 in: Del Negro, C., Cappello, A., Neri, M., Bilotta, G., Hérault, A., & Ganci, G. (2013). Lava flow hazards at Mount Etna: constraints imposed by eruptive history and numerical simulations. Scientific Reports, 3(1). https://doi.org/10.1038/srep03493

Ceboruco, Mexico
Figure in a journal article
Hazard map considering pyroclastic flows at Ceboruco volcano
Figure 6 in: Sieron, K., Ferrés, D., Siebe, C., Constantinescu, R., Capra, L., Connor, C., Connor, L., Groppelli, G. & Zuccolotto, K.G. (2019). Ceboruco hazard map: part II—modeling volcanic phenomena and construction of the general hazard map. Natural Hazards, 96(2), p. 893-933. https://doi.org/10.1007/s11069-019-03577-5

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