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Related lectures (32)
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Efforts in Structures II: Maximums and Signs
Analyzes efforts in trusses, emphasizing maximum values and sign distribution in different members.
Beams II: Distributed Loads
Covers beams with distributed loads, internal forces, stress resultants, and equilibrium.
Beams: Internal Forces and Stress Resultants
Covers the fundamentals of beams, including types, stress resultants, and internal load diagrams.
Distributed forces: integrals and resultant forces
Covers the calculation of beams with distributed loads and resultant forces.
Efficiency and Bending Moments: The Art of Structures II
Analyzes truss efficiency, member effort, and bending moments in structures.
Normal Stress in Beams: Bending Analysis
Explores normal stresses in beams during bending and the calculation of the second moment of area for various shapes.
Plastic Hinge Method: Analysis and Design
Explores the plastic hinge method for inelastic deformation estimation and discusses the challenges of force-based design.
Plates: Föppl-von Kármán Equations
Covers the Föppl-von Kármán equations, Airy potential, plate theory simplifications, and plate buckling.
Plates III: Mechanics of Slender Structure
Covers Föppl-von Kármán equations, Airy potential, plate theory simplifications, and buckling of plates.
Bending of Straight Beams
Explores the bending of straight beams, internal effort diagrams, tangential stress, and shear theory.
Bending Beams: Constraints and Relative Deformation
Explores quadratic moment, relative strains in beams, and pure flexion, focusing on neutral axis, curvature, and normal stresses.
Design of Concrete Structures: Column Calculations
Covers the advanced design of concrete structures, focusing on column calculations and seismic considerations.
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