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In this video, we explore the fundamentals of earthquake engineering with a focus on soil behavior under seismic loading. You will learn how dynamic soil properties influence ground response, foundation performance, and overall structural safety during earthquakes. 🔹 Topics Covered: • What is an Earthquake and how seismic waves interact with soil • Soil Liquefaction: mechanism, conditions, effects on foundations • Dynamic Soil Properties explained: • Shear Modulus (G) • Damping Ratio (ξ) • Variation with strain level • Importance of Shear Wave Velocity (Vs) • Field Tests for Dynamic Properties: • SPT & CPT correlations • Cross-hole and Down-hole tests • Seismic CPT (SCPT) • MASW & ReMi • Role of dynamic soil properties in: • Foundation design • Earthquake-resistant structures • Site response analysis 🔹 Why This Video is Important? Understanding liquefaction and dynamic soil behavior is critical for the safe design of buildings, bridges, metro structures, and foundations in seismic regions. This video is useful for civil engineers, geotechnical engineers, students, and exam aspirants. 📌 Best for: • GATE / ESE / PSU aspirants • Civil & Geotechnical Engineering students • Practicing engineers • Seismic design professionals 👍 If you find this video helpful, LIKE, SHARE & SUBSCRIBE for more content on: Geotechnical Engineering | Foundation Design | Earthquake Engineering | PLAXIS | Field Testing 💬 Comment below if you want detailed videos on liquefaction analysis, site response, or dynamic foundation design. #EarthquakeEngineering #Liquefaction #DynamicSoilProperties #ShearModulus #DampingRatio #GeotechnicalEngineering #FoundationEngineering #FieldTests #SeismicDesign #CivilEngineering