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Krystyna Stec

Parameters description of the programme www.sejsmologiagórnicza <http://www.sejsmologiagórnicza>.pl/foci/ . (in Polish). Makówka J., Kabiesz J., Dou Li-ming, 2009. Relationship between the rock mass deformation and places of occurrence of seismological events . Mining Science and Technology 19, 558-584. Marcak H., 2012. Seismicity in mines due to roof layer bending . Arch. Min. Sci., Vol. 57 no. 1, p. 229-250. McKenzi D.P., 1969. The relation between fault plane solution and the directions of the principal stresses . Bull

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Alicja Caputa, Adam Talaga and Łukasz Rudziński

, 3:159-174; Król M., (1998); Application of moment tensor solution and source spectra to tremor source investigation occurred in Polkowice - Sieroszowice copper mine. (Zastosowanie tensora momentu sejsmicznego oraz analizy widmowej fali sejsmicznej do badani ognisk wstrząsów z rejonu kopalni miedzi Polkowice - Sieroszowice). PhD thesis, Institute of Geophysics PAN Warsaw (in Polish) (unpublished); . Lizurek G., Plasiewicz B. & Rudziński Ł. (2015) Mining Induced Seismic Event on an Inactive Fault. Acta Geophysica 63, 1: 176

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Zbigniew Szczerbowski

many unexpected seismic events as in the areas of multi-seam exploitation, where seismic phenomena seem likely to occur even in the situation of the lack of strata capable of accumulating elastic energy and its dynamic release ( Majcherczyk and Niedbalski, 2017 ). While geodetic surveys play an important role in many scientific programs, observatories, networks or test fields involved in an integrated system of interdisciplinary observations, providing fundamentally important datasets in earthquake studies, as far their insufficient role in country studies on

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Grzegorz Mutke, Józef Dubiński and Adam Lurka

, 19, p. 97-105. Konecny P., 1989. Mining-induced seismicity (rock bursts) in the Ostrava-Karvina Coal Basin, Czechoslovakia. Gerl. Beitr. Geophysik., 98, No. 6, p. 525-547. Kwiatek G., Plenkers K., Nakatani M., Yabe Y., Dresen G., 2011. Frequency Magnitude characteristics down to magnitude -4.4 induced seismicity recorded at Mponeng Gold Mine, South Africa. BSSA, Vol. 100, No. 3, p. 1165-1173. Lizurek G., Rudzinski L., Plesiewicz B., 2015. Mining Induced Seismic Event on an Inactive Fault. Acta Geophysica, Vol. 63, Iss

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Agnieszka Bracławska and Adam F. Idziak

References Gibowicz, S. (1989) The mechanism of seismic events induced by mining (Mechanizm ognisk wstrząsów górniczych). Publications of the Institute of Geophysics Polish Academy of Sciences, M-13 (221), 8-16. Gibowicz S.,J., Kijko A., (1994) An introduction to mining seismology. Academic Press. San Diego. Gumbel E.J. (1958) Statistics of extremes. Columbia University. Press New York. Idziak A., F., Sagan G., Zuberek W.M. (1991) An analysis of energy distributions of shocks from the Upper Silesian coal basin (Analiza rozkładów

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Pierpaolo Oreste and Silvia Soldano

-Flow Hazards Mitigation: Mechanics, Prediction, and Assessment”, Davos, Switzerland, Rickenmann, Chen (Eds), Millpress, Rotterdam, 203, pp. 809-820 Blijenberg H.M., 1993. Modelling of debris flows , in Flageollet J.C. (Ed.), “Temporal Occurrence and Forecasting of Landslides in the European Community”, Final Report, European Community, Programme EPOCH, Contract 90 0025, Part I, 162-189. Bourdeau C., Havenith H.B., Fleurisson J.A., Grandjean G., 2004. Numerical Modelling of Seismic Slope Stability . Engineering Geology for Infrastructure

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Eugen Oros and Mihai Diaconescu

. [29] Shebalin N. V., Leydecker G., Mokrusina N. G., Tatevossian R. E., Erteleva O. O, Vassiliev V. YU. (1998). Earthquake Catalogue for Central-Southeastern Europe 342BC-1990AD. European Commission, Report No. ETNU CT 93 - 0087, Brussels. [30] Havskov and Ottemoller, SeisAn Earthquake analysis software, Seis. Res. Lett., 70, 1999. [31] Wiemer S, Baer W. (2000). Mapping and removing quarry blast events from seismicity catalogs. Bulletin of Seismological Society of America, 90, 2, 525

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Henryk Marcak

seismic hazard posed by mining-induced events . Proceedings of the 6th Int. Symp. on Rockbursts and Seismicity in Mines Controlling on Seismic Risk ACG, Perth, 151-156, eds Potvin Y. & Hudyma M., Australian Centre for Geomechanics, Nedlands, Western Australia. Lasocki S., 2008. Some unique statistical properties of the seismic process in mines . in Proceedings of the 1st Southern Hemisphere International Rock Mechanics Symp., Vol. 1: Mining and Civil, Perth, 667-678, ed. ed. Potvin Y., Australian Centre for Geomechanics, Nedlands, Western Australia

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Maciej J. Mendecki, Barbara Bieta, Mateusz Mateuszów and Paweł Suszka

-Głogowskim Okręgu Miedziowym (Analysis of site effects and frequency spectrum of signals in order to improvement accuracy of attenuation relation of ground motion caused by mining induced seismic events in Legnica Głogow Copper district) Kraków: Akademia Górniczo-Hutnicza im. Stanisława Staszica, (PhD Thesis in Polish). Oros E. (2009). Site effects investigation in the city of Timisoara using spectral ratio methods. Romanian Reports in Physics, 61, 2, 347-358. SESAME (2003). WP03 – H/V Technique: Data Processing, Report on the Multiplatform H/V Processing Software J

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Roman K. Nepop and Anna R. Agatova

seismic events. The most direct methods (fault scarp formation applying scarp degradation modeling, cosmogenic surface exposure dating, analysis of scarp soils etc .) return relatively large age uncertainties ( McCalpin, 2009 ). Dating landforms is typically less precise than dating sediments ( Burbank and Anderson, 2001 and McCalpin, 2009 ), although relatively precise indirect dating of associated deposits also may not provide close constraints of ancient seismic events. Today radiocarbon analysis is the most exploitable and widely applicable technique in