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Lecture
Beams and Isostaticity
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Calculating Deformations: Virtual Work Principles
Discusses the principles of calculating deformations in structures using virtual work methods and the impact of temperature on material behavior.
Simple Beams Analysis: Shear and Moment Diagrams
Covers the analysis of simple beams with concentrated loads and tracing shear and moment diagrams for cantilever beams.
Discontinuities in Diagrams: Concentrated Forces and Moments
Covers the analysis of discontinuities in diagrams caused by concentrated forces and moments in structures.
Systems of Forces III and Equilibrium 2D
Covers systems of forces in 3D, equilibrium in 2D, system isolation, free-body diagrams, supports, and joints.
Beams and Frames: Matching Conditions and Internal Loads
Covers the analysis of beams and frames, focusing on matching conditions and internal loads.
Introduction to Structural Mechanics
Covers beams with distributed and concentrated forces, bending moment, shear force, and internal load diagrams.
Structural Mechanics: Systems of Forces
Covers systems of forces, moments, couples, and stress in 2D and 3D, as well as the effect of force-couple systems.
Bending of Straight Beams
Explores bending of beams, strain energy, shear force, and deflection calculations.
Nonlinear Analysis of Structures: Model Fidelities & Plasticity
Introduces model fidelities, plastic hinges, and concentrated plasticity in nonlinear structural analysis.
Composite Beams: Elastic Distribution
Covers the elastic distribution in composite beams and the behavior of mixed structures during construction.