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Lecture
Beam Bending and Buckling Problems
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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.
Introduction to Structural Mechanics
Covers the fundamentals of structural mechanics, focusing on beams, sign conventions, types of beams, and methods to calculate stress resultants.
Beam deflection and bending moment relation
Explains beam deflection, bending moment relation, boundary conditions, and superposition principle.
Beams under Flexure
Discusses stresses in beams under flexure, including shear forces and bending moments.
Mechanisms Design: Course Organization
Explains the organization of the 'Design of Mechanisms I' course, covering schedule, exercises, exams, and interactive learning.
Differential Method in Beams
Explains the differential method in beams, calculating integration constants and internal forces.
Buckling of Beams: Moment-Curvature Relation
Explores beam buckling, moment-curvature relation, deflection, and fundamental beam solutions in structural mechanics.
Finite Element Method: Basics and Applications
Covers the basics of the Finite Element Method for solid and structural modeling.
Beam Bending II
Explores the relationship between moment, curvature, and deflection in beam bending scenarios, emphasizing the consideration of shear forces and deformations.
Diffusion-Convection: Modeling and Schemes
Covers modeling and numerical schemes for diffusion-convection problems.