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                                    S.K. Singh et al. | 1861Boore, D. M. (1973). The effect of simple topography on seismic waves: Implications for the accelerations recorded at Pacoima Dam, San Fernando Valley, California. Bulletin of the Seismological Society of America, 63(5), 1603%u20131609. doi: https://doi.org/10.1785/BSSA0630051603Boore, D. M. (2003). Simulation of Ground Motion Using the Stochastic Method. Pure and Applied Geophysics, 160(3), 635%u2013676. doi: https://doi.org/10.1007/PL00012553Bouchon, M. (1973). Effect of topography on surface motion. Bulletin of the Seismological Society of America, 63(2), 615%u2013632. doi: https://doi.org/10.1785/BSSA0630020615Garc%u00eda, D. (2005). Inslab Earthquakes of Central Mexico: Peak GroundMotion Parameters and Response Spectra. Bulletin of the Seismological Society of America, 95(6), 2272%u20132282. doi: https://doi.org/10.1785/0120050072Instituto Nacional de Estad%u00edstica y Geograf%u00eda (INEGI). (2014). Carta Geol%u00f3gica E14-9, Oaxaca, escala 1:50,000. [Carta geol%u00f3gica] Instituto Nacional de Estad%u00edstica y Geograf%u00eda Serie II.Ordaz, M., Arroyo, D., Singh, S. K., & Salgado-G%u00e1lvez, M. A. (2024). A PSHA for Mexico City based solely in Fourier-based GMM of the response spectra. Soil Dynamics and Earthquake Engineering, 187, 109025. doi: https://doi.org/10.1016/j.soildyn.2024.109025Ordaz, M., Reinoso, E., A. Jaimes, M., Alc%u00e1ntara, L., & P%u00e9rez, C. (2017). High-Resolution Early Earthquake Damage Assessment System for Mexico City Based on a Single-Station. Geof%u00edsica Internacional, 56(1). doi: https://doi.org/10.22201/igeof.00167169p.2017.56.1.1751Robles Garc%u00eda N. M. (Coord.) (2022). Conservaci%u00f3n de los Edificios Da%u00f1ados por los Sismos de 2017 en la Zona Arqueol%u00f3gica de Monte Alb%u00e1n-Atzompa. Instituto Nacional de Antropolog%u00eda e Historia. 1450 Ediciones.Robles Garc%u00eda N. M. (Ed.). (2009). Los Monumentos Arqueol%u00f3gicos de Monte Alb%u00e1n ante los Desastres Naturales: El Sismo de 1999. Instituto Nacional de Antropolog%u00eda e Historia.Robles Garc%u00eda, Nelly M.; Alberto Ju%u00e1rez Osnaya. (2004). Historia de la Arqueolog%u00eda en Oaxaca. Instituto Oaxaque%u00f1o de las Culturas, Gobierno del Estado de Oaxaca, CONACULTA-INAH, Oaxaca, M%u00e9xico.Singh, S. K., Su%u00e1rez, G., & Dom%u00ednguez, T. (1985). The Oaxaca, Mexico, earthquake of 1931: Lithospheric normal faulting in the subducted Cocos plate. Nature, 317(6032), 56%u201358. doi: https://doi.org/10.1038/317056a0Sokolov, V., & Furumura, T. (2008). Comparative Analysis of Two Methods for Instrumental Intensity Estimations using the Database Accumulated during Recent Large Earthquakes in Japan. Earthquake Spectra, 24(2), 513%u2013532. doi: https://doi.org/10.1193/1.2923918Su%u00e1rez, G., & Albini, P. (2009). Evidence for Great Tsunamigenic Earthquakes (M 8.6) along the Mexican Subduction Zone. Bulletin of the Seismological Society of America, 99(2A), 892%u2013896. doi: https://doi.org/10.1785/0120080201Wald, D. J., Quitoriano, V., Heaton, T. H., & Kanamori, H. (1999). Relationships between Peak Ground Acceleration, Peak Ground Velocity, and Modified Mercalli Intensity in California. Earthquake Spectra, 15(3), 557%u2013564. doi: https://doi.org/10.1193/1.1586058Wu, Y.-M. (2003). Relationship between Peak Ground Acceleration, Peak Ground Velocity, and Intensity in Taiwan. Bulletin of the Seismological Society of America, 93(1), 386%u2013396. doi: https://doi.org/10.1785/0120020097
                                
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