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Co-Seismic Deformation and Fault Slip Model of the 2017 Mw 7.3 Darbandikhan, Iran-Iraq Earthquake Inferred from D-InSAR Measurements.

, , , , , and . Remote Sensing, 11 (21): 2521 (2019)

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Slow crustal deformation of Haiyuan fault in the northeast Tibetan plateau observed by PS-InSAR., , , , , , and . IGARSS, page 133-136. IEEE, (2013)Co-seismic displacement observation in decorelate belt along seismic fault of 2008 Wenchuan earthquake., , , , , and . IGARSS, page 1179-1182. IEEE, (2011)Three-Dimensional Surface Deformation of the 2022 Mw 6.6 Menyuan Earthquake from InSAR and GF-7 Stereo Satellite Images., , , , , and . Remote. Sens., 16 (12): 2147 (June 2024)Revealing the Kinematic Characteristics and Tectonic Implications of a Buried Fault through the Joint Inversion of GPS and Strong-Motion Data: The Case of the 2022 Mw7.0 Taiwan Earthquake., , , , , and . Remote. Sens., 15 (19): 4868 (October 2023)Rupture Process of the 2022 Mw6.6 Menyuan, China, Earthquake from Joint Inversion of Accelerogram Data and InSAR Measurements., , , , , , , , , and . Remote. Sens., 14 (20): 5104 (2022)Coseismic Surface Deformation Caused by the Wenchuan M8 Earthquake from InSAR Data Analysis., , , , , and . IGARSS (3), page 69-72. IEEE, (2009)Dynamics of a non-local intraspecific competition predator-prey model with memory effect., , and . Appl. Math. Lett., (2025)Co-Seismic Deformation and Fault Slip Model of the 2017 Mw 7.3 Darbandikhan, Iran-Iraq Earthquake Inferred from D-InSAR Measurements., , , , , and . Remote Sensing, 11 (21): 2521 (2019)Coseismic Deformation Obtained by Various Technical Methods and Its Constraint Ability to Slip Models of Maduo Earthquake., , , , , , and . Remote. Sens., 16 (4): 615 (February 2024)Global Existence of Classical Solutions to a Three-Species Predator-Prey Model with Two Prey-Taxes., and . J. Appl. Math., (2012)