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Beam Bending: Understanding Deformation and Resistance
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Related lectures (46)
Deformation of Straight Beams
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Explores the deformation of straight beams, including deviated bending, compound bending, normal stress, and neutral axis.
Introduction to Structural Mechanics
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Covers the fundamentals of structural mechanics, focusing on beams, sign conventions, types of beams, and methods to calculate stress resultants.
Pure Bending of Beams: Chapter 7b
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Explores stresses and strains in beams under pure bending, covering neutral axis, normal stress, moment of inertia, and maximum stress.
Internal Forces in Beams
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Covers the prediction of beam deformation and the safety margin to prevent beam breakage.
Beam Bending II: Internal Forces, Curvature, and Stiffness
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Covers advanced topics in beam bending, stress tensors, elasticity, and Atomic Force Microscopy.
Structural Mechanics: Systems of Forces
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Covers systems of forces, moments, couples, and stress in 2D and 3D, as well as the effect of force-couple systems.
Circular Torsion & Bending Beams
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Covers stress analysis in circular torsion and bending of straight beams.
Beams: Internal Loads
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Covers the analysis of beams, internal loads, stress distribution, and reaction calculations.
Bending of Straight Beams
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Explores bending of beams, strain energy, shear force, and deflection calculations.
Finite Elements in Structural Mechanics
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Covers the application of finite elements in structural mechanics, focusing on theories related to beams, plates, and shells.
Composite Beams: Stresses and Neutral Axis
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Explains stresses and neutral axis in composite beams, demonstrating calculations and examples.
Structural Mechanics: Beam Bending and Boundary Conditions
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Explores the moment-curvature relation for beams, emphasizing stress distribution and typical boundary conditions.
Beams: Internal Forces and Stress Resultants
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Covers the fundamentals of beams, including types, stress resultants, and internal load diagrams.
Virtual Work I
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Covers virtual work, equilibrium conditions, and its application in problem-solving.
Introduction to Structural Mechanics
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Explores beam bending, stiffness, and curvature in mechanical systems using OCR-extracted slides from EPFL's Spring 2021 session.
Beam Bending & Buckling Problems: Written Correction
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Covers the correction of beam bending and buckling problems through solving specific problems related to beam bending and buckling phenomena.
Beam Bending: Written Correction
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Covers the correction of written exercises related to beam bending.
Calculus of Variations: Euler's Elastica
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Covers Euler's Elastica and the equilibrium shape of a bent beam using variational/energy methods.
Static Analysis: Modeling Structural Behavior
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Covers static analysis and the importance of accurate structural modeling in engineering.
Essential Singularity and Residue Calculation
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Explores essential singularities and residue calculation in complex analysis, emphasizing the significance of specific coefficients and the validity of integrals.
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