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Nonlinear Modeling of Structures - From Fundamentals to Application Connect with me for more information 🌐Website: https://drnaveedanwar.net/ 👷🏻♂️LinkedIn: / anwarnaveed 📝 ResearchGate:https://www.researchgate.net/profile/... #naveedanwar#csibangkok Nonlinear modeling of structures is essential for understanding real structural behavior beyond linear assumptions. In this lecture, we explore nonlinear structural analysis from fundamentals to practical applications, focusing on structural engineering and civil engineering practice. This video explains why linear analysis fails when structures experience cracking, yielding, large deformations, P-Delta effects, and seismic loading. Using simple beam and frame examples, the lecture clearly demonstrates how real load–deformation behavior deviates from linear predictions and why nonlinear modeling is critical for performance-based design and structural assessment. You will learn: What nonlinear modeling of structures really means Differences between linear vs nonlinear structural analysis Material, geometric, and boundary nonlinearities Moment–curvature behavior, plastic hinges, and fiber modeling Lumped plasticity vs distributed plasticity approaches Application of nonlinear modeling in earthquake engineering Why nonlinear analysis is essential for existing buildings, seismic evaluation, and performance-based design Practical modeling concepts using FEM-based structural software This lecture is highly valuable for: Structural engineers Civil engineers Graduate students in structural & earthquake engineering Professionals working on seismic design, retrofitting, and nonlinear FEM analysis If you are looking to understand how nonlinear behavior develops in real structures and how engineers model cracking, yielding, stiffness degradation, and collapse mechanisms, this video provides a clear, concept-driven explanation grounded in real engineering practice.