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Official, Hiking or trail map
Preparation for hiking Mt. Bandai
Bandaisan Volcanic Disaster Management Council. (2019). Preparation for hiking Mt. Bandai.

Official, Hiking or trail map
Preparation for hiking Mt. Bandai [Chinese version]
Bandaisan Volcanic Disaster Management Council. (2019). Preparation for hiking Mt. Bandai.

Official, Hiking or trail map
Preparation for hiking Mt. Bandai [English version]
Bandaisan Volcanic Disaster Management Council. (2019). Preparation for hiking Mt. Bandai.

Official, Hiking or trail map
Preparation for hiking Mt. Bandai [Korean version]
Bandaisan Volcanic Disaster Management Council. (2019). Preparation for hiking Mt. Bandai.

Figure in a journal article
Probabilistic volcanic hazard maps for the Central Volcanic Zone of Chile and Argentina (∼22.5–28°S), obtained after empirical, semi-empirical or analytical modeling
Figure 6 in: Bertin, D., Lindsay, J.M., Cronin, S.J., de Silva, S.L., Connor, C.B., Caffe, P.J., Grosse, P., Báez, W., Bustos, E., & Constantinescu, R. (2022). Probabilistic Volcanic Hazard Assessment of the 22.5–28° S Segment of the Central Volcanic Zone of the Andes. Frontiers in Earth Science, 10. https://doi.org/10.3389/feart.2022.875439

Official, Figure in a journal article
Scheme of volcano-geographical zoning in the Kuril Islands
Figure 3 in: Markhinin, E. K., Sirin, A. N., Timerbayeva, K. M., & Tokarev, P. I. (1962). Experience of volcanic-geographic zoning of Kamchatka and Kuril Islands. Bulletin of the Volcanological Station, Petropavlousk, Kamchatskiy, USSR, 32, 52-70.

Official, Figure on website
Simplified volcano hazards map of Crater Lake, Oregon
Bacon, C.R., Mastin, L.G., Scott, K., Nathenson, M., Driedger, C.L., Scott, W.E., Iverson, R.M., Ramsey, D.W., & Faust, L.M. (2014). Simplified volcano hazards map of Crater Lake, Oregon. U.S. Geological Survey. Crater Lake, OR Simplified Hazards Map. https://www.usgs.gov/media/images/crater-lake-or-simplified-hazards-map (Modified from: U.S. Geological Survey, Open-File Report 97-487)

Figure in a journal article
Spatial probability analysis considering: (A) volcanic events, and (B) volcanic events (80%) and structural data (20%)
Figure 11 in: Bertin, D., Lindsay, J.M., Cronin, S.J., de Silva, S.L., Connor, C.B., Caffe, P.J., Grosse, P., Báez, W., Bustos, E., & Constantinescu, R. (2022). Probabilistic Volcanic Hazard Assessment of the 22.5–28° S Segment of the Central Volcanic Zone of the Andes. Frontiers in Earth Science, 10. https://doi.org/10.3389/feart.2022.875439

Figure in a journal article
Spatial probability maps of volcanic activity for our study area
Figure 3 in: Bertin, D., Lindsay, J.M., Cronin, S.J., de Silva, S.L., Connor, C.B., Caffe, P.J., Grosse, P., Báez, W., Bustos, E., & Constantinescu, R. (2022). Probabilistic Volcanic Hazard Assessment of the 22.5–28° S Segment of the Central Volcanic Zone of the Andes. Frontiers in Earth Science, 10. https://doi.org/10.3389/feart.2022.875439

Figure in a journal article
Spatio-temporal probability maps of future volcanic activity for our study area at different forecasting time intervals
Figure 4 in: Bertin, D., Lindsay, J.M., Cronin, S.J., de Silva, S.L., Connor, C.B., Caffe, P.J., Grosse, P., Báez, W., Bustos, E., & Constantinescu, R. (2022). Probabilistic Volcanic Hazard Assessment of the 22.5–28° S Segment of the Central Volcanic Zone of the Andes. Frontiers in Earth Science, 10. https://doi.org/10.3389/feart.2022.875439