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Lecture
Continuous Beams: Design Load and Behavior
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Related lectures (14)
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Covers the calculation of maximum efforts in beams and consoles, including the formula relating loads to maximum tensile stress.
Beam Deflections: Analysis Methods
Explores beam deflections analysis methods, including double integration and Macaulay's method.
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Covers the elastic distribution in composite beams and the behavior of mixed structures during construction.
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Explores reinforced concrete beam testing, measurements, modeling, and pre-dimensioning techniques.
Trusses in Beams: Materials and Internal Forces
Explores the inclusion of trusses in beams, emphasizing materials and internal forces.
Beam Deflection: Superposition Principle
Explains how to calculate beam deflection using the superposition principle for beams with multiple loads.
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Provides an overview of deflection analysis in floor slabs, focusing on load categories and structural integrity.
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Explores the nonlinear analysis of structures, covering stiffness formulations, typical behavior under loading, and empirical equations for steel and concrete components.
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Explores the moment-curvature relation for beams, emphasizing stress distribution and typical boundary conditions.
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