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Related lectures (31)
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Deformation: Axial Stress and Equilibrium
Explores deformation in 3D and 2D, stress-strain relations, equilibrium under axial stress, and body treatment as springs.
Energy Conservation: Simplified Situations
Explores energy conservation in fluid mechanics, focusing on simplified control volume situations and the relationship between mechanical power and heat transfer.
Bending Beams: Constraints and Relative Deformation
Explores quadratic moment, relative strains in beams, and pure flexion, focusing on neutral axis, curvature, and normal stresses.
Energy Conservation: The First Law of Thermodynamics
Covers the first law of thermodynamics, focusing on energy conservation and its implications in fluid dynamics.
Stress and Strain Transformation
Explores stress and strain transformation, focusing on calculating maximum stresses and ensuring structural integrity.
Principal Stresses in 2D and 3D
Explores principal stresses in 2D and 3D, deriving equations and understanding the relationship between shear and normal stresses.
Deformation of Straight Beams
Explores the deformation of straight beams, including deviated bending, compound bending, normal stress, and neutral axis.
Calculating Centroid and Second Moment
Explains the step-by-step process of calculating centroids and second moments of complex shapes using integration and the parallel axis theorem.
Relative Deformation 1D: Basics
Explains the basics of relative strain, normal strain, tensile forces, strain gauges, and Hooke's law.
Ellipsoidal Void Stress Concentrations
Explores stress concentrations on ellipsoidal void surfaces and the impact of inclusion on stress distribution.
Stress & Strain in Structural Mechanics
Covers stress, strain, equilibrium, forces, deformation, constitutive law, and photoelasticity in structural mechanics.
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