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Layer: Coseismic Observations - Points (ID:1)

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Name: Coseismic Observations - Points

Display Field: observationType

Type: Feature Layer

Geometry Type: esriGeometryPoint

Description: <span style="font-weight:bold;">Observation type</span>: type of coseismic effect on the natural environment. &quot;Panoramic view&quot; when the point represents the location from where a panoramic photo is taken. &quot;Dummy point&quot; is an artefact to draw a rupture trace with no observation points. <br /><span style="font-weight:bold;">Latitude DD</span>: point Latitude (decimal degrees, WGS84)<br /><span style="font-weight:bold;">Longitude DD</span>: point Longitude (decimal degrees, WGS84)<br /><span style="font-weight:bold;">Elevation – m a.s.l.</span>: altitude of the point (m a.s.l.)<br /><span style="font-weight:bold;">Strike – deg</span>: direction of the rupture (degrees, right-hand rule)<br /><span style="font-weight:bold;">Dip direction – deg</span>: along dip direction of the rupture (degrees)<br /><span style="font-weight:bold;">Dip Angle – deg</span>: dip of plane (degrees); if not given, it is assumed 90° <br /><span style="font-weight:bold;">Kinematics</span>: opening, normal, reverse, left lateral, right lateral, normal/left lateral etc.<br /><span style="font-weight:bold;">Downthrown side</span>: cardinal direction of the downthrown side of the rupture<br /><span style="font-weight:bold;">Minimum vertical slip – m</span>: minimum vertical separation between hanging wall and footwall (m)<br /><span style="font-weight:bold;">Maximum vertical slip – m</span>: maximum vertical separation between hanging wall and footwall (m)<br /><span style="font-weight:bold;">Minimum opening – m</span>: minimum horizontal separation (opening) between the two sides of the rupture (m)<br /><span style="font-weight:bold;">Maximum opening – m</span>: maximum horizontal separation (opening) between the two sides of the rupture (m)<br /><span style="font-weight:bold;">Photo</span>: Yes/No<br /><span style="font-weight:bold;">Photo credits</span>: original file name: source and year of the images<br /><span style="font-weight:bold;">References</span>: source of the data<br /><span style="font-weight:bold;">Notes</span>: additional information on the observation point<br /><span style="font-weight:bold;">Observation ID</span>: identification number of the observation point<br /><span style="font-weight:bold;">Earthquake ID</span>: point related earthquake identifier

Copyright Text: ------1915 AVEZZANO EARTHQUAKE: Blumetti A.M., et al., 1988. The ground effects of the Fucino earthquake, In book: "Historical seismicity of central-eastern mediterranean region", Proceedings of the 1987 ENEA-IAEA International Workshop, edited by Margottini C. & L. Serva, ENEA, Roma (297-320) Galadini F. and P. Galli, 2000. https://doi.org/10.1023/A:1008149531980 Galadini F. and P. Galli, 1999. https://doi.org/10.1016/S0040-1951(99)00091-8 Galli P., et al., 2012. https://doi.10.4430/bgta0054 Galli P., et al., 2016. https://doi: 10.1111/ter.12202 Giraudi C., 1988. https://www.aiqua.it/index.php/the-journal/il-quaternario-1988-2011/volume-1-2/910-evoluzione-geologica-della-piana-del-fucino-abruzzo-negli-ultimi-30-000-anni?category_access=1 Messina P., 1996. https://www.aiqua.it/index.php/the-journal/il-quaternario-1988-2011/volume-9-1/666-tettonica-mesopleistocenica-dei-terrazzi-nord-orientali-del-fucino-italia-centrale Michetti A.M., et al.,1996. https://doi.org/10.1029/95JB02852 Oddone E., 1915. Gli elementi fisici del grande terremoto marsicano-fucense del 13 gennaio 1915, Boll. Soc. Sism. It., 79,71-275 Saroli M., et al., 2008. https://amq.aiqua.it/index.php/amq/article/view/367/327 Serva L., et al., 1986. Mem. Soc. Geol. It., 35, 893-907 ------1980 IRPINIA EARTHQUAKE: Bollettinari G. and M. Panizza, 1981. Rend. Soc. Geol. Ital., 4, pp. 135-136 Carmignani L., et al., 1981. Rend. Soc. Geol. Ital., 4, pp. 451-465 Cinque A., et al., 1981. Rend. Soc. Geol. Ital., 4, pp. 127-129 Bousquet J. C., et al., 1983. Geol. Appl. ldrogeol., 18, pp. 427-435 Westaway R. and J. Jackson, 1984. https://doi.org/10.1038/312436a0 Pantosti D. and G. Valensise, 1990. https://doi.org/10.1029/JB095iB10p15319 D'Addezio G., et al., 1991. https://amq.aiqua.it/index.php/amq/article/view/1264/1124 Pantosti D., et al., 1993. https://doi.org/10.1029/92JB02277 Pantosti D. and G. Valensise, 1993. https://doi.org/10.4401/ag-4299 Blumetti A.M., et al., 2002. Studi Geologici Camerti, Numero Speciale "Large-scale vertical movements and related gravitational processes", pp. 7-18. Bello S., et al., 2021. https://doi.org/10.3389/feart.2020.608063 Martinelli C., et al., 2022. https://doi.org/10.1594/PANGAEA.943878 Amoruso A., et al., 2005. https://doi.org/10.1111/j.1365-246X.2005.02652.x Rovida A., et al., 2022. https://doi.org/10.13127/cpti/cpti15.4 ------1997 UMBRIA-MARCHE EARTHQUAKE: Basili R., et al., 1998. https://doi.org/10.1080/13632469809350323 Cello G., et al., 1998. https://doi.org/10.1080/13632469809350324 Cinti F.R., et al., 1999. https://doi.org/10.1029/1999GL900142 Cinti F.R., et al., 2000. https://doi.org/10.1023/A:1026575219394 Galli P., et al., 1997. https://amq.aiqua.it/index.php/amq/article/download/758/677 Tondi E., 1997. https://193.204.8.201:8080/jspui/handle/1336/160

Min. Scale: 4622325

Max. Scale: 0

Default Visibility: true

Max Record Count: 2000

Supported query Formats: JSON, geoJSON, PBF

Use Standardized Queries: True

Extent:

Drawing Info:

HasZ: false

HasM: false

Has Attachments: true

Has Geometry Properties: false

HTML Popup Type: esriServerHTMLPopupTypeAsHTMLText

Object ID Field: OBJECTID

Unique ID Field:

Global ID Field: GlobalID

Type ID Field: symbol

Fields:
Types:

Relationships: Is Data Versioned: false

Has Contingent Values: false

Supports Rollback On Failure Parameter: true

Last Edit Date: 6/30/2025 10:54:33 AM

Schema Last Edit Date: 2/5/2025 2:14:17 PM

Data Last Edit Date: 6/30/2025 10:54:33 AM

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