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Lecture
Beams and Isostaticity
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Related lectures (35)
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.
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.
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.
Calculating Properties of Hyperstatic Systems
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Explains the calculation of properties in hyperstatic systems, focusing on moments and displacements under external loads.
Beam Bending: Deflection and Applications in Nanotechnology
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Explores beam deflection theory, applications in nanotechnology, and AFM as a versatile tool for nanoscale biology.
Beam Bending III and Buckling
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Explores advanced beam bending concepts and the phenomenon of buckling in mechanical systems, focusing on deformation, stress, and stability.
Beam Bending: Theory and Applications
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Explores beam bending theory, covering moment-curvature relation, pure bending, elasticity concepts, and examples of cantilever beams.
Beam Geometry and Internal Forces
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Covers the definition of beam geometry and internal forces diagrams.
Calculating Deformations: Virtual Work Principles
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Discusses the principles of calculating deformations in structures using virtual work methods and the impact of temperature on material behavior.
Structures and Mechanisms: Static (Rigid) Structures
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Covers the analysis of static (rigid) structures, including equilibrium and free-body diagrams.
Beams and Frames: Matching Conditions and Internal Loads
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Covers the analysis of beams and frames, focusing on matching conditions and internal loads.
Introduction to Structural Mechanics
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Covers beams with distributed and concentrated forces, bending moment, shear force, and internal load diagrams.
Bending of Straight Beams
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Explores bending of beams, strain energy, shear force, and deflection calculations.
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.
Internal Forces and Deformation
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Explores the relationship between loads, forces, and deformations in structures, focusing on cantilever beams.
Beam Bending: Theory and Applications
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Covers the theory of beam bending, historical figures, moment-curvature relation, and implications of distributed loads.
Circular Torsion & Bending Beams
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Covers stress analysis in circular torsion and bending of straight beams.
Beam deflection and bending moment relation
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Explains beam deflection, bending moment relation, boundary conditions, and superposition principle.
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